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1Academic Journal
المؤلفون: Glebert C. Dadol, Leonard D. Tijing, Ramelito C. Agapay, Camila Flor Y. Lobarbio, Noel Peter B. Tan
المصدر: Nanocomposites, Vol 10, Iss 1, Pp 351-362 (2024)
مصطلحات موضوعية: Thin-film nanofibrous composite membrane, solution blown spinning, polyacrylonitrile nanofibers, interfacial polymerization, hydrolysate detoxification, fermentation inhibitors, Materials of engineering and construction. Mechanics of materials, TA401-492, Polymers and polymer manufacture, TP1080-1185
وصف الملف: electronic resource
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2Academic Journal
المؤلفون: Fernando Bonfiglio, Matías Cagno, Lucía Nuñez, Rossina Castro, Emiliana Botto, Paula Rodríguez
المصدر: Electronic Journal of Biotechnology, Vol 71, Iss , Pp 37-46 (2024)
مصطلحات موضوعية: Adaptive Laboratory Evolution, Fermentation inhibitors, Fermentation, Lignocellulosic biomass hydrolysates, Steam explosion, Sugarcane bagasse hemicellulosic hydrolysate, Biotechnology, TP248.13-248.65, Biology (General), QH301-705.5
وصف الملف: electronic resource
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3Academic Journal
المؤلفون: Palucha, Natálie, Quataert, Koen, Vlaeminck, Elodie, Schröder, Eliot, De Winter, Karel, Soetaert, Wim
المصدر: Bioresource Technology ; ISSN: 0960-8524
مصطلحات موضوعية: Biology and Life Sciences, Acetogenic fermentation, Hydrolysate fermentation, Biomass valorisation, Fermentation inhibitors, Carbon circularity
وصف الملف: application/pdf
Relation: https://biblio.ugent.be/publication/01JGP2NWQJQFF1D1VKDJVYG4RG; http://doi.org/10.1016/j.biortech.2024.132026; https://biblio.ugent.be/publication/01JGP2NWQJQFF1D1VKDJVYG4RG/file/01JHAT4WRGG7HEEV3ZD37EQ702
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4Academic Journal
المصدر: Fermentation, Vol 10, Iss 10, p 496 (2024)
مصطلحات موضوعية: mannose, fruit industry, bioprocess, acetic acid, açaí biorefinery, fermentation inhibitors, Fermentation industries. Beverages. Alcohol, TP500-660
وصف الملف: electronic resource
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5Academic Journal
المؤلفون: Sundeep Kaur, Payal Guleria, Sudesh Kumar Yadav
المصدر: Fermentation, Vol 9, Iss 2, p 181 (2023)
مصطلحات موضوعية: xylitol, rice straw, shake flask fermentation, yeast adaptation, dilute acid hydrolysis, fermentation inhibitors, Fermentation industries. Beverages. Alcohol, TP500-660
Relation: https://www.mdpi.com/2311-5637/9/2/181; https://doaj.org/toc/2311-5637; https://doaj.org/article/bc073e7ac29840259fddf4acc5d8268b
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6Academic Journal
المساهمون: Borole, Abhijeet [The Univ. of Tennessee, Knoxville, TN (United States); Oak Ridge National Lab. (ORNL), Oak Ridge, TN (United States)]
المصدر: Biochemical Engineering Journal; 116
وصف الملف: Medium: ED; Size: p. 85-94
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7Academic Journal
المصدر: Biotechnology for Biofuels, Vol 14, Iss 1, Pp 1-15 (2021)
مصطلحات موضوعية: Bioethanol production, Lignocellulose hydrolysates, Fermentation inhibitors, 2G yeast strains, Fuel, TP315-360, Biotechnology, TP248.13-248.65
وصف الملف: electronic resource
Relation: https://doaj.org/toc/1754-6834
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8Academic JournalRemoval of fermentation inhibitors from pre-hydrolysis liquor using polystyrene divinylbenzene resin
المؤلفون: Caoxing Huang, Yayue Zheng, Wenqian Lin, Yuxuan Shi, Guohong Huang, Qiang Yong
المصدر: Biotechnology for Biofuels, Vol 13, Iss 1, Pp 1-14 (2020)
مصطلحات موضوعية: Pre-hydrolysis liquor, Polystyrene divinylbenzene resin, Fermentation inhibitors, Fermentability, Bioconversion, Fuel, TP315-360, Biotechnology, TP248.13-248.65
وصف الملف: electronic resource
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9Academic Journal
