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1Academic Journal
المؤلفون: Eva Lora, Flávio Vieira, Inês Costa, Helena Teixeira, Matilde Albano, Yaidelin Manrique
المصدر: U.Porto Journal of Engineering, Vol 8, Iss 5, Pp 41-51 (2022)
مصطلحات موضوعية: eucalyptus, essential oil, sports performance t-shirt, chemical product design, Engineering (General). Civil engineering (General), TA1-2040, Technology (General), T1-995
وصف الملف: electronic resource
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2Academic Journal
المصدر: U.Porto Journal of Engineering, Vol 8, Iss 5, Pp 86-105 (2022)
مصطلحات موضوعية: chemical product design, mouthwash, kiwi residues, quercitrin, periodontal disease, Engineering (General). Civil engineering (General), TA1-2040, Technology (General), T1-995
وصف الملف: electronic resource
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3Academic Journal
المؤلفون: Ana Paula Silva, Bruno Rodrigues, Léandra Bonny, Yaidelin Manrique
المصدر: U.Porto Journal of Engineering, Vol 8, Iss 5, Pp 135-144 (2022)
مصطلحات موضوعية: strawberry plant, skin cream, hydrogel, chemical product design, Engineering (General). Civil engineering (General), TA1-2040, Technology (General), T1-995
وصف الملف: electronic resource
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4Academic Journal
المؤلفون: Rivera-Gil, Jose Luis, Serna-Rodas, Juliana, Arrieta-Escobar, Javier Andrés, Narváez-Rincón, Paulo César, Boly, Vincent, Falk, Véronique
المساهمون: Equipe de Recherche sur les Processus Innovatifs (ERPI), Université de Lorraine (UL), Grupo de Procesos Químicos y Bioquímicos, Departamento de Ingeniería Química y Ambiental. Universidad Nacional de Colombia (GPQB), Laboratoire Réactions et Génie des Procédés (LRGP), Université de Lorraine (UL)-Centre National de la Recherche Scientifique (CNRS), Inabata
المصدر: ISSN: 2227-9717 ; Processes ; https://hal.science/hal-03954509 ; Processes, 2023, 11 (2), pp.328. ⟨10.3390/pr11020328⟩.
مصطلحات موضوعية: chemical product design, knowledge base, consumer products, organizational context, [SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering
Relation: hal-03954509; https://hal.science/hal-03954509; https://hal.science/hal-03954509/document; https://hal.science/hal-03954509/file/Rivera_processes-11-00328.pdf
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5Academic Journal
المساهمون: Equipe de Recherche sur les Processus Innovatifs (ERPI), Université de Lorraine (UL), Laboratoire Réactions et Génie des Procédés (LRGP), Université de Lorraine (UL)-Centre National de la Recherche Scientifique (CNRS), Universidad Nacional de Colombia Bogotà (UNAL)
المصدر: ISSN: 0098-1354.
مصطلحات موضوعية: Ontology, chemical product design, knowledge engineering, cosmetic products, process systems engineering, [CHIM.CHEM]Chemical Sciences/Cheminformatics
Relation: hal-04071326; https://hal.science/hal-04071326; https://hal.science/hal-04071326/document; https://hal.science/hal-04071326/file/ARTICULO%20CON%20ALEX.pdf
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6Academic Journal
المؤلفون: Rivera Gil, Jose Luis, Serna, Juliana, Arrieta-Escobar, Javier, Narváez Rincón, Paulo César, Boly, Vincent, Falk, Véronique
المساهمون: Equipe de Recherche sur les Processus Innovatifs (ERPI), Université de Lorraine (UL), Universidad Nacional de Colombia Bogotà (UNAL), Laboratoire Réactions et Génie des Procédés (LRGP), Université de Lorraine (UL)-Centre National de la Recherche Scientifique (CNRS)
المصدر: ISSN: 0001-1541.
مصطلحات موضوعية: Chemical product design, formulated product, business, enterprise strategy, product design methodology, company, consumer products, cosmetics, patents, [CHIM]Chemical Sciences
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7Academic Journal
المؤلفون: Jamie W. Y. Lee, Lik Yin Ng, Viknesh Andiappan, Nishanth G. Chemmangattuvalappil, Denny K. S. Ng
المصدر: Processes; Volume 9; Issue 9; Pages: 1569
مصطلحات موضوعية: green manufacturing, integrated biorefineries, multi-objective optimisation, chemical product design, inverse design techniques
جغرافية الموضوع: agris
وصف الملف: application/pdf
Relation: Environmental and Green Processes; https://dx.doi.org/10.3390/pr9091569
الاتاحة: https://doi.org/10.3390/pr9091569
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8Academic Journal
المؤلفون: Kai Cong Cheng, Zhi Sheng Khoo, Newton Well Lo, Wei Jie Tan, Nishanth G. Chemmangattuvalappil
المصدر: Heliyon, Vol 6, Iss 5, Pp e03861- (2020)
مصطلحات موضوعية: Chemical engineering, Property prediction models, Chemical product design, Detergents, Surfactant design, Science (General), Q1-390, Social sciences (General), H1-99
وصف الملف: electronic resource
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9Academic Journal
المؤلفون: Jonuzaj, S, Cui, J, Adjiman, CS
المساهمون: Engineering & Physical Science Research Council (EPSRC)
مصطلحات موضوعية: Science & Technology, Technology, Computer Science, Interdisciplinary Applications, Engineering, Chemical, Solvent-based adhesives, Chemical product design, Computer-aided methods, Generalized disjunctive programming, Minimise toxicity, WORKING-FLUID MIXTURES, ORGANIC RANKINE CYCLES, BIO-OIL ADDITIVES, MOLECULAR DESIGN, CHEMICAL-PRODUCT, COMPREHENSIVE FRAMEWORK, SYSTEMATIC METHODOLOGY, OPTIMIZATION, SELECTION, TOOLS, 0904 Chemical Engineering, 0913 Mechanical Engineering, Chemical Engineering
Relation: Computers and Chemical Engineering; http://hdl.handle.net/10044/1/72211; EP/J003840/1; Doctoral Prize - Jonuzaj
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10Academic Journal
المؤلفون: Mann, Vipul, Gani, Rafiqul, Venkatasubramanian, Venkat
مصطلحات موضوعية: Artificial intelligence, Chemical product design, Group contribution, Hybrid modeling, Property prediction
