State-of-the-art novel catalyst synthesised from waste glassware and eggshells for cleaner fuel production
暂无分享,去创建一个
A. Al-Muhtaseb | M. Ahmad | F. Jamil | A. Osman | Myo Tay Zar Myint | M. Naushad | M. Hussain | R. Al-Hajri | H. Htet Kyaw
[1] V. Gupta,et al. Environmental life cycle assessment of biodiesel production from waste cooking oil: A systematic review , 2022, Renewable and Sustainable Energy Reviews.
[2] H. Esmaeili. A critical review on the economic aspects and life cycle assessment of biodiesel production using heterogeneous nanocatalysts , 2022, Fuel Processing Technology.
[3] Luciene Kazue Tokura,et al. Comparison of emissions and engine performance of safflower and commercial biodiesels , 2022, Industrial Crops and Products.
[4] Rehab M. Ali,et al. Techno-economic assessment of the biodiesel production using natural minerals rocks as a heterogeneous catalyst via conventional and ultrasonic techniques , 2022, Renewable Energy.
[5] J. Klemeš,et al. A review on latest trends in cleaner biodiesel production: Role of feedstock, production methods, and catalysts , 2022, Journal of Cleaner Production.
[6] Samuel Ogbeide Ebhodaghe,et al. Optimization and kinetic study of biodiesel production from beef tallow using calcium oxide as a heterogeneous and recyclable catalyst , 2022, Energy Conversion and Management: X.
[7] M. Daramola,et al. Recent advances in heterogeneous catalysis for green biodiesel production by transesterification , 2022, Energy Conversion and Management.
[8] Jeehoon Han,et al. Process evaluation and techno-economic analysis of biodiesel production from marine macroalgae Codium tomentosum. , 2022, Bioresource technology.
[9] B. Nath,et al. Biodiesel production from mixed oils: A sustainable approach towards industrial biofuel production , 2022, Chemical Engineering Journal Advances.
[10] K. Huddersman,et al. Review of biodiesel production by the esterification of wastewater containing fats oils and grease (FOGs) , 2022, Journal of Industrial and Engineering Chemistry.
[11] M. Helmi,et al. Phosphomolybdic acid/chitosan as acid solid catalyst using for biodiesel production from pomegranate seed oil via microwave heating system: RSM optimization and kinetic study , 2022, Renewable Energy.
[12] O. Oyekola,et al. Optimization of biodiesel produced from waste sunflower cooking oil over bi-functional catalyst , 2022, Results in Engineering.
[13] W. Zimmerman,et al. Techno-economic modeling to produce biodiesel from marine microalgae in sub-Saharan countries: An exploratory study in Guinea-Bissau , 2022, Biomass and Bioenergy.
[14] Ahmad Abbaszadeh-Mayvan,et al. Process optimization of ultrasonic-assisted biodiesel production from waste cooking oil using waste chicken eggshell-derived CaO as a green heterogeneous catalyst , 2022, Biomass and Bioenergy.
[15] B. Gurunathan,et al. Investigation of CaO nanocatalyst synthesized from Acalypha indica leaves and its application in biodiesel production using waste cooking oil , 2022, Fuel.
[16] B. Moser,et al. Lewatit-immobilized lipase from Bacillus pumilus as a new catalyst for biodiesel production from tallow: Response surface optimization, fuel properties and exhaust emissions , 2022, Process Safety and Environmental Protection.
[17] A. Al-Muhtaseb,et al. Integrating life cycle assessment and characterisation techniques: A case study of biodiesel production utilising waste Prunus Armeniaca seeds (PAS) and a novel catalyst. , 2022, Journal of environmental management.
[18] R. D. da Costa,et al. Biodiesel in South American countries: A review on policies, stages of development and imminent competition with hydrotreated vegetable oil , 2022, Renewable and Sustainable Energy Reviews.
[19] J. Pinto,et al. How the biodiesel from immobilized enzymes production is going on: An advanced bibliometric evaluation of global research , 2022, Renewable and Sustainable Energy Reviews.
[20] Mahdi M. Almaky,et al. Synthesis and characterization of ZnO nanoparticles for the production of biodiesel by transesterification: Kinetic and thermodynamic studies , 2022, Fuel.
[21] P. Baredar,et al. Influence of blending additives in biodiesel on physiochemical properties, engine performance, and emission characteristics , 2022, Fuel.
