首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Reactive sorption of chlorinated VOCs on ZSM-5 zeolites at ambient and elevated temperatures
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Reactive sorption of chlorinated VOCs on ZSM-5 zeolites at ambient and elevated temperatures

机译:环境温度和高温下ZSM-5沸石对氯代VOC的反应性吸附

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摘要

Reactive sorption of two chlorinated volatile organic compounds (CVOCs) has been investigated on ZSM-5 zeolites using in situ FTIR.Zeolites exchanged with different cations (Cr-ZSM-5,Ag-ZSM-5,and H-ZSM-5) and with atomic Si/Al ratios of 15,25,and 40 were examined.Two dilute vapor phase CVOCs,trichloroethylene (TCE) and 1,3-dichloropropene (DCP) were added in N_2 at both 25 and 120 deg C to the zeolite samples in an FTIR transmission cell during separate experiments.For TCE,based on repetitive FTIR scans,a reaction mechanism that included formation of dichloroacetaldehyde and phosgene was proposed for the ambient data.Results show that chemisorbed oxygen,coordinated with the active catalytic sites,formed C=O bonds with TCE under the oxygen depletive cell conditions studied.A dehydrochiorination mechanism was proposed to explain the ambient DCP data.Relative ambient reactivity by cation type for both CVOCs was Cr > H > Ag.This ordering is consistent with the oxygen pick-up capacities of the exchanged cations.Total acidity values of the catalysts and their relative site strengths appear to be of secondary influence.No clear trends could be found relating reactivity to Si/Al ratio,presumably because the range of values studied was too narrow.For both feeds and all catalysts,coke formation was the main reaction at 120 deg C.
机译:使用原位FTIR研究了ZSM-5沸石对两种氯化挥发性有机化合物(CVOC)的反应性吸附。沸石与不同阳离子(Cr-ZSM-5,Ag-ZSM-5和H-ZSM-5)交换在25°C和120°C下,将两种稀气相CVOC,三氯乙烯(TCE)和1,3-二氯丙烯(DCP)分别添加到N_2中。对于TCE,基于重复的FTIR扫描,针对环境数据提出了包括二氯​​乙醛和光气形成的反应机理。结果表明,化学吸附的氧与活性催化位点配合形成了C在氧气耗竭的电池条件下,TCE = O与TCE的键。提出了脱氢氯化机理来解释环境DCP数据。两种CVOC的阳离子类型相对环境反应性为Cr> H> Ag。的能力催化剂的总酸度值及其相对位点强度似乎是次要的影响。没有发现与反应性有关的Si / Al比的明确趋势,大概是因为所研究的值范围太窄。在120℃下,所有的催化剂均以焦炭为主要反应。

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