Relation: https://repository.hkust.edu.hk/ir/Record/1783.1-124904; Fluid Phase Equilibria, v. 568, May 2023, article number 113734; https://doi.org/10.1016/j.fluid.2023.113734; http://lbdiscover.ust.hk/uresolver?url_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rfr_id=info:sid/HKUST:SPI&rft.genre=article&rft.issn=0378-3812&rft.volume=&rft.issue=&rft.date=2023&rft.spage=&rft.aulast=Mann&rft.aufirst=&rft.atitle=Group+contribution-based+property+modeling+for+chemical+product+design%3A+A+perspective+in+the+AI+era&rft.title=Fluid+Phase+Equilibria; http://www.scopus.com/record/display.url?eid=2-s2.0-85146621800&origin=inward; http://gateway.isiknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=LinksAMR&SrcApp=PARTNER_APP&DestLinkType=FullRecord&DestApp=WOS&KeyUT=000926475100001
الاتاحة: https://repository.hkust.edu.hk/ir/Record/1783.1-124904
https://doi.org/10.1016/j.fluid.2023.113734
http://lbdiscover.ust.hk/uresolver?url_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rfr_id=info:sid/HKUST:SPI&rft.genre=article&rft.issn=0378-3812&rft.volume=&rft.issue=&rft.date=2023&rft.spage=&rft.aulast=Mann&rft.aufirst=&rft.atitle=Group+contribution-based+property+modeling+for+chemical+product+design%3A+A+perspective+in+the+AI+era&rft.title=Fluid+Phase+Equilibria
http://www.scopus.com/record/display.url?eid=2-s2.0-85146621800&origin=inward
http://gateway.isiknowledge.com/gateway/Gateway.cgi?GWVersion=2&SrcAuth=LinksAMR&SrcApp=PARTNER_APP&DestLinkType=FullRecord&DestApp=WOS&KeyUT=000926475100001 -
11
المؤلفون: Rivera Gil, Jose Luis
المساهمون: Narváez Rincón, Paulo César, Boly, Vincent, Falk, Véronique, Serna Rodas, Juliana, Grupo de Investigación en Procesos Químicos y Bioquímicos
مصطلحات موضوعية: 620 - Ingeniería y operaciones afines, Chemical product design, Industria de cosméticos, organizational context, systems analysis, metodología de diseño, contexto organizativo, productos cosméticos, análisis de sistemas, cosmetic products, Diseño de productos químicos, Cosmetics industry, design methodology, Beauty culture, Cosmética
وصف الملف: xvii, 133 páginas; application/pdf
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12Dissertation/ Thesis
المؤلفون: Montañez Abril, Mauro Andrés
المساهمون: Narváez Rincón, Paulo César, Serna Rodas, Juliana, Montañez Abril, Mauro Andrés 0000-0002-8304-4310
مصطلحات موضوعية: Diseño de producto, Diseño sustentable, Product design, Sustainable design, Productos de palma - Abastecimiento y distribución, Industria del aceite de palma - Abastecimiento y distribución, Palm products - Supply and distribution, Palm oil industry - Supply and distribution, Design methodology, Supply Chain, Value Chain, Sustainability, Chemical product design, Palm oil, Metodología de diseño, Cadena de suministros, Cadena de valor, Sostenibilidad, Diseño de productos químicos, Aceite de palma
وصف الملف: xiv, 121 páginas; application/pdf
Relation: Agouridas, V., Winand, H., McKay, A., & de Pennington, A. (2006). Early alignment of design requirements with stakeholder needs. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 220(9), 1483–1507. https://doi.org/10.1243/09544054JEM404; Allen, D. T., & Shonnard, D. R. (2001). Green engineering: Environmentally conscious design of chemical processes and products. AIChE Journal, 47(9), 1906–1910. https://doi.org/10.1002/aic.690470902; Argoti, A., Orjuela, Á., & Narváez Rincón, P. C. (2019). Challenges and opportunities in assessing sustainability during chemical process. Current Opinion in Chemical Engineering.; Arrieta escobar, J. (2018). An Integrated Methodology for Chemical Product Design : Application to Cosmetic Emulsions.; Aspers, P., & Corte, U. (2019). What is Qualitative in Qualitative Research. Qualitative Sociology, 42(2), 139–160. https://doi.org/10.1007/s11133-019-9413-7; Auch, E., & Pretzsch, J. (2020). Participative Innovation Platforms (PIP) for Upgrading NTFP Value Chains in East Africa. Small-Scale Forestry, 19(4), 419–438. https://doi.org/10.1007/s11842-020-09442-9; Ávila, A., & Albuquerque, J. (2018). IMPACTOS SOCIOAMBIENTALES DEL CULTIVO DE PALMA AFRICANA: LOS CASOS MEXICANO Y BRASILEÑO. Economía y Sociedad, 23, 62–83.; Azapagic, A., Millington, A., & Collett, A. (2006). A methodology for integrating sustainability considerations into process design. Chemical Engineering Research and Design, 84(6 A), 439–452. https://doi.org/10.1205/cherd05007; Babu, A., Maiya, A., Shah, P., & Veluswamy, S. (2013). Clinical trial registration in physiotherapy research. Perspectives in Clinical Research, 4(3), 191. https://doi.org/10.4103/2229-3485.115387; Bairamzadeh, S., Pishvaee, M. S., & Saidi-Mehrabad, M. (2016). Multiobjective Robust Possibilistic Programming Approach to Sustainable Bioethanol Supply Chain Design under Multiple Uncertainties. Industrial and Engineering Chemistry Research, 55(1), 237–256. https://doi.org/10.1021/acs.iecr.5b02875; Barthel, M., Jennings, S., Schreiber, W., Sheane, R., Royston, S., Llp, K., Fry, J., Leng Khor, Y., & McGill, J. (2018). Study on the environmental impact of palm oil consumption and on existing sustainability standards.; Berger, K., Baumgartner, R. J., Weinzerl, M., Bachler, J., Preston, K., & Schöggl, J.-P. (2023). Data requirements and availabilities for a digital battery passport – A value chain actor perspective. Cleaner Production Letters, 4, 100032. https://doi.org/https://doi.org/10.1016/j.clpl.2023.100032; Bernardo, F. P., & Saraiva, P. M. (2005). Integrated Process and Product Design Optimization: a Cosmetic Emulsion Application. 