首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >CHARACTERIZATION OF SUGAR CANE WASTE BIOMASS DERIVED CHARS FROM PRESSURIZED GASIFICATION
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CHARACTERIZATION OF SUGAR CANE WASTE BIOMASS DERIVED CHARS FROM PRESSURIZED GASIFICATION

机译:加压气化法表征甘蔗废物生物质焦

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There is interest in the use of sugar cane waste biomass for electricity cogeneration,by integrated gasification combined cycle (IGCC) processes.This paper describes one aspect of an overall investigation into the reactivity of cane wastes under pressurized IGGC conditions,for input into process design.There is currently a gap in understanding the morphological transformations experienced by cane waste biomass undergoing conversion to char during pressurized gasification,which is addressed by this work.Char residuals remaining after pressurized pyrolysis and carbon dioxide gasification were analysed by optical microscope,nitrogen (BET) adsorption analysis,SEM/EDS,TEM/EDS and XPS techniques.The amorphous cane plant silica structures were found to remain physically intact during entrained flow gasification,but chemically altered in the presence of other inorganic species.The resulting crystalline silicates were mesoporous (with surface areas of the order of 20m~2 g~(-1)) and contributed to much of the otherwise limited pore volume present in the residual chars.Coke deposition and intimate blending of the carbonaceous and inorganic species was identified.Progressive sintering of the silicates appeared to trap coke deposits in the pore network.As a result ash residuals showed significant organic contents,even after extensive additional oxidation in air.The implications of the findings are that full conversion of cane trash materials under pressurized IGCC conditions may be significantly hampered by the silica structures inherent in these biomass materials and that further research of the contributing phenomena is recommended.
机译:人们对通过集成气化联合循环(IGCC)工艺将甘蔗废料生物质用于热电联产感兴趣。本文描述了在加压IGGC条件下对甘蔗废料的反应性进行整体研究的一个方面,用于工艺设计目前,在了解甘蔗废物生物质在加压气化过程中转化为焦炭时所经历的形态转变方面存在差距,这项工作解决了这一问题。通过光学显微镜,氮气(BET)分析了加压热解和二氧化碳气化后残留的焦炭残留物。 )吸附分析,SEM / EDS,TEM / EDS和XPS技术。发现无定形甘蔗植物二氧化硅结构在气流床气化过程中保持物理完整性,但在其他无机物种的存在下发生化学变化。生成的结晶硅酸盐是介孔的(表面积约20m〜2 g〜(-1))残留炭中存在的大量孔隙体积受到限制;已发现焦炭沉积以及碳质和无机物种的紧密共混;硅酸盐的逐步烧结似乎将焦炭沉积物捕获在孔网络中,因此灰渣残留量显着这些发现的含义是,这些生物质材料固有的二氧化硅结构可能会严重阻碍甘蔗垃圾材料在加压IGCC条件下的完全转化,并且对这种现象的进一步研究是推荐的。

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