-
1Academic Journal
مصطلحات موضوعية: biomass, Co-digestion and Performance, Co-digestion, Performance, Biomasa, Codigestión, Rendimiento, Codigestión y rendimiento
وصف الملف: application/pdf
Relation: Inge CuC; B. W. Ang, W. L. Choong, and T. S. Ng, “Energy security: Definitions, dimensions and indexes,” Renew. Sustain. Energy Rev., vol. 42, pp. 1077–1093, Feb. 2015, doi:10.1016/J.RSER.2014.10.064. [2] Unidad de Planeación Minero Energética (UPME), “Plan Energético Nacional 2021-2051,” p. 215, 2021, [Online]. Available: https://www1.upme.gov.co/DemandaEnergetica/PEN_2020_2050/Plan_Energetico_Nacional_2020_2050.pdf. [3] A. Ebrahimi and E. Houshfar, “Thermodynamic analysis and optimization of the integrated system of pyrolysis and anaerobic digestion,” Process Saf. Environ. Prot., vol. 164, pp. 582–594, Aug. 2022, doi:10.1016/J.PSEP.2022.06.043. [4] Lin Long, Shah Ajay, Keener Harold, and Li Yebo, “Techno-economic analyses of solid-state anaerobic digestion and composting of yard trimmings,” Waste Manag., vol. 85, pp. 405–416, Feb. 2019, doi:10.1016/J.WASMAN.2018.12.037. [5] D. Wang, Y. T. Tang, J. He, F. Yang, and D. Robinson, “Generalized models to predict the lower heating value (LHV) of municipal solid waste (MSW),” Energy, vol. 216, p. 119279, 2021, doi:10.1016/j.energy.2020.119279. [6] J. van Dam, M. Junginger, A. Faaij, I. Jürgens, G. Best, and U. Fritsche, “Overview of recent developments in sustainable biomass certification,” Biomass and Bioenergy, vol. 32, no. 8, pp. 749–780, Aug. 2008, doi:10.1016/J.BIOMBIOE.2008.01.018. [7] R. A. Parra Huertas, “Digestión anaeróbica: mecanismos biotecnológicos en el tratamiento de aguas residuales y su aplicación en la industria alimentaria,” Prod. + Limpia, vol. 10, no. 2, pp. 142–159, 2015, Accessed: Apr. 15, 2023. [Online]. Available: http://www.scielo.org.co/scielo.php?script=sci_arttext&pid=S1909-04552015000200014&lng=en&nrm=iso&tlng=es. [8] C. Zhang, H. Su, J. Baeyens, and T. Tan, “Reviewing the anaerobic digestion of food waste for biogas production,” Renew. Sustain. Energy Rev., vol. 38, pp. 383–392, 2014, doi:10.1016/j.rser.2014.05.038. [9] P. McKendry, “Energy production from biomass (part 1): Overview of biomass,” Bioresour. Technol., vol. 83, no. 1, pp. 37–46, 2002, doi:10.1016/S0960-8524(01)00118-3. [10] A. Bernal Martinez, G. González López, and G. Cuevas Rodriguez, “Codigestión anaerobia como alternativa para el tratamiento de aguas residuales lácteas y la generación de biogás y biosólidos,” in Mujeres en la Ciencia Ciencias ambientales, uso de recursos, 2020, pp. 115–141. [11] I. Angelidaki and L. Ellegaard, “Codigestion of manure and organic wastes in centralized biogas plants: Status and future trends,” Appl. Biochem. Biotechnol. - Part A Enzym. Eng. Biotechnol., vol. 109, no. 1–3, pp. 95–105, 2003, doi:10.1385/ABAB:109:1-3:95. [12] H. I. Velásquez Arredondo, “Avaliação exergética e exergo-ambiental da produção de biocombustíveis.” Universidade de São Paulo, 2009. [13] Y. Cengel and B. Michael A, Thermodynamics: an Engineering Approach, 8th ed. 2015. [14] J. D. Rhenals, J. Fandiño, T. la Vega, and J. Mendoza Fandiño, “Evaluación energética de la co-combustión de contenido ruminal-metano en frigoríficos y mataderos del departamento de Córdoba-Colombia,” no. January, pp. 44–53, 2021. [15] L. Young and C. C. P. Pian, “High-temperature, air-blown gasification of dairy-farm wastes for energy production,” Energy, vol. 28, no. 7, pp. 655–672, Jun. 2003, doi:10.1016/S0360-5442(03)00004-5. [16] D. Cortés Ramírez, “Diseño de Biodigestor de estiércol bovino,” Universidad de los Andes, 2019. [17] C. A. Saldarriaga-C. and H. Salazar, “Security of the Colombian energy supply: The need for liquefied natural gas regasification terminals for power and natural gas sectors,” Energy, vol. 100, pp. 349–362, Apr. 2016, doi:10.1016/J.ENERGY.2016.01.064. [18] J. K. Kim, B. R. Oh, Y. N. Chun, and S. W. Kim, “Effects of temperature and hydraulic retention time on anaerobic digestion of food waste,” J. Biosci. Bioeng., vol. 102, no. 4, pp. 328–332, Oct. 2006, doi:10.1263/JBB.102.328. [19] J. P. Blasius, R. C. Contrera, S. I. Maintinguer, and M. C. A. Alves de Castro, “Effects of temperature, proportion and organic loading rate on the performance of anaerobic digestion of food waste,” Biotechnol. Reports, vol. 27, p. e00503, Sep. 2020, doi:10.1016/J.BTRE.2020.E00503. [20] F. C. Luz et al., “Ampelodesmos mauritanicus pyrolysis biochar in anaerobic digestion process: Evaluation of the biogas yield,” Energy, vol. 161, pp. 663–669, Oct. 2018, doi:10.1016/J.ENERGY.2018.07.196.; 20; https://revistascientificas.cuc.edu.co/ingecuc/article/download/4501/5440; Núm. 2 , Año 2024 : (Julio-Diciembre); https://hdl.handle.net/11323/13746; https://doi.org/10.17981/ingecuc.20.2.2024.02