15th European Symposium on Computer Aided Process Engineering – ESCAPE15, 1507–1512. https://doi.org/10.1016/S1570-7946(05)80093-8; Boons, F., & Mendoza, A. (2010). Constructing sustainable palm oil: How actors define sustainability. Journal of Cleaner Production, 18(16–17), 1686–1695. https://doi.org/10.1016/j.jclepro.2010.07.003; Burgess, P. R., & Sunmola, F. T. (2021). Prioritising requirements of informational short food supply chain platforms using a fuzzy approach. Procedia Computer Science, 180, 852–861. https://doi.org/10.1016/j.procs.2021.01.335; Cárdenas González, A. (2016). La agroindustria de la palma de aceite en América* Oil Palm Agro-industry in America. Revista Palmas, 37, 215–228.; Castellanos-Navarrete, A., de Castro, F., & Pacheco, P. (2021). The impact of oil palm on rural livelihoods and tropical forest landscapes in Latin America. In Journal of Rural Studies (Vol. 81, pp. 294–304). Elsevier Ltd. https://doi.org/10.1016/j.jrurstud.2020.10.047; Charpentier, J.-C. (2010). Among the trends for a modern chemical engineering, the third paradigm: The time and length multiscale approach as an efficient tool for process intensification and product design and engineering. Chemical Engineering Research and Design, 88(3), 248–254. https://doi.org/10.1016/j.cherd.2009.03.008; Chiriacò, M. V., Bellotta, M., Jusić, J., & Perugini, L. (2022). Palm oil’s contribution to the United Nations sustainable development goals: Outcomes of a review of socio-economic aspects. In Environmental Research Letters (Vol. 17, Issue 6). Institute of Physics. https://doi.org/10.1088/1748-9326/ac6e77; Choi, S. C., Suh, E. S., & Park, C. J. (2020). Value chain and stakeholder-driven product platform design. Systems Engineering, 23(3), 312–326. https://doi.org/10.1002/sys.21527; Chowdhury, M. M. H., Agarwal, R., & Quaddus, M. (2019). Dynamic capabilities for meeting stakeholders’ sustainability requirements in supply chain. Journal of Cleaner Production, 215, 34–45. https://doi.org/10.1016/j.jclepro.2018.12.222; Cignitti, S., Mansouri, S. S., Woodley, J. M., & Abildskov, J. (2018). Systematic Optimization-Based Integrated Chemical Product-Process Design Framework. Industrial and Engineering Chemistry Research, 57(2), 677–688. https://doi.org/10.1021/acs.iecr.7b04216; Cisternas, L. A., & Gálvez, E. D. (2006). Principles for chemical products design. In Computer Aided Chemical Engineering (Vol. 21, Issue C). https://doi.org/10.1016/S1570-7946(06)80194-X; Conte, E., Gani, R., & Ng, K. M. (2011). Design of formulated products: A systematic methodology. AIChE Journal, 57(9), 2431–2449. https://doi.org/10.1002/aic.12458; Contreras-Zarazúa, G., Martin, M., Ponce-Ortega, J. M., & Segovia-Hernández, J. G. (2021). Sustainable Design of an Optimal Supply Chain for Furfural Production from Agricultural Wastes. Industrial and Engineering Chemistry Research, 60(40), 14495–14510. https://doi.org/10.1021/acs.iecr.1c01847; Crowe, S., Cresswell, K., Robertson, A., Huby, G., Avery, A., & Sheikh, A. (2011). The case study approach. BMC Medical Research Methodology, 11. https://doi.org/10.1186/1471-2288-11-100; Cussler, E. (2011). Chemical product design. Cambridge university press.; Cussler, E. L., & Moggridge, G. D. (2011). Chemical product design, second edition. In Chemical Product Design, Second Edition (Vol. 9780521168, pp. 1–432).; Diaz-Barriga-Fernandez, A. D., Santibañez-Aguilar, J. E., Radwan, N., Nápoles-Rivera, F., El-Halwagi, M. M., & Ponce-Ortega, J. M. (2017). Strategic Planning for Managing Municipal Solid Wastes with Consideration of Multiple Stakeholders. ACS Sustainable Chemistry and Engineering, 5(11), 10744–10762. https://doi.org/10.1021/acssuschemeng.7b02717; Earl, G., & Clift, R. (1999). Stakeholder value analysis: a methodology for intergrating stakeholder values into corporate enviromental investment decisions. Business Strategy and the Environment, 8(3), 149–162. https://doi.org/10.1002/(sici)1099-0836(199905/06)8:33.0.co;2-q; Easwaramoorthy, M., & Zarinpoush, F. (2006). Interviewing for research. www.fao.org/docrep/W3241E/; Eddy, D. C., Krishnamurty, S., Grosse, I. R., Wileden, J. C., & Lewis, K. E. (2013). A normative decision analysis method for the sustainability-based design of products. Journal of Engineering Design, 24(5), 342–362. https://doi.org/10.1080/09544828.2012.745931; Escribano, M., Díaz-Caro, C., & Mesias, F. J. (2018). A participative approach to develop sustainability indicators for dehesa agroforestry farms. Science of the Total Environment, 640–641, 89–97. https://doi.org/10.1016/j.scitotenv.2018.05.297; Espinoza Pérez, A. T., Camargo, M., Narváez Rincón, P. C., & Alfaro Marchant, M. (2017). Key challenges and requirements for sustainable and industrialized biorefinery supply chain design and management: A bibliographic analysis. Renewable and Sustainable Energy Reviews, 69, 350–359. https://doi.org/10.1016/J.RSER.2016.11.084; Espinoza Pérez, A. T., Narváez Rincón, P. C., Camargo, M., & Alfaro Marchant, M. D. (2019). Multiobjective optimization for the design of phase III biorefinery sustainable supply chain. Journal of Cleaner Production, 223, 189–213. https://doi.org/10.1016/J.JCLEPRO.2019.02.268; FAO. (2021). Food Outlook – Biannual Report on Global Food Markets. http://www.fao.org/economic/est/publications/oilcrops-publications/; Fedepalma. (2019). INTERPRETACIÓN NACIONAL ( IN ) PARA COLOMBIA DE LOS PRINCIPIOS Y CRITERIOS DE LA ROUNDTABLE ON SUSTAINABLE PALM OIL INFORME PARA ETAPA DE Junio.; Fritz, M. M. C., Rauter, R., Baumgartner, R. J., & Dentchev, N. (2018). A supply chain perspective of stakeholder identification as a tool for responsible policy and decision-making. Environmental Science and Policy, 81, 63–76. https://doi.org/10.1016/j.envsci.2017.12.011; Frutiger, J., Cignitti, S., Abildskov, J., Woodley, J. M., & Sin, G. (2017). Computational chemical product design problems under property uncertainties. In Computer Aided Chemical Engineering (Vol. 