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生物质与油浆共热解产物分布及相互作用
引用本文:黄伟,郝泽光,张乾,高增林,张宏文,彭泽宇,杨凯,梁丽彤. 生物质与油浆共热解产物分布及相互作用[J]. 煤炭学报, 2022, 47(1): 480-488
作者姓名:黄伟  郝泽光  张乾  高增林  张宏文  彭泽宇  杨凯  梁丽彤
作者单位:太原理工大学省部共建煤基能源清洁高效利用国家重点实验室,山西太原030024
基金项目:国家自然科学基金面上资助项目(21975173,21776195);山西省面上青年基金资助项目(201901D211049)。
摘    要:生物质作为一种全生命周期碳近零排放的可再生资源,从生物质中提取轻质燃料和化学品是实现碳达峰和碳中和的终极方向.将化石能源与生物质共转化是符合我国的基本国情、寻求化石能源和新能源优化组合的可行之路.以玉米秆(CS)与催化裂化油浆(FCC)为原料,研究了2者共热解过程中的相互作用及生物质内在矿物质对产物分布和产物特性的影响...

关 键 词:生物质  FCC油浆  共热解  相互作用

Product distribution and interaction of co-pyrolysis of biomass and oil slurry
HUANG Wei,HAO Zeguang,ZHANG Qian,GAO Zenglin,ZHANG Hongwen,PENG Zeyu,YANG Kai,LIANG Litong. Product distribution and interaction of co-pyrolysis of biomass and oil slurry[J]. Journal of China Coal Society, 2022, 47(1): 480-488
Authors:HUANG Wei  HAO Zeguang  ZHANG Qian  GAO Zenglin  ZHANG Hongwen  PENG Zeyu  YANG Kai  LIANG Litong
Affiliation:(State Key Laboratory of Clean and Efficient Coal Utilization,Taiyuan University of Technology,Taiyuan 030024,China)
Abstract:Biomass is a renewable resource with nearly zero carbon emissions in the whole life cycle.The extraction of light fuels and chemicals from biomass is the ultimate direction to achieve carbon peak and carbon neutrality.Co-conversion of fossil energy and biomass is a feasible way to seek optimal combination of fossil energy and new energy in accordance with basic national conditions.In this paper,the interaction between corn stalk(CS)and fluid catalytic cracking slurry(FCC)during co-pyrolysis and the effect of biomass intrinsic minerals on product distribution and product characteristics were studied.The results show that there was obvious interaction between CS and FCC slurry in different proportions during the co-pyrolysis process,the polymerization reaction played a dominant role in the process,and the yield of semi-coke increased.The interaction during co-pyrolysis enhanced the removal of oxygen-containing compounds,promoted the generation of hydrocarbons,and finally improved the quality of the tar products.Among them,the content of phenolic substances decreased significantly,the polycyclic aromatic hydrocarbons of 3-4 rings in aromatic hydrocarbon increased,and the hydrocarbon with more than 13 carbon atoms in aliphatic hydrocarbons also increased.For the co-pyrolysis of 30%FCC with 70%CS,the phenolic compounds in the co-pyrolysis oil decreased by about 7%compared with the calculated values,and the contents of aromatic hydrocarbons and aliphatic hydrocarbons increased by about 2%and 9%,respectively.Compared with demineralized CS,the co-pyrolysis of un-demineralized CS and FCC promoted the formation of tar,and inhibited the generation of semi-coke and gas.The presence of minerals could enhanced the interaction between CS and FCC,which not only promoted the cracking of oil slurry,strengthened the deoxidation reaction of biomass and produced more hydrocarbons,but also relieved the polymerization of free radicals and improved the condensation degree of polycyclic compounds in the co-pyrolysis system.The content of pyrene in tar was reduced and the amount of aliphatic hydrocarbon increased.Thermogravimetric experiment evaluation showed that the gasification reactivity of the char produced from co-pyrolysis was obviously improved,which was beneficial to the subsequent utilization.
Keywords:biomass  FCC  co-pyrolysis  interactioneffect
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