-
2
المؤلفون: Gherman Garcia Leal de Araújo, P. R. Rosa, J. N. Alves, Tadeu Vinhas Voltolini, Tim A. McAllister, Severino Gonzaga Neto, Rafael Dantas dos Santos, Le L. Guan, A. L. A. Neves
المساهمون: J. N. ALVES, UFPB, GHERMAN GARCIA LEAL DE ARAUJO, CPATSA, S.G. NETO, UFPB, TADEU VINHAS VOLTOLINI, CPATSA, RAFAEL DANTAS DOS SANTOS, CPATSA, P. R. ROSA, UNIVASF, L. GUAN, University of Alberta, Edmonton, AB, Canada, T. McALLISTER, University of Alberta, Edmonton, AB, Canada, ANDRE LUIS ALVES NEVES, CNPGL.
المصدر: Repositório Institucional da EMBRAPA (Repository Open Access to Scientific Information from EMBRAPA-Alice)
Empresa Brasileira de Pesquisa Agropecuária (Embrapa)
instacron:EMBRAPAمصطلحات موضوعية: 0301 basic medicine, Urine, Digestion and performance, Excretion, 03 medical and health sciences, chemistry.chemical_compound, Water balance, Dieta, Animal science, Nutrient, Allantoin, Genetics, Dry matter, Completely randomized design, 0402 animal and dairy science, 04 agricultural and veterinary sciences, 040201 dairy & animal science, Água, Alimentação animal, 030104 developmental biology, chemistry, Agronomy, Nutrição animal, Hay, Animal Science and Zoology, Consumo, Agronomy and Crop Science, Consumo de água
-
3Academic Journal
المؤلفون: AR, E. (Efka), Suwandyastuti, S. (SNO), Iriyanti, N. (Ning)
المصدر: Animal Production
مصطلحات موضوعية: Indonesia, nutrients digestion and performance, rumen fermentation, protein, Carbohydrate
وصف الملف: application/pdf
-
4Academic Journal
المؤلفون: Zubayeda Zahan, Maazuza Othman
مصطلحات موضوعية: Environmental engineering not elsewhere classified, Alkaline pre-treatment, Anaerobic digestion reactor performance, C/N ratio, Chicken litter, Digestate fractionation, Food wastes, High solids loading, Sequential alkaline and acid pre-treatment, Sequential anaerobic co-digestion, Wheat straw
Relation: 10779/rmit.27524880.v1
-
5Academic Journal
المؤلفون: Zubayeda Zahan, Stelios Georgiou, Tim Muster, Maazuza Othman
مصطلحات موضوعية: Air pollution modelling and control, Global and planetary environmental engineering, Anaerobic digestion reactor performance, C/N ratio, Chicken litter, Continuous anaerobic co-digestion, Food wastes, Hay grass, Lignocellulose fractionation, Organic loading rate, PCA analysis, Wheat straw
Relation: 10779/rmit.27515655.v1
-
6Dissertation/ Thesis
المؤلفون: Zubayeda Zahan
مصطلحات موضوعية: Air pollution modelling and control, Global and planetary environmental engineering, Environmental engineering not elsewhere classified, Agro-industrial wastes, Alkaline pre-treatment, Anaerobic co-digestion (ACoD), Anaerobic digestion (AD), Anaerobic digestion reactor performance, Batch anaerobic digestion, Bio-chemical methane potential, Biogas, Carbon-to-Nitrogen ratio (C/N ratio), Chicken litter, Digestate fractionation, Food wastes, Hay grass, High solids loading, Kinetic Model, Lignocellulosic fractionation, Organic loading rate, Principal component analysis (PCA), Responce surface methodology (RSM), Semi-continuous anaerobic co-digestion, Semi-continuous anaerobic digestion, Semi-solid anaerobic digestion, Sequential Alkaline and acid pre-treatment, Sequential anaerobic co-digestion, Surface optimisation, Wet anaerobic digestion, Wheat straw
الاتاحة: https://doi.org/10.25439/rmt.27580059
https://figshare.com/articles/thesis/Anaerobic_co-digestion_of_chicken_litter_with_food_and_agro-industrial_wastes_residues_an_Australian_case_study_use_of_carbon-to-nitrogen_ratio_for_substrate_mixing_and_semi-solids_versus_wet_anaerobic_digestion/27580059