المؤلفون: Dhungana, Pradip, Prajapati, Bikram, Maharjan, Sujeeta, Joshi, Jarina
المصدر: International Journal of Applied Sciences and Biotechnology; Vol. 10 No. 1 (2022); 1-11 ; 2091-2609
مصطلحات موضوعية: lignocellulosic biomass, pretreatment techniques, fermentation inhibitors, bioethanol production
وصف الملف: application/pdf
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10Academic Journal
المؤلفون: Jesus Eliécer Larrahondo, Celso Silva Caldas, Laura Isabel Liévano, Mauren Daniela Garaviño, Rafaella Eloisa Candido de Azevedo
المصدر: UNINGÁ Review, Vol 34, Iss 3, Pp 29-34 (2019)
مصطلحات موضوعية: fermentation inhibitors, furfural, molass, phenols, Science, Social Sciences
وصف الملف: electronic resource
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11Academic Journal
المؤلفون: Darwin Carranza Saavedra, Jorge Andrés Alvarado Nuñez, José Fernando Solanilla Duque, Claudia Patricia Valenzuela Real
المصدر: Ingeniería e Investigación, Vol 41, Iss 2, Pp e87365-e87365 (2021)
مصطلحات موضوعية: chemical hydrolysis, enzymatic hydrolysis, fermentation inhibitors, reducing sugars, Engineering (General). Civil engineering (General), TA1-2040
وصف الملف: electronic resource
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12Book
المؤلفون: Alessandra Verardi, Catia Giovanna Lopresto, Alessandro Blasi, Sudip Chakraborty, Vincenza Calabrò
المساهمون: Alessandra Verardi, Catia Giovanna Lopresto, Alessandro Blasi, Sudip Chakraborty, Vincenza Calabrò, Abu Yousuf, Domenico Pirozzi, Filomena Sannino, Verardi, Alessandra, Giovanna Lopresto, Catia, Blasi, Alessandro, Chakraborty, Sudip, Calabrò, Vincenza
مصطلحات موضوعية: Bioethanol, biobutanol, lignocellulosic biomass, cellulases and xylanases enzymes, membrane-assisted enzymatic hydrolysis, fermentation inhibitors
Relation: info:eu-repo/semantics/altIdentifier/isbn/978-0-12-815936-1; ispartofbook:Lignocellulosic Biomass to Liquid Biofuels; firstpage:67; lastpage:125; numberofpages:59; alleditors:Abu Yousuf, Domenico Pirozzi, Filomena Sannino; http://hdl.handle.net/20.500.12079/60339; https://www.sciencedirect.com/science/article/pii/B9780128159361000034
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13Academic Journal
المساهمون: Haque, Monica
المصدر: Journal of Chemical Technology and Biotechnology (1986); 87; 1
وصف الملف: Medium: ED
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14Academic Journal
المؤلفون: Carranza Saavedra, Darwin, Alvarado Nuñez, Jorge Andrés, Solanilla Duque, José Fernando, Valenzuela Real, Claudia Patricia
المصدر: Ingeniería e Investigación; Vol. 41 No. 2 (2021); e87365 ; Ingeniería e Investigación; Vol. 41 Núm. 2 (2021); e87365 ; 2248-8723 ; 0120-5609
مصطلحات موضوعية: Chemical hydrolysis, Enzymatic hydrolysis, Fermentation inhibitors, Reducing sugars, Environmental Engineering, Chemical Engineering, Biotechnology, Hidrólisis química, Hidrólisis enzimática, Inhibidores de fermentación, Azúcares reductores, Ingeniería ambiental, Ingeniería química, Biotecnología
وصف الملف: text/xml; application/pdf
Relation: https://revistas.unal.edu.co/index.php/ingeinv/article/view/87365/80131; https://revistas.unal.edu.co/index.php/ingeinv/article/view/87365/78508; Aditiya, H., Mahlia, T. M. I., Chong, W., Nur, H., and Sebayang, A. (2016). Second generation bioethanol production: A critical review. Renewable Sustainable Energy Reviews, 66, 631-653. https://doi.org/10.1016/j.rser.2016.07.015; Aloui, D., Goutte, S., Guesmi, K., and Hchaichi, R. (2020). COVID 19’s impact on crude oil and natural gas S&P GS Indexes. SSRN. http://dx.doi.org/10.2139/ssrn.3587740; AOAC. (2000).Official Methods of Analysis. (17th. ed.). Gaithersburg, USA: Association of Official Analytical Chemists.; Awad, O. I., Mamat, R., Ali, O. M., Sidik, N., Yusaf, T., Kadirgama, K., and Kettner, M. (2018). Alcohol and ether as alternative fuels in spark ignition engine: A review. Renewable Sustainable Energy Reviews, 82(3), 2586-2605. https://doi.org/10.1016/j.rser.2017.09.074; Carranza Saavedra, D., Alvarado Núñez, J. A., Méndez Reyes, D. A., Valenzuela Real, C. P., and Solanilla Duque, J. F. (2015). Pretratamiento de residuos de plátano (Musa paradisiaca (L.) AAB) y arracacha (Arracacia xanthorrhiza Bancroft) para la obtención de azúcares fermentables. Revista Venezolana de Ciencia y Tecnología de Alimentos, 6(1), 019-035. http://oaji.net/articles/2017/4924-1495586231.pdf; Cheng, K.