40). https://doi.org/10.1016/B978-0-444-63965-3.50164-1; Fung, K. Y., Ng, K. M., Zhang, L., & Gani, R. (2016a). A grand model for chemical product design. Computers and Chemical Engineering, 91, 15–27. https://doi.org/10.1016/j.compchemeng.2016.03.009; Fung, K. Y., Ng, K. M., Zhang, L., & Gani, R. (2016b). A grand model for chemical product design. Computers and Chemical Engineering, 91, 15–27. https://doi.org/10.1016/j.compchemeng.2016.03.009; Gan, T. S., & Grunow, M. (2016). Concurrent product and supply chain design: a literature review, an exploratory research framework and a process for modularity design. International Journal of Computer Integrated Manufacturing, 29(12), 1255–1271. https://doi.org/10.1080/0951192X.2015.1067908; Gani, R. (2004a). Chemical product design: Challenges and opportunities. Computers and Chemical Engineering, 28(12), 2441–2457. https://doi.org/10.1016/j.compchemeng.2004.08.010; Gani, R. (2004b). Computer-aided methods and tools for chemical product design. Chemical Engineering Research and Design, 82(11), 1494–1504. https://doi.org/10.1205/cerd.82.11.1494.52032; Gani, R., & Ng, K. M. (2015). Product design – Molecules, devices, functional products, and formulated products. Computers & Chemical Engineering, 1–10. https://doi.org/10.1016/j.compchemeng.2015.04.013; Garcés, I. C., & Cuellar Sánchez, M. (1997). Products derived from the palm oil industry. Uses.; Garriga, E. (2014). Beyond Stakeholder Utility Function: Stakeholder Capability in the Value Creation Process. In Source: Journal of Business Ethics (Vol. 120, Issue 4).; Garzon, F. S., Enjolras, M., Camargo, M., & Morel, L. (2019). A green procurement methodology based on Kraljic Matrix for supplier`s evaluation and selection: a case study from the chemical sector. Supply Chain Forum: An International Journal, 20(3), 185–201. https://doi.org/10.1080/16258312.2019.1622446; Grote, C. A., Jones, R. M., Blount, G. N., Goodyer, J., & Shayler, M. (2007). An approach to the EuP Directive and the application of the economic eco-design for complex products. International Journal of Production Research, 45(18–19), 4099–4117. https://doi.org/10.1080/00207540701450088; Gundumogula, M. (2020). Importance of Focus Groups in Qualitative Research. International Journal of Humanities and Social Science (IJHSS), 2020(11), 11. https://doi.org/10.24940/theijhss/2020/v8/i11/HS2011-082ï; Hamdani, F.-E., Quintero, I. A. Q., Enjolras, M., Camargo, M., Monticolo, D., & Lelong, C. (2022). Agile supply chain analytic approach: a case study combining agile and CRISP-DM in an end-to-end supply chain. Supply Chain Forum: An International Journal, 0(0), 1–15. https://doi.org/10.1080/16258312.2022.2064721; Hapuwatte, B. M., & Jawahir, I. S. (2021). Closed-loop sustainable product design for circular economy. Journal of Industrial Ecology, 25(6), 1430–1446. https://doi.org/10.1111/jiec.13154; Harrell, M., & Bradley, M. (2009). Data Collection Methods Semi-Structured Interviews and Focus Groups. RAND Corporation. www.rand.org; Haussmann, Y., & Wuttke, C. C. (2020). Strategic planning of continuous stakeholder involvement in the design of industrial product-service systems. IET Collaborative Intelligent Manufacturing, 2(3), 123–131. https://doi.org/10.1049/IET-CIM.2019.0059; Heintz, J. (2012). Systemic approach and decision process for sustainability in chemical engineering: Applcation to computer aided product design. PhD Thesis. Université de Toulouse.; Heintz, J., Belaud, J.-P., & Gerbaud, V. (2014). Chemical enterprise model and decision-making framework for sustainable chemical product design. Computers in Industry, 65(3), 505–520. https://doi.org/10.1016/j.compind.2014.01.010; Hellin, J., & Meijer, M. (2006). Guidelines for value chain analysis. Analysis, November.; Herremans, I. M., Nazari, J. A., & Mahmoudian, F. (2016). Stakeholder Relationships, Engagement, and Sustainability Reporting. In Source: Journal of Business Ethics (Vol. 138, Issue 3).; Hyett, N., Kenny, A., & Dickson-Swift, V. (2014). Methodology or method? a critical review of qualitative case study reports. In International Journal of Qualitative Studies on Health and Well-being (Vol. 9, Issue 1). Informa Healthcare. https://doi.org/10.3402/qhw.v9.23606; Jamshed, S. (2014). Qualitative research method-interviewing and observation. Journal of Basic and Clinical Pharmacy, 5(4), 87. https://doi.org/10.4103/0976-0105.141942; Kalakul, S., Cignitti, S., Zhang, L., & Gani, R. (2016). Integrated Computer-aided Framework for Sustainable Chemical Product Design and Evaluation. In Computer Aided Chemical Engineering (Vol. 38). https://doi.org/10.1016/B978-0-444-63428-3.50395-7; Kallio, H., Pietilä, A. M., Johnson, M., & Kangasniemi, M. (2016). Systematic methodological review: developing a framework for a qualitative semi-structured interview guide. In Journal of Advanced Nursing (Vol. 72, Issue 12, pp. 2954–2965). Blackwell Publishing Ltd. https://doi.org/10.1111/jan.13031; Kavanagh, L., & Lant, P. (2006). Introduction to Chemical Product Design. A Hands-on Approach. Education for Chemical Engineers, 1(1), 66–71. https://doi.org/10.1205/ece.05001; Khan, O., Stolte, T., Creazza, A., & Hansen, Z. N. L. (2016). Integrating product design into the supply chain. Cogent Engineering, 3(1), 1–24. https://doi.org/10.1080/23311916.2016.1210478; Kontogeorgis, G. M., Jhamb, S., Liang, X., & Dam-Johansen, K. (2022). Computer-aided design of formulated products. Current Opinion in Colloid and Interface Science, 57, 101536. https://doi.org/10.1016/j.cocis.2021.101536; Lai, Y. Y., Yik, K. C. H., Hau, H. P., Chow, C. P., & Ng, L. Y. (2017). Systematic decision making methodology for chemical product design in integrated biorefineries. In Computer Aided Chemical Engineering (Vol. 40). https://doi.org/10.1016/B978-0-444-63965-3.50297-X; le Van, Q., Viet Nguyen, T., & Nguyen, M. H. (2019). Sustainable development and environmental policy: The engagement of stakeholders in green products in Vietnam. Business Strategy and the Environment, 28(5), 675–687. https://doi.org/10.1002/bse.2272; Lipsa. (2018). Aceite de Palma: Cultivo, Procesos de Obtención, Refinación y Transformación. 