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首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >The catalytic hydrodechlorination of mono-, di- and trichlorobenzenes over supported nickel
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The catalytic hydrodechlorination of mono-, di- and trichlorobenzenes over supported nickel

机译:负载镍上单,二和三氯苯的催化加氢脱氯

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The gas phase hydrodechlorination (HDC) of chlorobenzene (CB), chlorotoluene(s) (CT), 3-chlorophenol (3-CP), dichlorobenzene(s) (DCB) and trichlorobenzene(s) (TCB) over the temperature range 473 K <= T <= 573 K has been studied using 1.5% and 6.1 % (w/w) Ni/SiO_2 catalysts; the catalytic data have been obtained in the absence of any appreciable short-term deactivation. HDC of DCB and TCB generated the partially or the fully dechlorinated aromatic product + HC1 and there was no significant cyclohexene or cyclohexane in the effluent stream. The conversion of mono-chloroarenes yielded the following reactivity sequence CB < 2-CT < 3-CT < 4-CT < 3-CP, i.e. the presence of an electron donating ring substituent enhances HDC and steric hindrance lowers reactivity. HDC kinetics have been adequately represented by a pseudo-first order approximation. Chlorine removal from DCB and TCB isomers proceeded through sequential and concerted routes, the relative importance of each dependent on the nature of the isomer and reaction conditions; apparent HDC activation energy increases in the order CB < DCB < TCB. The relationship between dechlorination selectivity and residence time/fractional conversion is addressed. The higher Ni loaded catalyst delivered consistently higher (specific) dechlorination rates and higher benzene yields from a polychlorinated feedstock. Catalytic HDC over Ni/SiO_2 is presented as a viable means of treating/detoxifying concentrated chlorinated gas streams and the best strategy for generating the parent benzene or a target partially dechlorinated product is discussed.
机译:在473°C的温度范围内对氯苯(CB),氯甲苯(CT),3-氯苯酚(3-CP),二氯苯(DCB)和三氯苯(TCB)进行气相加氢脱氯(HDC) K <= T <= 573 K已使用1.5%和6.1%(w / w)的Ni / SiO_2催化剂进行了研究;在没有任何明显的短期失活的情况下获得了催化数据。 DCB和TCB的HDC生成了部分或完全脱氯的芳族产物+ HCl,且流出物流中没有明显的环己烯或环己烷。一氯芳烃的转化产生以下反应性序列CB <2-CT <3-CT <4-CT <3-CP,即,给电子环取代基的存在增强了HDC,而位阻降低了反应性。 HDC动力学已充分地由拟一阶近似表示。从DCB和TCB异构体中脱除氯的过程是按顺序和协同进行的,每种途径的相对重要性取决于异构体的性质和反应条件。表观HDC活化能按CB

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