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纤维素热解生物油特性研究 被引量:7
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作者 辛善志 杨海平 +2 位作者 王贤华 杨明法 陈汉平 《太阳能学报》 EI CAS CSCD 北大核心 2014年第11期2191-2197,共7页
为深入了解生物质热解生物油的特性,对生物质的主要成分纤维素热解生物油的析出和演变特性进行研究。在固定床上研究纤维素在不同温度(280-550℃)下的快速与慢速热解以及不同气相停留时间对纤维素生物油特性与组成的影响。研究表明... 为深入了解生物质热解生物油的特性,对生物质的主要成分纤维素热解生物油的析出和演变特性进行研究。在固定床上研究纤维素在不同温度(280-550℃)下的快速与慢速热解以及不同气相停留时间对纤维素生物油特性与组成的影响。研究表明,纤维素快速热解生物油由左旋葡聚糖及大量脱水糖组成,还有少量呋喃衍生物(如糠醛、5-羟甲基糠醛等)。慢速热解时产生的脱水糖种类较少,但小分子化合物种类更多。随着气相停留时间的缩短,液体产物中左旋葡聚糖含量逐渐升高,酸、醛等小分子消失。 展开更多
关键词 生物油 纤维素热解 温度 气相停留时间
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不同酸处理条件下生物质热解产物特性分析 被引量:5
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作者 李攀 杨海平 +3 位作者 王贤华 李允超 邓勇 陈汉平 《太阳能学报》 EI CAS CSCD 北大核心 2015年第9期2065-2070,共6页
采用固定床热解反应器系统与气相色谱和质谱分析仪以及等温吸附仪等,研究不同酸处理条件对农业废弃物棉秆热解的产物特性的影响。结果表明:用H3PO4处理时,液体产物产率在H3PO4(8%)时较大,用H2SO4处理时,液体产物产率在H2SO4(4%)时较大,... 采用固定床热解反应器系统与气相色谱和质谱分析仪以及等温吸附仪等,研究不同酸处理条件对农业废弃物棉秆热解的产物特性的影响。结果表明:用H3PO4处理时,液体产物产率在H3PO4(8%)时较大,用H2SO4处理时,液体产物产率在H2SO4(4%)时较大,而后随H2SO4添加量的增大有所减小,而固体产物产率逐渐增大;在酸处理条件下,气体产率均明显降低,酸处理对简化生物油组分以及提高生物油品质效果显著;与原生物质热解油相比,酸处理后产物中酚类物质含量明显降低,乙酸和糠醛的相对含量由23.70%和2.49%最高至43.29%和36.02%,而且热解固体焦的表面孔隙结构也得到明显改善。 展开更多
关键词 棉秆 热解 酸处理 产物特性
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Theoretical Studies on the Reaction Kinetics of Methyl 2-Furoate with Hydroxyl Radical 被引量:1
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作者 Wei He Jing Lu +2 位作者 Li-dong Zhang Jing Liu Li-xia Wei 《Chinese Journal of Chemical Physics》 SCIE EI CAS CSCD 2022年第4期664-672,I0150,共10页
Methyl 2-furoate(FAME2)is a model for the potential renewable biofuel of dimethyl furan-2,5-dicarboxylate,with the development of its new synthesis method.The potential energy surfaces of H-abstractions and OHaddition... Methyl 2-furoate(FAME2)is a model for the potential renewable biofuel of dimethyl furan-2,5-dicarboxylate,with the development of its new synthesis method.The potential energy surfaces of H-abstractions and OHadditions between FAME2 and hydroxyl radical(OH)were studied using CCSD(T)/CBS//M062X/ccpVTZ.The subsequent isomerization and decomposition reactions were also determined for the primary radicals produced.The results showed that H-abstraction on the branched methyl group was the dominant channel and that the OH-addition reactions on the furan ring had a significant pressure dependency.The rate coefficients presented here provide important kinetic data to support future improvement of the combustion mechanism of FAME2,and present a sound basis for further research into practical fuels. 展开更多
关键词 Furoate Theoretical calculation HYDROXYL ADDITION ABSTRACTION
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Catalytic Pyrolysis of Biodiesel Surrogate over HZSM-5 Zeolite Catalyst
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作者 Si-yu Qian Bei-bei Feng +6 位作者 Yi-tong Zhai Wei Zhao Lei Wang Cheng-cheng Ao Yi Liu Jing Liu Li-dong Zhang 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2021年第1期102-111,I0012,共11页
To obtain insight into the catalytic reaction mechanism of biodiesels over ZSM-5 zeolites,the pyrolysis and catalytic pyrolysis of methyl butanoate,a biodiesel surrogate,with H-type ZSM-5(HZSM-5)were performed in a fl... To obtain insight into the catalytic reaction mechanism of biodiesels over ZSM-5 zeolites,the pyrolysis and catalytic pyrolysis of methyl butanoate,a biodiesel surrogate,with H-type ZSM-5(HZSM-5)were performed in a flow rereac tor under atmospheric pressure.The pyrolysis products were identified and quantified using gas chroma to graphy-mass spec trome try(GC-MS).Kine tic modelling and experimental results revealed that H-atom abstraction in the gas phase was the primary pathway for methyl butanoate decomposition during pyrolysis,but dissociating to ketene and methanol over HZSM-5 was the primary pathway for methyl butanoate consumption during catalytic pyrolysis.The initial decomposition temperature of methyl butanoate was reduced by approximately 300 K over HZSM-5 compared to that for the uncatalyzed reaction.In addition,the apparent activation energies of methyl butanoate under catalytic pyrolysis and homogeneous pyrolysis conditions were obtained using the Arrhenius equation.The significantly reduced apparent activation energy confirmed the catalytic performance of HZSM-5 for methyl but anoa te pyrolysis.The act iva tion t empera ture may also affec t some catalytic proper ties of HZSM-5.Overall,this study can be used to guide subsequent catalytic combustion for practical biodiesel fuels. 展开更多
关键词 Methyl butanoate HZSM-5 Catalytic pyrolysis Reaction kinetics BIODIESELS
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