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Titlebook: Biodiesel Production with Green Technologies; Aminul Islam,Pogaku Ravindra Book 2017 Springer International Publishing Switzerland 2017 Gr

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发表于 2025-3-21 17:52:45 | 显示全部楼层 |阅读模式
期刊全称Biodiesel Production with Green Technologies
影响因子2023Aminul Islam,Pogaku Ravindra
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发行地址Emphasizes the comparison of green biofuel technologies with existing methods, in order to evaluate efficient methods for producing biofuel technologies.Highlights the macroscopic and encapsulated tec
图书封面Titlebook: Biodiesel Production with Green Technologies;  Aminul Islam,Pogaku Ravindra Book 2017 Springer International Publishing Switzerland 2017 Gr
影响因子.This book provides a single-source reference to green technologies in advanced biofuel technology. The main focus is on the description of the state of the art in catalytic processes for the "green" production of biofuels. The authors describe two different, practical approaches for catalysts, which allow for effective and easy separation of the catalyst by simple filtration, and enable reuse for several cycles. Readers will gain understanding as to the mechanisms involved in the synthesis and structure formation of the catalyst, in order to maximize yield of biodiesel production. The authors also address the question of how catalytic material should be distributed inside a porous support to obtain optimal performance. The effects of physicochemical and operating parameters are analyzed to gain insight into the underlying phenomena governing the performance of optimally designed catalysts.<.
Pindex Book 2017
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https://doi.org/10.1007/978-3-8349-4671-3catalyst particle. Besides, catalysts characterization technique and mathematical equations were also included into this chapter. The summary is indicated in the following flowchart (Fig. 3.1). Different materials used are provided in the text.
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Klassische Krisenmanagement-Konzeptetassium iodide (KI), potassium fluoride (KF), and sodium nitrate (NaNO.) catalysts for the production of biodiesel from palm oil at 60 °C in batch process. The catalysts were prepared at different loading contents, and the effects of these catalysts on the transesterification reaction were evaluated
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