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首页> 外文期刊>Environmental Progress & Sustainable Energy >Sulfonated Char From Waste Tire Rubber Used as Strong Acid Catalyst for Biodiesel Production
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Sulfonated Char From Waste Tire Rubber Used as Strong Acid Catalyst for Biodiesel Production

机译:从废轮胎橡胶用作磺化Char强酸催化剂生产生物柴油

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A new acid catalyst based in a carbonaceous solid was functionalized using sulfuric acid as source of -SO3H acid groups. This carbon-based material prepared by the pyrolysis of waste tire rubber was used either as catalyst or as catalytic support. The pyrolysis process was performed with a flow of N-2 at relatively low temperature to obtain a mesoporous carbon and achieve an effective sulfonation. The sulfonation method of carbon obtained from tire rubber was through direct immersion into concentrated H2SO4 under reflux. The mesoporous solids were characterized by several analytic techniques including an elemental analysis derived from scanning electronic microscopy (SEM). These ones indicated the presence of polycyclic disordered carbon plates in the carbonaceous structure with a low surface area and wide pores that provided many surface acid sites. The high catalytic activity and stability of this catalyst is related to the acid site density of Bronsted acid sites and to its homogeneous distribution. The hydrophobicity presented by this material favorably prevented hydration of hydrophilic -OH and -SO3H functional groups. The transesterification and esterification of waste oil under sub-critical methanol mainly in the presence of sulfonated char were achieved. Hence, it was required shorter times, low temperature and significantly, a low amount of methanol compared to other studies. (C) 2016 American Institute of Chemical Engineers Environ Prog, 36: 619-626, 2017
机译:一个新的基于碳质固体酸催化剂功能化利用硫酸作为源吗-SO3H酸组。准备的热解废轮胎橡胶是作为催化剂或用作催化支持。流的n -温度相对较低获得一个介孔碳和实现有效的磺化。从轮胎橡胶是通过获得的碳直接浸在浓硫酸反胃。包括一个由几个分析技术元素分析来自扫描电子显微镜(SEM)。多环的存在无序碳板块与低碳质结构表面积和大毛孔,提供了许多表面酸性网站。有关与稳定的催化剂酸网站和布仑斯惕酸密度它的均匀分布。这种材料提出的积极预防水化的亲水-哦和-SO3H功能组。废油在亚临界的酯化甲醇主要在磺化的存在char。短时间、低温度和值得注意的是,低量的甲醇比其他研究。工程师环境掠夺,36岁:619 - 626年,2017年

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