Selective preparation for biofuels and high value chemicals based on biochar catalysts

IF 3.1 4区 工程技术 Q3 ENERGY & FUELS
Hui Li, Changlan Hou, Yunbo Zhai, Mengjiao Tan, Zhongliang Huang, Zhiwei Wang, Lijian Leng, Peng Liu, Tingzhou Lei, Changzhu Li
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引用次数: 0

Abstract

The reuse of biomass wastes is crucial toward today’s energy and environmental crisis, among which, biomass-based biochar as catalysts for biofuel and high value chemical production is one of the most clean and economical solutions. In this paper, the recent advances in biofuels and high chemicals for selective production based on biochar catalysts from different biomass wastes are critically summarized. The topics mainly include the modification of biochar catalysts, the preparation of energy products, and the mechanisms of other high-value products. Suitable biochar catalysts can enhance the yield of biofuels and higher-value chemicals. Especially, the feedstock and reaction conditions of biochar catalyst, which affect the efficiency of energy products, have been the focus of recent attentions. Mechanism studies based on biochar catalysts will be helpful to the controlled products. Therefore, the design and advancement of the biochar catalyst based on mechanism research will be beneficial to increase biofuels and the conversion efficiency of chemicals into biomass. The advanced design of biochar catalysts and optimization of operational conditions based on the biomass properties are vital for the selective production of high-value chemicals and biofuels. This paper identifies the latest preparation for energy products and other high-value chemicals based on biochar catalysts progresses and offers insights into improving the yield of high selectivity for products as well as the high recyclability and low toxicity to the environment in future applications.

基于生物炭催化剂的生物燃料和高价值化学品的选择性制备
生物质废弃物的再利用是解决当今能源和环境危机的关键,其中,生物质基生物炭作为生物燃料和高价值化工产品的催化剂是最清洁、最经济的解决方案之一。本文综述了近年来基于不同生物质废弃物的生物炭催化剂在生物燃料和高选择性生产化学品方面的研究进展。主题主要包括生物炭催化剂的改性、能源产品的制备以及其他高价值产品的机理。合适的生物炭催化剂可以提高生物燃料和高价值化学品的产量。特别是生物炭催化剂的原料和反应条件影响着能源产品的效率,是近年来人们关注的焦点。基于生物炭催化剂的机理研究将有助于控制产物的生成。因此,基于机理研究的生物炭催化剂的设计和推进将有利于提高生物燃料和化学品转化为生物质的效率。基于生物质特性的生物炭催化剂的先进设计和操作条件的优化对于高价值化学品和生物燃料的选择性生产至关重要。本文综述了基于生物炭催化剂制备能源产品和其他高价值化学品的最新进展,并对未来应用中提高产品的高选择性产率、高可回收性和对环境的低毒性提供了见解。
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来源期刊
Frontiers in Energy
Frontiers in Energy Energy-Energy Engineering and Power Technology
CiteScore
5.90
自引率
6.90%
发文量
708
期刊介绍: Frontiers in Energy, an interdisciplinary and peer-reviewed international journal launched in January 2007, seeks to provide a rapid and unique platform for reporting the most advanced research on energy technology and strategic thinking in order to promote timely communication between researchers, scientists, engineers, and policy makers in the field of energy. Frontiers in Energy aims to be a leading peer-reviewed platform and an authoritative source of information for analyses, reviews and evaluations in energy engineering and research, with a strong focus on energy analysis, energy modelling and prediction, integrated energy systems, energy conversion and conservation, energy planning and energy on economic and policy issues. Frontiers in Energy publishes state-of-the-art review articles, original research papers and short communications by individual researchers or research groups. It is strictly peer-reviewed and accepts only original submissions in English. The scope of the journal is broad and covers all latest focus in current energy research. High-quality papers are solicited in, but are not limited to the following areas: -Fundamental energy science -Energy technology, including energy generation, conversion, storage, renewables, transport, urban design and building efficiency -Energy and the environment, including pollution control, energy efficiency and climate change -Energy economics, strategy and policy -Emerging energy issue
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