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天然气和二氧化碳转化制合成气的研究──Ⅱ.催化剂失活与再生
引用本文:范业梅,徐恒泳,史克英,商永臣,徐国林,陈恒荣,熊国兴,周佩珩,郭伟松,黄仁才.天然气和二氧化碳转化制合成气的研究──Ⅱ.催化剂失活与再生[J].天然气化工,1995(2).
作者姓名:范业梅  徐恒泳  史克英  商永臣  徐国林  陈恒荣  熊国兴  周佩珩  郭伟松  黄仁才
作者单位:哈尔滨师范大学化学系,中国科学院大连化学物理研究所,上海石油化工总厂化工二厂研究所
基金项目:国家自然科学基金,国家催化基础研究重点实验室资助
摘    要:采用XRD,XPS技术,配合比表面、孔结构测定和催化微反技术,研究了天然气和CO2转化制合成气催化剂失活机制和再生条件。发现催化剂失活主要是由于活性中心Ni0聚集并形成晶相,因而降低了催化剂表面活性中心数,其次是由于部分活性中心形成难还原的NiA12O4物种和催化剂比表面降低。找到了一种催化剂再生的最佳条件,通过使用晶相分散剂B可以使催化剂恢复到新鲜催化剂的活性。

关 键 词:天然气二氧化碳转化,合成气,催化剂失活,催化剂再生

Studies of reforming natural gas with carbon dioxide to produce synthesis gas ──Ⅱ. Catalyst deactivation and reactivation
Fan Yemei, Xu Hengyong ,Shi KeyingShang Yongchen, Xu Guolin.Studies of reforming natural gas with carbon dioxide to produce synthesis gas ──Ⅱ. Catalyst deactivation and reactivation[J].Natural Gas Chemical Industry,1995(2).
Authors:Fan Yemei  Xu Hengyong  Shi KeyingShang Yongchen  Xu Guolin
Abstract:The deactivated mechanism and the reactivated conditions for the catalysts used in reforming natural gas with carbon dioxide to produce syngas have been studied by using XRD, TPR, XPS techniques, together with determinations of specific Surface area and pore structure, and the micro catalytic reactor. It was found that the main reason of catalytic deactivation is the formation of NiOcrystal thus reducing the number of activity site on the catalyst Surfaces, and the secondary reason is the decrease of surface area and the formation of NiA12O4. on a part of active sites. The optimum conditions for catalyst reactivation were found. The activity can be renewed to the fresh one by the treatment with crystal disperser B.
Keywords:reforming natural gas with carbon dioxide  synthesis gas 9 catalyst deactivation  catalyst reactivation
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