[22] P. Tan,et al. Waste cooking oil biodiesel and petroleum diesel soot from diesel bus: A comparison of morphology, nanostructure, functional group composition and oxidation reactivity , 2022, Fuel.
[23] S. Alharbi,et al. Comparative assessment of waste cooking, chicken waste and waste tire biodiesel blends on performance and emission characteristics , 2022, Fuel.
[24] A. Naeem,et al. Biodiesel production by valorizing waste non-edible wild olive oil using heterogeneous base catalyst: Process optimization and cost estimation , 2022, Fuel.
[25] Y. Vasseghian,et al. Enhanced production of biodiesel using nanomaterials: A detailed review on the mechanism and influencing factors , 2022, Fuel.
[26] P. R. Yaashikaa,et al. Bio-derived catalysts for production of biodiesel: A review on feedstock, oil extraction methodologies, reactors and lifecycle assessment of biodiesel , 2022, Fuel.
[27] Yunjun Yan,et al. Enhancing biodiesel production via liquid Yarrowia lipolytica lipase 2 in deep eutectic solvents , 2022, Fuel.
[28] Mengli Guo,et al. Highly active and recyclable CuO/ZnO as photocatalyst for transesterification of waste cooking oil to biodiesel and the kinetics , 2022, Fuel.
[29] Hwai Chyuan Ong,et al. Strategies for fuel property enhancement for second-generation multi-feedstock biodiesel , 2022, Fuel.
[30] Abdullah M. Asiri,et al. A short review on approach for biodiesel production: Feedstock’s, properties, process parameters and environmental sustainability , 2021, Materials Today: Proceedings.
[31] A. Al-Muhtaseb,et al. Bioethanol and biodiesel: Bibliometric mapping, policies and future needs , 2021, Renewable and Sustainable Energy Reviews.
[32] Chuchai Sronsri,et al. Performance of CaO catalyst prepared from magnetic-derived CaCO3 for biodiesel production , 2021 .
[33] N. Chanlek,et al. Development of CaO supported on modified geopolymer catalyst for transesterification of soybean oil to biodiesel , 2021, Materials Today Communications.
[34] A. Al-Muhtaseb,et al. Circular economy approach of enhanced bifunctional catalytic system of CaO/CeO2 for biodiesel production from waste loquat seed oil with life cycle assessment study , 2021 .
[35] A. Al-Muhtaseb,et al. Facile technique towards clean fuel production by upgrading waste cooking oil in the presence of a heterogeneous catalyst , 2020, Journal of King Saud University - Science.
[36] A. P. Soares Dias,et al. Biodiesel by Co-processing animal fat/vegetable oil mixtures over basic heterogeneous Ca catalyst , 2020 .
[37] J. Morken,et al. Factors affecting the potential of Jatropha curcas for sustainable biodiesel production: A critical review , 2020 .
[38] S. Yasin,et al. Waste quail beaks as renewable source for synthesizing novel catalysts for biodiesel production , 2020 .
[39] A. Al-Muhtaseb,et al. Heterogeneous carbon-based catalyst modified by alkaline earth metal oxides for biodiesel production: Parametric and kinetic study , 2020 .
[40] P. Zwolinski,et al. Environmental assessment of an animal fat based biodiesel: Defining goal, scope and life cycle inventory , 2020 .
[41] M. Pons,et al. Exergo-environmental life cycle assessment of biodiesel production from mutton tallow transesterification , 2018, Renewable Energy.
[42] Ahmad O. Hasan,et al. Biodiesel production over a catalyst prepared from biomass-derived waste date pits , 2018, Biotechnology reports.
[43] Ala’a H. Al-Muhatseb,et al. Biodiesel production by valorizing waste Phoenix dactylifera L. Kernel oil in the presence of synthesized heterogeneous metallic oxide catalyst (Mn@MgO-ZrO2) , 2018 .
[44] Ofélia de Queiroz Fernandes Araújo,et al. Assessment of greenhouse gases (GHG) emissions from the tallow biodiesel production chain including land use change (LUC) , 2017 .
[45] Paul Hellier,et al. Optimization of oil extraction from waste "date pits" for biodiesel production , 2016 .
[46] B. Su,et al. Induced transformation of amorphous silica to cristobalite on bacterial surfaces , 2015 .