-K., Cai, B.-Y., Zhang, J.-A., Ling, H.-Z., Zhou, Y.-J., Ge, J.-P., and Xu, J.-M. (2008). Sugarcane bagasse hemicellulose hydrolysate for ethanol production by acid recovery process. Biochemical Engineering Journal, 38(1), 105-109. https://doi.org/10.1016/j.bej.2007.07.012; Congreso de Colombia (2001). LEY 693 de 2001. Por la cual se dictan normas sobre el uso de alcoholes carburantes, se crean estímulos para su producción, comercialización y consumo, y se dictan otras disposiciones. September 27, 2001. D.O. Nr. 44564. http://www.secretariasenado.gov.co/senado/basedoc/ley_0693_2001.html; Didaskalou, C., Buyuktiryaki, S., Kecili, R., Fonte, C. P., and Szekely, G. (2017). Valorisation of agricultural waste with an adsorption/nanofiltration hybrid process: from materials to sustainable process design. Green Chemistry, 19(13), 3116-3125. doi:http://dx.doi.org/10.1039/c7gc00912g; Galford, G. L., Peña, O., Sullivan, A. K., Nash, J., Gurwick, N., Pirolli, G., Richards, M., White, J., and Wollenberg, E. (2020). Agricultural development addresses food loss and waste while reducing greenhouse gas emissions. Science of The Total Environment, 699, 134318. https://doi.org/10.1016/j.scitotenv.2019.134318; Guerrero, A. B., Ballesteros, I., and Ballesteros, M. (2017). Optimal conditions of acid‐catalysed steam explosion pretreatment of banana lignocellulosic biomass for fermentable sugar production. Journal of Chemical Technology Biotechnology, 92(9), 2351-2359. https://doi.org/10.1002/jctb.5239; Huang, C., Jeuck, B., and Yong, Q. (2017). Using pretreatment and enzymatic saccharification technologies to produce fermentable sugars from agricultural wastes. In Kalla, V. C. and Singh, L. (Eds.) Waste Biomass Management–A Holistic Approach (pp. 15-38) Berlin, Germany: Springer.; Huang, D., Cao, G., Geng, Y., Wang, L., Chen, X., and Liang, A. (2019). Impact of agricultural waste return on soil greenhouse gas emissions. Applied Ecology Environmental Research, 17(1), 1321-1335. http://dx.doi.org/10.15666/aeer/1701_13211335; Kong, W., Zhang, T., Feng, D., Xue, Y., Wang, Y., Li, Z., Yang, W., and Xue, C. (2016). Effects of modified starches on the gel properties of Alaska Pollock surimi subjected to different temperature treatments. Food Hydrocolloids, 56, 20-28. https://doi.org/10.1016/j.foodhyd.2015.11.023; Leja, M., Kamińska, I., Kramer, M., Maksylewicz-Kaul, A., Kammerer, D., Carle, R., and Baranski, R. (2013). The content of phenolic compounds and radical scavenging activity varies with carrot origin and root color. Plant Foods for Human Nutrition, 68(2), 163-170. https://doi.org/10.1007/s11130-013-0351-3; Leyva, A., Quintana, A., Sánchez, M., Rodríguez, E. N., Cremata, J., and Sánchez, J. C. (2008). Rapid and sensitive anthrone–sulfuric acid assay in microplate format to quantify carbohydrate in biopharmaceutical products: Method development and validation. Biologicals, 36(2), 134-141. https://doi.org/10.1016/j.biologicals.2007.09.001; Li, H., Yan, S., Mao, H., Ji, J., Xu, M., Zhang, S., Wang, J., Yingli, L., and Sun, B. (2020). Insights into maize starch degradation by sulfuric acid from molecular structure changes. Carbohydrate polymers, 229, 115542. https://doi.org/10.1016/j.carbpol.2019.115542; Li, Z., Wang, D., and Shi, Y. C. (2019). High‐Solids Bio‐Conversion of Maize Starch to Sugars and Ethanol. Starch‐Stärke, 