1–26.; Lu, Y., & Xu, W. (2013). Study on design of life circle assessment system for chemical products. Journal of Chemical and Pharmaceutical Research, 5(11), 69–72.; Mack, N., Woodsong, C., MacQueen, K., Guest, G., & Namey, E. (2011). Qualitative Research Methods: A data collector’s field guide. www.fhi360.org.; Malaysian Palm Oil Board. (2021). MONTHLY EXPORT OF OIL PALM PRODUCTS - 2021.; Marche, B., Boly, V., Morel, L., Camargo, M., & Ortt, J. R. (2017). Overview of phenomena occurring in supply chains during the emergence of innovation. Supply Chain Forum: An International Journal, 18(3), 150–165. https://doi.org/10.1080/16258312.2017.1354649; Marche, B., Boly, V., Morel, L., Mayer, F., & Ortt, R. (2019). Agility and product supply chain design: The case of the Swatch. Journal of Innovation Economics & Management, n° 28(1), 79–109. https://doi.org/10.3917/jie.028.0079; Martín, M., & Martínez, A. (2013). A methodology for simultaneous process and product design in the formulated consumer products industry: The case study of the detergent business. Chemical Engineering Research and Design, 91(5), 795–809. https://doi.org/10.1016/j.cherd.2012.08.012; Martinez-Hernandez, E. (2017). Trends in sustainable process design—from molecular to global scales. Current Opinion in Chemical Engineering, 17, 35–41. https://doi.org/10.1016/j.coche.2017.05.005; Matos, S., & Hall, J. (2007). Integrating sustainable development in the supply chain: The case of life cycle assessment in oil and gas and agricultural biotechnology. Journal of Operations Management, 25(6), 1083–1102. https://doi.org/10.1016/j.jom.2007.01.013; Mattei, M., Kontogeorgis, G. M., & Gani, R. (2012). A Systematic Methodology for Design of Emulsion Based Chemical Products. In Computer Aided Chemical Engineering (Vol. 31). https://doi.org/10.1016/B978-0-444-59507-2.50036-6; Mertler, C. (2018). Methods of Data Collection in quantitative, qualitative and mixed reserach. In Introduction to educational research (Vol. 2). SAGE Publications, Inc.; Miles, M. B., Huberman, M., & Saldaña, J. (2014). Qualitative data analysis A methods Sourcebook (3rd Editio). SAGE Publications.; Millán-Quijano, J., & Pulgarín, S. (2023). Oiling up the field. Forced internal displacement and the expansion of palm oil in Colombia. World Development, 162, 106130. https://doi.org/10.1016/j.worlddev.2022.106130; Minagricultura. (2017). Cadena de palma de aceite.; Minagricultura. (2020). Cadena de palma de aceite, indicadores e instrumentos. Lecturas de Economia, 1–25. https://sioc.minagricultura.gov.co/Palma/Documentos/2020-03-30 Cifras Sectoriales.pdf; Mohd, B. W., Siti Nor, A. A., & Henson, I. E. (2005). Oil palm - Achievements and potential. In Plant Production Science (Vol. 8, Issue 3, pp. 288–297). https://doi.org/10.1626/pps.8.288; Morgan-Trimmer, S., & Wood, F. (2016). Ethnographic methods for process evaluations of complex health behaviour interventions. Trials, 17(1). https://doi.org/10.1186/s13063-016-1340-2; Mosquera, M., & Lopez, D. (2017). Sustainable-certified Oil Palm: Analysis of the Value Chain. In Revista Palmas. Bogotá (Colombia) (Vol. 38, Issue 1).; Muscat, A., de Olde, E. M., de Boer, I. J. M., & Ripoll-Bosch, R. (2020). The battle for biomass: A systematic review of food-feed-fuel competition. In Global Food Security (Vol. 25). Elsevier B.V. https://doi.org/10.1016/j.gfs.2019.100330; Narváez Rincón, P. C., Serna, J., Orjuela, A., & Camargo, M. (2020). Sustainability assessment for chemical product and process design during early design stages. In J. Ren, Y. Wang, & C. He (Eds.), Towards Sustainable Chemical Processes. Elsevier.; Ng, L. Y., Andiappan, V., Chemmangattuvalappil, N. G., & Ng, D. K. S. (2015). Novel methodology for the synthesis of optimal biochemicals in integrated biorefineries via inverse design techniques. Industrial and Engineering Chemistry Research, 54(21), 5722–5735. https://doi.org/10.1021/acs.iecr.5b00217; Ng, L. Y., Chemmangattuvalappil, N. G., & Ng, D. K. S. (2014a). A multiobjective optimization-based approach for optimal chemical product design. Industrial and Engineering Chemistry Research, 53(44), 17429–17444. https://doi.org/10.1021/ie502906a; Ng, L. Y., Chemmangattuvalappil, N. G., & Ng, D. K. S. (2014b). A multiobjective optimization-based approach for optimal chemical product design. Industrial and Engineering Chemistry Research, 53(44), 17429–17444. https://doi.org/10.1021/ie502906a; Nishanth G., & Ng, D. K. S. (2013). A systematic methodology for optimal product design in an integrated biorefinery. In Computer Aided Chemical Engineering (Vol. 32, pp. 91–96). Elsevier B.V. https://doi.org/10.1016/B978-0-444-63234-0.50016-6; Özkir, V., & Başligil, H. (2012). Modelling product-recovery processes in closed-loop supply-chain network design. International Journal of Production Research, 50(8), 2218–2233. https://doi.org/10.1080/00207543.2011.575092; Pacheco, P., Schoneveld, G., Dermawan, A., Komarudin, H., & Djama, M. (2020). Governing sustainable palm oil supply: Disconnects, complementarities, and antagonisms between state regulations and private standards. In Regulation and Governance (Vol. 14, Issue 3, pp. 568–598). Blackwell Publishing. https://doi.org/10.1111/rego.12220; Parkhomenko, S. (2004). Institute of Farm Ecology International competitiveness of soybean, rapeseed and palm oil production in major