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Articles

Preparation and characterization of highly active solid base catalyst from snail shell for biodiesel production

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Pages 315-324 | Received 14 Sep 2015, Accepted 21 May 2016, Published online: 13 Jul 2016

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Jharna Gupta, Madhu Agarwal & A. K. Dalai. (2017) Experimental evaluation of the catalytic efficiency of calcium based natural and modified catalyst for biodiesel synthesis. International Journal of Green Energy 14:11, pages 878-888.
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Articles from other publishers (7)

Shikhasmita Das, Jasha Momo H. Anal, Pranjal Kalita, Lakshi Saikia & Samuel Lalthazuala Rokhum. (2023) Process Optimization of Biodiesel Production Using Waste Snail Shell as a Highly Active Nanocatalyst. International Journal of Energy Research 2023, pages 1-26.
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Welela Meka Kedir, Kokob Teshome Wondimu & Getabalew Shifera Weldegrum. (2023) Optimization and characterization of biodiesel from waste cooking oil using modified CaO catalyst derived from snail shell. Heliyon 9:5, pages e16475.
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Xiang Yu, Xinzhi Chen, Wenfei Meng & Mingqiao Zhu. (2021) Research progress on supported solid superbase and its catalytic application. Chemical Papers 75:9, pages 4445-4463.
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Hoang Chinh Nguyen, My-Linh Nguyen, Chia-Hung Su, Hwai Chyuan Ong, Horng-Yi Juan & Shao-Jung Wu. (2021) Bio-Derived Catalysts: A Current Trend of Catalysts Used in Biodiesel Production. Catalysts 11:7, pages 812.
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Saida Parveen, Anupam Chakraborty, Dipak Kr. Chanda, Soujita Pramanik, Anandamay Barik & Gautam Aditya. (2020) Microstructure Analysis and Chemical and Mechanical Characterization of the Shells of Three Freshwater Snails. ACS Omega 5:40, pages 25757-25771.
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Jharna Gupta, Madhu Agarwal & A.K. Dalai. (2020) An overview on the recent advancements of sustainable heterogeneous catalysts and prominent continuous reactor for biodiesel production. Journal of Industrial and Engineering Chemistry 88, pages 58-77.
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Jharna Gupta, Madhu Agarwal & Ajay Kumar Dalai. (2018) Marble slurry derived hydroxyapatite as heterogeneous catalyst for biodiesel production from soybean oil. The Canadian Journal of Chemical Engineering 96:9, pages 1873-1880.
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