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云母、闪石类矿物脱羟过程中Fe^(2+)的氧化和氢同位素分馏性质的探讨
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作者 郑斯成 徐晓梅 郑淑蕙 《地球化学》 CAS 1988年第2期143-149,共7页
本文对7个含羟矿物样品的穆斯鲍尔谱、化学组成和δD值进行测定。矿物加热脱羟时产生的氢气和Fe^(2+)的含量间不存在当量关系,产生氢气和水之间的10~3lnα分馏值在250—300之间。同位素的分馏机制可能是矿物脱羟时,一部分OH被相邻的Fe^(... 本文对7个含羟矿物样品的穆斯鲍尔谱、化学组成和δD值进行测定。矿物加热脱羟时产生的氢气和Fe^(2+)的含量间不存在当量关系,产生氢气和水之间的10~3lnα分馏值在250—300之间。同位素的分馏机制可能是矿物脱羟时,一部分OH被相邻的Fe^(2+)还原生成H,当H(原子或分子)从晶格中向外扩散时与剩下的OH发生同位素交换作用。 展开更多
关键词 云母 闪石 矿物脱羟 氢同位素 铁离子 氧化 分馏性质
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Properties of Bio-oil from Fast Pyrolysis of Rice Husk 被引量:14
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作者 郭秀娟 王树荣 +2 位作者 王琦 郭祚刚 骆仲泱 《Chinese Journal of Chemical Engineering》 SCIE EI CAS CSCD 2011年第1期116-121,共6页
Physicochemical properties of bio-oil obtained from fast pyrolysis of rice husk were studied in the present work.Molecular distillation was used to separate the crude bio-oil into three fractions viz.light fraction,mi... Physicochemical properties of bio-oil obtained from fast pyrolysis of rice husk were studied in the present work.Molecular distillation was used to separate the crude bio-oil into three fractions viz.light fraction,middle fraction and heavy fraction.Their chemical composition was analyzed by gas chromatograph and mass spectrometer(GC-MS).The thermal behavior,including evaporation and decomposition,was investigated using thermogravimetric analyzer coupled with Fourier transform infrared spectrometer(TG-FTIR).The product distribution was significantly affected by contents of cellulose,hemicellulose and lignin.The bio-oil yield was 46.36%(by mass) and the yield of gaseous products was 27%(by mass).The chemicals in the bio-oil included acids,aldehydes,ketones,alcohols,phenols,sugars,etc.The light fraction was mainly composed of acids and compounds with lower boiling point temperature,the middle and heavy fractions were consisted of phenols and levoglucosan.The thermal stability of the bio-oil was determined by the interactions and intersolubility of compounds.It was found that the thermal stability of bio-oil was better than the light fraction,but worse than the middle and heavy fractions. 展开更多
关键词 biochemical engineering BIO-OIL fast pyrolysis DECOMPOSITION DISTILLATION
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