71(1-2), 1800142. https://doi.org/10.1002/star.201800142; Londoño-Restrepo, S. M., Rincón-Londoño, N., Contreras-Padilla, M., Millan-Malo, B. M., and Rodriguez-Garcia, M. E. J. I. (2018). Morphological, structural, thermal, compositional, vibrational, and pasting characterization of white, yellow, and purple Arracacha lego-like starches and flours (Arracacia xanthorrhiza). Journal of Biological Macromolecules, 113, 1188-1197. https://doi.org/10.1016/j.ijbiomac.2018.03.021; Lupton, S. (2017). Markets for waste and waste–derived fertilizers. An empirical survey. Journal of Rural Studies, 55, 83-99. https://doi.org/10.1016/j.jrurstud.2017.07.017; Maiti, S., Gallastegui, G., Suresh, G., Sarma, S. J., Brar, S. K., Drogui, P., LeBihan, Y., Buelna, G., Verna M., and Soccol, C. R. (2018). Hydrolytic pre-treatment methods for enhanced biobutanol production from agro-industrial wastes. Bioresource technology, 249, 673-683. https://doi.org/10.1016/j.biortech.2017.09.132; Miller, G. L. (1959). Use of dinitrosalicylic acid reagent for determination of reducing sugar. Analytical chemistry, 31(3), 426-428. https://doi.org/10.1021/ac60147a030; MinAgricultura and Agronet. (2018). Reporte: Área, Producción y Rendimiento Nacional por Cultivo. https://www.agronet.gov.co/estadistica/Paginas/home.aspx?cod=1; Nair, R., Lennartsson, P. R., and Taherzadeh, M. J. (2017). Bioethanol production from agricultural and municipal wastes. In Pandey, A., Larroche, C., Angeles Saronman, M., and Du, G. (Eds.) Current developments in biotechnology and bioengineering (pp. 157-190). Amsterdam, Netherlands: Elsevier.; Oliveira, H. M., Pinheiro, A. Q., Fonseca, A. J., Cabrita, A. R., and Maia, M. R. (2019). Flexible and expeditious assay for quantitative monitoring of alpha-amylase and amyloglucosidase activities. MethodsX, 6, 246-258. https://doi.org/10.1016/j.mex.2019.01.007; Otache, M. A., Ubwa, S. T., and Godwin, A. K. (2017). Proximate analysis and mineral composition of peels of three sweet cassava cultivars. Asian Journal of Physical Chemical Sciences, 3(4), 1-10. https://doi.org/10.9734/AJOPACS/2017/36502; Palacios, R., Morales, M., and Arias, G. C. (2011). Evaluación químico bromatológica de tres variedades de Arracacia xanthorrhiza" arracacha". Ciencia e Investigación, 14(2), 12-14. https://doi.org/10.15381/ci.v14i2.3161; Peñaranda Contreras, O. I., Perilla Perilla, J. E., and Algecira Enciso, N. A. (2008). Revisión de la modificación química del almidón con ácidos orgánicos. Ingeniería e Investigación, 28(3), 47-52. https://doi.org/10.15446/ing.investig.v28n3.15119; Rana, M., and Kumar, S. (2017). Arracacha. In M. K. Rana (Ed.), Vegetable Crop Science (pp. 923-932). Boca Raton, FL: CRC Press.; Rathore, S., Paulsen, M. R., Vidal Jr, B., and Singh, V. (2009). Monitoring liquefaction unit operation in dry-grind ethanol process: Factors affecting hydrolysis and methods for analysis. Transactions of the ASABE, 52(5), 1639-1647. https://doi.org/10.13031/2013.29115; Sánchez-Riaño, A., Barrero, C. R., and Murillo, E. (2010). Perspectivas de uso de subproductos agroindustriales para la producción de bioetanol. Scientia et Technica, 3(46), 232-235. https://revistas.utp.edu.co/index.php/revistaciencia/article/view/259; Sarkar, N., Ghosh, S. K., Bannerjee, S., and Aikat, K. J. R. e. (2012). Bioethanol production from agricultural wastes: an overview. Renewable Energy, 37(1), 19-27. https://doi.org/10.1016/j.renene.2011.06.045; Shigematsu, T., Furukawa, N., Takaoka, R., Hayashi, M., Sasao, S., Ueno, S., . . . Iguchi, A. (2017). Effect of high pressure on the saccharification of starch in the tuberous root of sweet potato (Ipomoea batatas). Biophysical chemistry, 231, 105-110. doi:https://doi.org/10.1016/j.bpc.2017.04.012; Van Soest, P. and Wine, R. (1968). Determination of lignin and cellulose in acid-detergent fiber with permanganate. Journal of the association of official analytical chemists, 51(4), 780-785. https://doi.org/10.1093/jaoac/51.4.780; Van Soest, P. J. (1963). Use of detergents in the analysis of fibrous feeds. 