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Isoparaffin-rich gasoline synthesis from DME over Ni-modified HZSM-5

机译:Isoparaffin-rich汽油合成从测距装置Ni-modified HZSM-5

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摘要

Ni-modified HZSM-5 was prepared using a wet impregnation technique and tested for isoparaffin-rich gasoline synthesis from DME (DTG). The results verified that nickel modification of HZSM-5 can evidently promote the formation of isoparaffins; the isoparaffin content of the gasoline-range hydrocarbons can increase from 42.7% to 66.3% on complete conversion of the DME. Some physical and chemical characterization methods were used, like TPR-H-2, XRD, TPD-NH3 and N-2 adsorption/desorption isotherm tests, and the results confirmed that the active state of the surface Ni species on HZSM-5 has great influence on the product hydrocarbon distribution from the DTG reaction. NiOx (0 < x < 1) mainly contributes to hydroisomerization of the olefins, while metal Ni-0 particles promote a cracking reaction of the paraffins. The nickel modification could significantly decrease the acidic site strength but increase the acidic site numbers of HZSM-5, which in turn influences the catalytic performance of HZSM-5 for conversion of DME to hydrocarbons.
机译:使用湿Ni-modified HZSM-5准备浸渍技术和检测isoparaffin-rich汽油合成测距装置(壳体)。修改HZSM-5可以明显促进形成异链烷烃;gasoline-range碳氢化合物的内容完成从42.7%增加到66.3%测距装置的转换。TPR-H-2等表征方法被使用XRD、TPD-NH3和n -吸附/解吸等温线测试,结果证实表面镍物种的活动状态对产品HZSM-5有很大影响从壳体反应油气分布。NiOx (0 < x < 1)主要贡献hydroisomerization的烯烃,而金属Ni-0粒子促进裂化反应石蜡。显著减少酸性网站的力量但增加HZSM-5的酸性网站数量,进而影响催化的性能HZSM-5测距装置的转换碳氢化合物。

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