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Vapor-Phase Chlorination of Chlorobenzene over Solid-Acid Catalysts

机译:固体酸催化剂上氯苯的气相氯化

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Catalytic chlorination of chlorobenzene was studied in vapor phase using various solid-acid catalysts such as silica-alumina, alumina, zeolite and a modified clay prepared by impregnating bentonite with ferric chloride. The conversions of both chlorine gas and chlorobenzene showed high over silica-alumina, alumina and modified clay catalysts. However relatively large amounts of polychlorinated benzene derivatives were also observed. The active species of catalytic activity in chlorination of chlorobenzene in vapor phase were proved to be as Lewis acid sites by in-situ IR experiments. The strength of Lewis acid sites which were effective for the vapor-phase chlorination seemed to be having Hammett acidity Ho >-3.0. The selectivity to dichlorobenzenes was proved to be high over the zeolite catalyst due to their shape-selective properties. p-Dichlorobenzene or dichlorobenzene selectivities were improved more or less by changing the reaction conditions.
机译:使用各种固体酸催化剂,例如二氧化硅-氧化铝,氧化铝,沸石和通过将膨润土用氯化铁浸渍制备的改性粘土,在气相中研究了氯苯的催化氯化作用。氯气和氯苯的转化率均高于二氧化硅-氧化铝,氧化铝和改性粘土催化剂。然而,还观察到相对大量的多氯苯衍生物。通过原位红外实验证明,气相氯化氯苯中催化活性的活性物种为路易斯酸位。对气相氯化有效的路易斯酸位点的强度似乎具有哈米特酸度Ho> -3.0。事实证明,由于其形状选择性能,对二氯苯的选择性比沸石催化剂高。通过改变反应条件或多或少地提高了对二氯苯或二氯苯的选择性。

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