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松软煤层水力压裂钻孔失稳分析及固化成孔方法 被引量:59
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作者 翟成 李全贵 +2 位作者 孙臣 倪冠华 杨威 《煤炭学报》 EI CAS CSCD 北大核心 2012年第9期1431-1436,共6页
分析了煤矿井下松软突出煤层钻孔失稳变形机理,指出巷道围岩应力和钻孔二次应力是煤层施工压裂钻孔后孔壁弱结构易产生破坏失稳、易塌孔和成孔难的主要根源。提出了一种有效的区域固化成孔方法,模拟分析了松软煤层和采用高强度材料固化... 分析了煤矿井下松软突出煤层钻孔失稳变形机理,指出巷道围岩应力和钻孔二次应力是煤层施工压裂钻孔后孔壁弱结构易产生破坏失稳、易塌孔和成孔难的主要根源。提出了一种有效的区域固化成孔方法,模拟分析了松软煤层和采用高强度材料固化后钻孔周围应力场和位移变化。结果表明:松软煤层中钻孔位移变形量和塑性区范围大,钻孔易发生失稳破坏;对封孔段采取固化成孔措施后,浆液渗透填充到煤岩体的裂隙中,起到加固、充填密实裂隙作用,增强孔壁围岩的强度,钻孔变形量和塑性区范围减小,有效防止了钻孔发生失稳破坏,提高了成孔率。 展开更多
关键词 瓦斯抽采 水力压裂 失稳 固化成孔 松软煤层
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Mechanochemical redox-based synthesis of highly porous CoxMn1-xOy catalysts for total oxidation 被引量:2
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作者 Jiafeng Bao Hao Chen +1 位作者 Shize Yang Pengfei Zhang 《Chinese Journal of Catalysis》 SCIE EI CAS CSCD 北大核心 2020年第12期1846-1854,共9页
A mechanochemical redox reaction between KMnO4 and CoCl2 was developed to obtain a CoxMn1-xOy catalyst with a specific surface area of 479 m^2 g^-1,which was higher than that obtained using a co-precipitation(CP)metho... A mechanochemical redox reaction between KMnO4 and CoCl2 was developed to obtain a CoxMn1-xOy catalyst with a specific surface area of 479 m^2 g^-1,which was higher than that obtained using a co-precipitation(CP)method(34 m2 g^-1),sol-gel(SG)method(72 m^2 g^-1),or solution redox process(131 m^2 g^-1).During catalytic combustion,this CoxMn1-xOy catalyst exhibited better activity(T100 for propylene=~200℃)than the control catalysts obtained using the SG(325℃)or CP(450℃)methods.The mechanical action,mainly in the form of kinetic energy and frictional heating,may generate a high degree of interstitial porosity,while the redox reaction could contribute to good dispersion of cobalt and manganese species.Moreover,the as-prepared CoxMn1-xOy catalyst worked well in the presence of water vapor(H2O 4.2%,>60 h)or SO2(100 ppm)and at high temperature(400℃,>60 h).The structure MnO2·(CoOOH)2.93 was suggested for the current CoxMn1-xOy catalyst.This catalyst could be extended to the total oxidation of other typical hydrocarbons(T90=150°C for ethanol,T90=225°C for acetone,T90=250℃for toluene,T90=120℃for CO,and T90=540℃for CH4).Scale-up of the synthesis of CoxMn1-xOy catalyst(1 kg)can be achieved via ball milling,which may provide a potential strategy for real world catalysis. 展开更多
关键词 Mechanochemical synthesis Solid-state synthesis Porous metal oxide CoxMn1-xOy catalyst Hydrocarbon combustion
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