producing regions.; Rafflegeau S., F. (2013). Desarrollo de la palma de aceite: riesgos y oportunidades con base en las lecciones aprendidas de Camerún e Indonesia. Palmas, 34(2), 351–370.; Raj, T. S., & Lakshminarayanan, S. (2008). Performance assessment/enhancement methodology for supply chains. Industrial and Engineering Chemistry Research, 47(3), 748–759. https://doi.org/10.1021/ie070256e; Rajeev, A., Pati, R. K., & Padhi, S. S. (2019). Sustainable supply chain management in the chemical industry: Evolution, opportunities, and challenges. In Resources, Conservation and Recycling (Vol. 149, pp. 275–291). Elsevier B.V. https://doi.org/10.1016/j.resconrec.2019.05.020; Ramírez, M. C., Sanabria, J. P., Duarte, D. M., & Caicedo, L. C. (2015). Methodology to Support Participative Decision-Making with Vulnerable Communities. Case Study: Engineers Without Borders Colombia/Ingenieros Sin Fronteras Colombia—ISFCOL. Systemic Practice and Action Research, 28(2), 125–161. https://doi.org/10.1007/s11213-014-9325-0; Reeves, S., Peller, J., Goldman, J., & Kitto, S. (2013). Ethnography in qualitative educational research: AMEE Guide No. 80. Medical Teacher, 35(8). https://doi.org/10.3109/0142159X.2013.804977; Reitsma, E., Hilletofth, P., & Johansson, E. (2023). Supply chain design during product development: a systematic literature review. Production Planning and Control, 34(1), 1–18. https://doi.org/10.1080/09537287.2021.1884763; Rivera Gil, J. L. (2022). A system approach to support a methodology for the design of formulated cosmetic products in the context of companies. Université de Lorraine.; Rivera Gil, J. L., Serna, J., Arrieta-Escobar, J. A., Narváez Rincón, P. C., Boly, V., & Falk, V. (2022a). Triggers for chemical product design: A systematic literature review. AIChE Journal, 68(4). https://doi.org/10.1002/aic.17563; Rivera Gil, J. L., Serna, J., Arrieta-Escobar, J. A., Narváez Rincón, P. C., Boly, V., & Falk, V. (2022b). Triggers for chemical product design: A systematic literature review. In AIChE Journal (Vol. 68, Issue 4). John Wiley and Sons Inc. https://doi.org/10.1002/aic.17563; ROBECO. (2022). Our approach to sustainable investing in palm oil.; Roth, A., Pinta, F., Negny, S., & Montastruc, L. (2021). Importing participatory practices of the socio-environmental systems community to the process system engineering community: An application to supply chain. Computers and Chemical Engineering, 155. https://doi.org/10.1016/j.compchemeng.2021.107530; Sahebi, H., Nickel, S., & Ashayeri, J. (2014). Environmentally conscious design of upstream crude oil supply chain. Industrial and Engineering Chemistry Research, 53(28), 11501–11511. https://doi.org/10.1021/ie403492c; Sakai, K., Hassan, M. A., Vairappan, C. S., & Shirai, Y. (2022). Promotion of a green economy with the palm oil industry for biodiversity conservation: A touchstone toward a sustainable bioindustry. In Journal of Bioscience and Bioengineering (Vol. 133, Issue 5, pp. 414–424). Elsevier B.V. https://doi.org/10.1016/j.jbiosc.2022.01.001; Sakao, T. (2007). A QFD-centred design methodology for environmentally conscious product design. International Journal of Production Research, 45(18–19), 4143–4162. https://doi.org/10.1080/00207540701450179; Santander, P., Cruz Sanchez, F. A., Boudaoud, H., & Camargo, M. (2020). Closed loop supply chain network for local and distributed plastic recycling for 3D printing: a MILP-based optimization approach. Resources, Conservation and Recycling, 154, 104531. https://doi.org/10.1016/J.RESCONREC.2019.104531; Santibañez-Aguilar, J. E., Flores-Tlacuahuac, A., Lozano-Garciá, D. F., & Lozano, F. J. (2019). Novel Approach for Weighting in the Geographic Information System Focused on a Multistakeholder Problem: Case for the Residual Biomass Processing System. Industrial and Engineering Chemistry Research, 58(51), 23249–23260. https://doi.org/10.1021/acs.iecr.9b04759; Sayago, A., Marín, M. I., Aparicio, R., & Morales, M. T. (2007). Vitamina E y aceites vegetales. Grasas y Aceites, 58(1), 74–86. https://doi.org/10.3989/gya.2007.v58.i1.11; Schmidt, J., & de Rosa, M. (2020). Certified palm oil reduces greenhouse gas emissions compared to non-certified. Journal of Cleaner Production, 277. https://doi.org/10.1016/j.jclepro.2020.124045; Seider, W. D., Widagdo, S., Seader, J. D., & Lewin, D. R. (2009). Perspectives on chemical product and process design. Computers and Chemical Engineering, 33(5), 930–935. https://doi.org/10.1016/j.compchemeng.2008.10.019; Serna, J., Narváez Rincón, P. C., Falk, V., Boly, V., & Camargo, M. (2021). Methodology for Emulsion Design Based on Emulsion Science and Expert Knowledge. Part 2: An Application in the Cosmetics Sector. Industrial and Engineering Chemistry Research, 60(14), 5220–5235. https://doi.org/10.1021/acs.iecr.1c00866; Serna Rodas, J. (2018). Methodological approach for the sustainable design of structured chemical products during early design stages.; Shohan, S., Ali, S. M., Kabir, G., Ahmed, S. K. K., Suhi, S. A., & Haque, T. (2019). Green supply chain management in the chemical industry: structural framework of drivers. International Journal of Sustainable Development and World Ecology, 26(8), 752–768. https://doi.org/10.1080/13504509.2019.1674406; Smith, B. V., & Ierapepritou, M. G. (2010). Integrative chemical product design strategies: Reflecting industry trends and challenges. Computers and Chemical Engineering, 34(6), 857–865. https://doi.org/10.1016/j.compchemeng.2010.02.039; Smith, B. V., & Ierapepritou, M. (2009). Framework for consumer-integrated optimal product design. Industrial and Engineering Chemistry Research, 48(18), 8566–8574. https://doi.org/10.1021/ie900377e; Solidaridad Network. (2020). Barometer on sustainable palm oil production