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Catalytic processes towards the production of biofuels in a palm oil and oil palm biomass-based biorefinery

机译:在棕榈油和基于油棕生物质的生物精炼厂中生产生物燃料的催化过程

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In Malaysia, there has been interest in the utilization of palm oil and oil palm biomass for the production of environmental friendly biofuels. A biorefinery based on palm oil and oil palm biomass for the production of biofuels has been proposed. The catalytic technology plays major role in the different processing stages in a biorefinery for the production of liquid as well as gaseous biofuels. There are number of challenges to find suitable catalytic technology to be used in a typical biorefinery. These challenges include (1) economic barriers, (2) catalysts that facilitate highly selective conversion of substrate to desired products and (3) the issues related to design, operation and control of catalytic reactor. Therefore, the catalytic technology is one of the critical factors that control the successful operation of biorefinery. There are number of catalytic processes in a biorefinery which convert the renewable feedstocks into the desired biofuels. These include biodiesel production from palm oil, catalytic cracking of palm oil for the production of biofuels, the production of hydrogen as well as syngas from biomass gasification, Fischer-Tropsch synthesis (FTS) for the conversion of syngas into liquid fuels and upgrading of liquid/gas fuels obtained from liquefaction/pyrolysis of biomass. The selection of catalysts for these processes is essential in determining the product distribution (olefins, paraffins and oxygenated products). The integration of catalytic technology with compatible separation processes is a key challenge for biorefinery operation from the economic point of view. This paper focuses on different types of catalysts and their role in the catalytic processes for the production of biofuels in a typical palm oil and oil palm biomass-based biorefinery. (C) 2008 Elsevier Ltd. All rights reserved.
机译:在马来西亚,人们对利用棕榈油和油棕生物质来生产环保型生物燃料产生了兴趣。已经提出了一种基于棕榈油和油棕生物质的生物精炼厂,用于生产生物燃料。催化技术在生物精炼厂生产液体和气体生物燃料的不同处理阶段起着重要作用。寻找合适的催化技术用于典型的生物精炼厂存在许多挑战。这些挑战包括:(1)经济壁垒;(2)促进底物高度选择性转化为所需产品的催化剂;(3)与催化反应器的设计,操作和控制有关的问题。因此,催化技术是控制生物精炼厂成功运行的关键因素之一。生物精炼厂中有许多催化过程,可将可再生原料转化为所需的生物燃料。这些包括棕榈油生产生物柴油,催化裂化棕榈油以生产生物燃料,氢气和生物质气化生产合成气,费托合成(FTS),以将合成气转化为液体燃料和提纯液体从生物质的液化/热解获得的/燃料。在确定产物分布(烯烃,石蜡和氧化产物)时,选择这些过程的催化剂至关重要。从经济的角度来看,将催化技术与兼容的分离方法相结合是生物精炼操作的关键挑战。本文着眼于不同类型的催化剂及其在典型的棕榈油和基于油棕生物质的生物炼油厂生产生物燃料的催化过程中的作用。 (C)2008 Elsevier Ltd.保留所有权利。

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