2. A rapid method for the determination of fiber and lignin. Journal of the Association of Official Agricultural Chemists, 46(5), 829-835. https://doi.org/10.1093/jaoac/46.5.829; Venn, F. (2016). The oil crisis. New York, NY: Routledge.; Wojtusik, M., Villar, J. C., Zurita, M., Ladero, M., and Garcia-Ochoa, F. (2017). Study of the enzymatic activity inhibition on the saccharification of acid pretreated corn stover. Biomass Bioenergy, 98, 1-7. https://doi.org/10.1016/j.biombioe.2017.01.010; Zabed, H., Sahu, J., Suely, A., Boyce, A., and Faruq, G. (2017). Bioethanol production from renewable sources: Current perspectives and technological progress. Renewable Sustainable Energy Reviews, 71, 475-501. https://doi.org/10.1016/j.rser.2016.12.076; Zhang, B., Li, H., Wang, S., Junejo, S. A., Liu, X., and Huang, Q. (2020). In Vitro Starch Digestion: Mechanisms and Kinetic Models. In Wang, S. (Ed.), Starch Structure, Functionality and Application in Foods (pp. 151-167). Singapore: Springer Singapore.; https://revistas.unal.edu.co/index.php/ingeinv/article/view/87365
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15Academic Journal
المؤلفون: Gert Vanmarcke (10580115), Mekonnen M. Demeke (10580118), Maria R. Foulquié-Moreno (8825054), Johan M. Thevelein (9135783)
مصطلحات موضوعية: Biochemistry, Microbiology, Molecular Biology, Pharmacology, Biotechnology, Sociology, Developmental Biology, Hematology, Virology, Space Science, Environmental Sciences not elsewhere classified, Biological Sciences not elsewhere classified, Chemical Sciences not elsewhere classified, Bioethanol production, Lignocellulose hydrolysates, Fermentation inhibitors, 2G yeast strains
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16Academic Journal
المؤلفون: Anamarija Štafa, Bojan Žunar, Andrea Pranklin, Antonio Zandona, Marina Svetec Miklenić, Božidar Šantek, Ivan Krešimir Svetec
المصدر: Food Technology and Biotechnology, Vol 57, Iss 1, Pp 5-16 (2019)
مصطلحات موضوعية: yeast Saccharomyces cerevisiae, intraspecies hybrids, lignocellulosic hydrolysates, growth and fermentation inhibitors, gene targeting, Biotechnology, TP248.13-248.65, Food processing and manufacture, TP368-456
وصف الملف: electronic resource
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17Report
المساهمون: Sedlak, Miroslav
وصف الملف: Medium: ED; Size: 95
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18Academic Journal
المؤلفون: Kazuei Ishii, Masahiro Sato, Satoru Ochiai, Taichi Endo, 佐藤 昌宏, 石井 一英, 落合 知, 遠藤 太一
المصدر: Proceedings of the Annual Conference of Japan Society of Material Cycles and Waste Management. 2021, :227
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19Academic Journal
المؤلفون: LARRAHONDO, JESUS ELIÉCER, CALDAS, CELSO SILVA, LIÉVANO, LAURA ISABEL, GARAVIÑO, MAUREN DANIELA, CANDIDO DE AZEVEDO, RAFAELLA ELOISA
المصدر: Uningá Review; Vol. 34 No. 3 (2019): Revista UNINGÁ Review; 29-34 ; Uningá Review; v. 34 n. 3 (2019): Revista UNINGÁ Review; 29-34 ; 2178-2571
مصطلحات موضوعية: Fenóis, Furfural, Inibidores de fermentação, Mel, Fermentation inhibitors, Molass, Phenols
وصف الملف: application/pdf
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20Academic Journal
المؤلفون: Makoś, Patrycja, Słupek, Edyta, Kamiński, Marian
مصطلحات موضوعية: Biomasa lignocelulozowa, Fermentacja ciemna, Inhibitory fermentacji, Ekstrakcja ciecz-ciecz, Chromatografia gazowa- spektrometria mas (GC-MS), Ligno-cellulosic biomass, Dark fermentation, Fermentation inhibitors, Liquid-liquid extraction, Gas chromatography- mass spectrometry (GC-MS)
Relation: Camera Separatoria. T.10, nr 2 (2018) , s. 64-80; http://hdl.handle.net/11331/3557
الاتاحة: http://hdl.handle.net/11331/3557