and trade. Colombia 2020.; Spradley, J. (2016). The ethnographic interview. Waveland Press, Inc.; Suárez Palacios, O. Y. (2011). Production et modélisation de glycérol-esters comme plastifiants pour le PVC. http://www.theses.fr/2011INPL048N/document; Sun, X., Houssin, R., Renaud, J., & Gardoni, M. (2019). A review of methodologies for integrating human factors and ergonomics in engineering design. In International Journal of Production Research (Vol. 57, Issues 15–16, pp. 4961–4976). Taylor and Francis Ltd. https://doi.org/10.1080/00207543.2018.1492161; Tapia, J. F. D., & Samsatli, S. (2020). Integrating fuzzy analytic hierarchy process into a multi-objective optimisation model for planning sustainable oil palm value chains. Food and Bioproducts Processing, 119, 48–74. https://doi.org/10.1016/j.fbp.2019.10.002; Tseng, K. C., & Abdalla, H. (2006). A novel approach to collaborative product design and development environment. Proceedings of the Institution of Mechanical Engineers, Part B: Journal of Engineering Manufacture, 220(12), 1997–2020. https://doi.org/10.1243/09544054JEM485; Uhlemann, J., Costa, R., & Charpentier, J. C. (2020). Product design and engineering — past, present, future trends in teaching, research and practices: academic and industry points of view. In Current Opinion in Chemical Engineering (Vol. 27, pp. 10–21). Elsevier Ltd. https://doi.org/10.1016/j.coche.2019.10.003; United Nations. (2020). Mapping the Palm Oil Value Chain Opportunities for sustainable palm oil in Indonesia and China.; van den Berg, J., Ingram, V. J., Judge, L. O., & Arets, E. J. M. M. (2014). Integrating ecosystem services into tropical commodity value chains-cocoa, soy and palm oil Dutch policy options from an innovation system approach.; Vogt, C., Allers, T., Brosig, G., Eckert, A., Engelke, K., Jung, M., Polt, A., Schultz, H., & Sonnenschein, M. (2005). Paradigm shift and requirements in enhanced value chain design in the chemical industry. Chemical Engineering Research and Design, 83(6 A), 759–765. https://doi.org/10.1205/cherd.04373; Voinov, A., & Bousquet, F. (2010). Modelling with stakeholders. Environmental Modelling and Software, 25(11), 1268–1281. https://doi.org/10.1016/j.envsoft.2010.03.007; Wang, R., Lee, K. E., Mokhtar, M., & Goh, T. L. (2022). The Challenges of Palm Oil Sustainable Consumption and Production in China: An Institutional Theory Perspective. Sustainability (Switzerland), 14(8). https://doi.org/10.3390/su14084856; Weiss, S. I. (2004). 5.1.1 From Stakeholder Values to Product Requirements. INCOSE International Symposium, 14(1), 908–916. https://doi.org/10.1002/j.2334-5837.2004.tb00544.x; WWF. (2012). Profitability and Sustainability in Palm Oil Production: Analysis of Incremental Financial Costs and Benefits of RSPO Compliance.; Yan, W., Chen, C. H., & Chang, W. (2009). An investigation into sustainable product conceptualization using a design knowledge hierarchy and Hopfield network. Computers and Industrial Engineering, 56(4), 1617–1626. https://doi.org/10.1016/j.cie.2008.10.015; Yue, D., Kim, M. A., & You, F. (2013). Design of sustainable product systems and supply chains with life cycle optimization based on functional unit: General modeling framework, mixed-integer nonlinear programming algorithms and case study on hydrocarbon biofuels. ACS Sustainable Chemistry and Engineering, 1(8), 1003–1014. https://doi.org/10.1021/sc400080x; Zahraee, S. M., Golroudbary, S. R., Shiwakoti, N., & Stasinopoulos, P. (2022). Palm oil biomass global supply chain: Environmental emissions vs. technology development of maritime transportation. Procedia CIRP, 105, 817–822. https://doi.org/10.1016/j.procir.2022.02.135; Zarei, M., Niaz, H., Dickson, R., Ryu, J. H., & Liu, J. J. (2021). Optimal Design of the Biofuel Supply Chain Utilizing Multiple Feedstocks: A Korean Case Study. ACS Sustainable Chemistry and Engineering, 9(44), 14690–14703. https://doi.org/10.1021/acssuschemeng.1c03945; Zhang, L., Mao, H., Liu, Q., & Gani, R. (2020). Chemical product design – recent advances and perspectives. In Current Opinion in Chemical Engineering (Vol. 27, pp. 22–34). Elsevier Ltd. https://doi.org/10.1016/j.coche.2019.10.005; Zimmer, Y. (2010). Competitiveness of rapeseed, soybeans and palm oil. In Journal of Oilseed Brassica (Vol. 1, Issue 2).; Zuin, V. G. (2016). Circularity in green chemical products, processes and services: Innovative routes based on integrated eco-design and solution systems. Current Opinion in Green and Sustainable Chemistry, 2, 40–44. https://doi.org/10.1016/j.cogsc.2016.09.008; https://repositorio.unal.edu.co/handle/unal/85678; Universidad Nacional de Colombia; Repositorio Institucional Universidad Nacional de Colombia; https://repositorio.unal.edu.co/
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13Academic Journal
المؤلفون: Zhang, Lei, Fung, Ka Yip, Wibowo, Christianto, Gani, Rafiqul
المصدر: Zhang , L , Fung , K Y , Wibowo , C & Gani , R 2018 , ' Advances in chemical product design ' , Reviews in Chemical Engineering , vol. 34 , no. 3 , pp. 319-340 . https://doi.org/10.1515/revce-2016-0067
مصطلحات موضوعية: Chemical product design, Economic analysis, Market study, Process design, Project management
وصف الملف: application/pdf
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14Dissertation/ Thesis
المؤلفون: Rivera-Gil, Jose Luis
المساهمون: Equipe de Recherche sur les Processus Innovatifs (ERPI), Université de Lorraine (UL), National University of Colombia, Université de Lorraine, Universidad nacional de Colombia, Vincent Boly, Paulo César Narváez Rincón, Véronique Falk
المصدر: https://hal.univ-lorraine.fr/tel-04214314 ; Engineering Sciences [physics]. Université de Lorraine; Universidad nacional de Colombia, 2022. English. ⟨NNT : 2022LORR0268⟩.
