生物柴油生产中的纳米催化剂:进步、挑战和可持续解决方案

IF 6.2 3区 工程技术 Q1 ENGINEERING, CHEMICAL
Christopher Selvam Damian, Yuvarajan Devarajan, Ravikumar J, Raja T
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引用次数: 0

摘要

应用纳米催化剂将原油转化为生物柴油,是缓解环境问题和减少对化石燃料依赖的一项大有可为的战略。本综述仔细研究了与生物柴油合成有关的纳米催化剂技术的最新发展,强调了各种纳米催化剂的有效性、特异性和生态可持续性,其中包括金属氧化物、磁性固体催化剂和一系列其他纳米结构材料。这些催化剂在提高生物柴油生产的效率和选择性方面表现出巨大的潜力,因为它们具有更强的催化性能、更大的比表面积和更强的皂化复原能力,因此适用于各种原料,如回收油、动物脂肪和植物油。尽管存在与生产成本和回收程序相关的障碍,但最近在经济可行的制造技术和可持续回收方法(包括磁分离方法)方面取得的进展带来了巨大的希望。考虑到原材料获取、能源利用和废物产生等参数,全面的生命周期评估(LCA)对于评估采用纳米催化剂的环境和经济可行性仍然十分必要。本综述强调了纳米催化剂与传统异相催化剂相比的卓越功效,突出了其加快生物柴油合成和促进向环境可持续性更强的能源模式过渡的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Nanocatalysts in Biodiesel Production: Advancements, Challenges, and Sustainable Solutions

Nanocatalysts in Biodiesel Production: Advancements, Challenges, and Sustainable Solutions

The application of nanocatalysts for the conversion of crude oil into biodiesel represents a promising strategy to mitigate environmental issues and diminish dependence on fossil fuels. This review scrutinizes contemporary developments in nanocatalyst technology pertaining to biodiesel synthesis, emphasizing the effectiveness, specificity, and ecological sustainability of various nanocatalysts, which include metal oxides, magnetic solid catalysts, and an array of other nanostructured materials. These catalysts have exhibited substantial potential in augmenting the efficiency and selectivity of biodiesel production, attributable to their enhanced catalytic performance, extensive surface area, and resilience to saponification, rendering them appropriate for diverse feedstocks such as recycled oils, animal fats, and plant oils. Notwithstanding the obstacles associated with production costs and recycling procedures, recent progress in economically viable manufacturing techniques and sustainable recovery methods, including magnetic separation approaches, offers significant promise. A thorough lifecycle assessment (LCA) remains imperative to appraise the environmental and economic viability of employing nanocatalysts, taking into account parameters, such as raw material acquisition, energy utilization, and waste generation. The review accentuates the superior efficacy of nanocatalysts in comparison to traditional heterogeneous catalysts, underscoring their capacity to expedite biodiesel synthesis and facilitate a transition toward a more environmentally sustainable energy paradigm.

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来源期刊
ChemBioEng Reviews
ChemBioEng Reviews Biochemistry, Genetics and Molecular Biology-Biochemistry
CiteScore
7.90
自引率
2.10%
发文量
45
期刊介绍: Launched in 2014, ChemBioEng Reviews is aimed to become a top-ranking journal publishing review articles offering information on significant developments and provide fundamental knowledge of important topics in the fields of chemical engineering and biotechnology. The journal supports academics and researchers in need for concise, easy to access information on specific topics. The articles cover all fields of (bio-) chemical engineering and technology, e.g.,
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