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Progress and recent trends in biofuels

机译:生物燃料的进展和最新趋势

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In this paper, the modern biomass-based transportation fuels such as fuels from Fischer-Tropsch synthesis, bioethanol, fatty acid (m)ethylester, biomethanol, and biohydrogen are briefly reviewed. Here, the term biofuel is referred to as liquid or gaseous fuels for the transport sector that are predominantly produced from biomass. There are several reasons for biofuels to be considered as relevant technologies by both developing and industrialized countries. They include energy security reasons, environmental concerns, foreign exchange savings, and socioeconomic issues related to the rural sector. The term modern biomass is generally used to describe the traditional biomass use through the efficient and clean combustion technologies and sustained supply of biomass resources, environmentally sound and competitive fuels, heat and electricity using modern conversion technologies. Modern biomass can be used for the generation of electricity and heat. Bioethanol and biodiesel as well as diesel produced from biomass by Fischer-Tropsch synthesis are the most modern biomass-based transportation fuels. Bio-ethanol is a petrol additive/substitute. It is possible that wood, straw and even household wastes may be economically converted to bio-ethanol. Bio-ethanol is derived from alcoholic fermentation of sucrose or simple sugars, which are produced from biomass by hydrolysis process. Currently crops generating starch, sugar or oil are the basis for transport fuel production. There has been renewed interest in the use of vegetable oils for making biodiesel due to its less polluting and renewable nature as against the conventional petroleum diesel fuel. Biodiesel is a renewable replacement to petroleum-based diesel. Biomass energy conversion facilities are important for obtaining bio-oil. Pyrolysis is the most important process among the thermal conversion processes of biomass. Brief summaries of the basic concepts involved in the thermochemical conversions of biomass fuels are presented. The percentage share of biomass was 62.1% of the total renewable energy sources in 1995. The reduction of greenhouse gases pollution is the main advantage of utilizing biomass energy.
机译:在本文中,简要回顾了基于生物质的现代运输燃料,例如费托合成燃料,生物乙醇,脂肪酸(甲基)乙酯,生物甲醇和生物氢。在此,术语生物燃料是指主要由生物质生产的用于运输部门的液体或气体燃料。发展中国家和工业化国家都将生物燃料视为相关技术的原因有很多。其中包括能源安全原因,环境问题,外汇储蓄以及与农村部门有关的社会经济问题。现代生物质一词通常用于描述通过高效,清洁的燃烧技术以及使用现代转化技术持续提供生物质资源,对环境无害和有竞争力的燃料,热和电的传统生物质使用。现代生物质可用于发电和供热。费托合成法生产的生物乙醇和生物柴油以及由生物质生产的柴油是最现代的基于生物质的运输燃料。生物乙醇是一种汽油添加剂/替代品。木材,稻草甚至家庭废物有可能在经济上转化为生物乙醇。生物乙醇衍生自蔗糖或单糖的酒精发酵,而蔗糖或单糖是通过水解过程从生物质中产生的。当前,产生淀粉,糖或油的农作物是运输燃料生产的基础。由于与传统的石油柴油燃料相比,植物油具有较少的污染和可再生性质,因此人们开始重新关注使用植物油来制造生物柴油。生物柴油是石油基柴油的可再生替代品。生物质能转换设施对于获取生物油很重要。热解是生物质热转化过程中最重要的过程。简要概述了涉及生物质燃料热化学转化的基本概念。 1995年,生物质的百分比占可再生能源总量的62.1%。减少温室气体污染是利用生物质能源的主要优势。

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