مصطلحات موضوعية: Systems analysis, Organizational context, Design methodology, Chemical product design, Cosmetic products, Conception de produits chimiques, Produits cosmétiques, Analyse des systèmes, Contexte organisationnel, Méthodologie de conception, [SPI]Engineering Sciences [physics], [SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering
Relation: NNT: 2022LORR0268
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15Dissertation/ Thesis
المؤلفون: Ramos, Diego
المساهمون: Laboratoire Réactions et Génie des Procédés (LRGP), Université de Lorraine (UL)-Centre National de la Recherche Scientifique (CNRS), Université de Lorraine, Thibault Roques-Carmes, Véronique Sadtler
المصدر: https://hal.univ-lorraine.fr/tel-04105855 ; Chemical and Process Engineering. Université de Lorraine, 2022. English. ⟨NNT : 2022LORR0204⟩.
مصطلحات موضوعية: Pickering emulsions, Chemical product design, Reverse and direct emulsions, Rotor-Stator, Ultrasounds, Material balance, Émulsions de Pickering, Génie des produits formulés, Émulsions directes et inverses, Ultrasons, Bilan de matières, [SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering
Relation: NNT: 2022LORR0204; tel-04105855; https://hal.univ-lorraine.fr/tel-04105855; https://hal.univ-lorraine.fr/tel-04105855/document; https://hal.univ-lorraine.fr/tel-04105855/file/DDOC_T_2022_0204_RAMOS.pdf
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16Dissertation/ Thesis
المؤلفون: Rivera Gil, Jose Luis
المساهمون: Université de Lorraine, Universidad nacional de Colombia, Boly, Vincent, Narváez Rincón, Paulo César, Falk, Véronique
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17Dissertation/ Thesis
المؤلفون: Ramos, Diego
المساهمون: Université de Lorraine, Roques-Carmes, Thibault, Sadtler, Véronique
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18
المؤلفون: Oscar Yesid Suárez Palacios, Christian Fonteix, Mauricio Camargo, Paulo César Narváez Rincón, Jean-Pierre Corriou
المساهمون: Departamento de Ingenieria Quimica y Ambiental [Universidad Nacional de Colombia] (DIQA), Universidad Nacional de Colombia [Bogotà] (UNAL), Equipe de Recherche sur les Processus Innovatifs (ERPI), Université de Lorraine (UL), Laboratoire Réactions et Génie des Procédés (LRGP), Université de Lorraine (UL)-Centre National de la Recherche Scientifique (CNRS), Colciencias, Centre National de la Recherche Scientifique (CNRS)-Université de Lorraine (UL)
المصدر: The Canadian Journal of Chemical Engineering
The Canadian Journal of Chemical Engineering, 2021, 99 (51), pp.S470-S484. ⟨10.1002/cjce.23956⟩مصطلحات موضوعية: Product design, Computer science, General Chemical Engineering, Process design, 02 engineering and technology, MCDA, 021001 nanoscience & nanotechnology, Multiple-criteria decision analysis, Human knowledge, [SPI.MAT]Engineering Sciences [physics]/Materials, glycerol esters, 020401 chemical engineering, chemical product design, design methodology, Performance prediction, Process optimization, [SPI.GPROC]Engineering Sciences [physics]/Chemical and Process Engineering, Product (category theory), Biochemical engineering, 0204 chemical engineering, PVC plasticizers, 0210 nano-technology, Design methods
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19
المؤلفون: Viknesh Andiappan, Lik Yin Ng, Denny K. S. Ng, Jamie W. Y. Lee, Nishanth G. Chemmangattuvalappil
المصدر: Processes, Vol 9, Iss 1569, p 1569 (2021)
Processes
Volume 9
Issue 9مصطلحات موضوعية: Process (engineering), Computer science, green manufacturing, Process Chemistry and Technology, inverse design techniques, Chemical technology, Inverse, multi-objective optimisation, Bioengineering, TP1-1185, Environmentally friendly, Manufacturing engineering, Chemistry, Work (electrical), chemical product design, integrated biorefineries, Key (cryptography), Chemical Engineering (miscellaneous), Production (economics), Environmental impact assessment, Product (category theory), QD1-999
وصف الملف: application/pdf
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20Academic Journal
المصدر: Environmental Science & Technology. 8/1/2001, Vol. 35 Issue 15, p342. 2p.
مصطلحات موضوعية: ENVIRONMENTAL sciences, BIBLIOGRAPHY
Reviews & Products: CHEMICAL Product Design (Book), EFFECTIVE Environmental Assessments (Book), CLEAN Technology for the Manufacture of Specialty Chemicals (Book)