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溶剂调控Pd/C催化多氯联苯高效加氢脱氯
引用本文:刘苏静,于嘉文,周晓晨,李晓涵,李天成,刘莺,夏传海,崔青春,马宣宣.溶剂调控Pd/C催化多氯联苯高效加氢脱氯[J].中国环境科学,2019,39(12):5154-5161.
作者姓名:刘苏静  于嘉文  周晓晨  李晓涵  李天成  刘莺  夏传海  崔青春  马宣宣
作者单位:1. 鲁东大学滨海生态高等研究院, 山东 烟台 264025; 2. 鲁东大学资源与环境工程学院, 山东 烟台 264025
基金项目:山东省自然基金博士项目(ZR2017BD029);山东省高等学校科技计划项目(J18KA096);环境化学与生态毒理学国家重点实验室开放基金(KF2017-12)
摘    要:采用沉积沉淀法制备了5% Pd/C催化剂,研究了溶剂体系对其催化4-氯联苯(4-CBP)加氢脱氯的影响,建立了正丁醇-水两相溶剂体系,实现了高浓度电容器油(主要为多氯联苯(PCBs))的高效加氢脱氯降解.结果表明,相对比非质子溶剂,醇类等质子溶剂对加氢脱氯反应更加有利.水的加入对异丙醇-水均相溶剂和有机-水两相溶剂中Pd/C催化4-CBP加氢脱氯均有明显的促进作用,而且在正丁醇-水(1:3,V/V)两相溶剂体系中可以在90min内实现4-CBP加氢脱氯的完全转化,而且催化剂可以重复使用8次以上.在该溶剂体系中,10g/L的含PCBs电容器油在Pd/C催化下可以在360min内完全加氢脱氯生成联苯.

关 键 词:多氯联苯  加氢脱氯  Pd/C  多相催化  调控  
收稿时间:2019-05-13

Solvent regulated efficient hydrodechlorination of polychlorinated biphenyls over Pd/C catalyst
LIU Su-jing,YU Jia-wen,ZHOU Xiao-chen,LI Xiao-han,LI Tian-cheng,LIU Ying,XIA Chuan-hai,CUI Qing-chun,MA Xuan-xuan.Solvent regulated efficient hydrodechlorination of polychlorinated biphenyls over Pd/C catalyst[J].China Environmental Science,2019,39(12):5154-5161.
Authors:LIU Su-jing  YU Jia-wen  ZHOU Xiao-chen  LI Xiao-han  LI Tian-cheng  LIU Ying  XIA Chuan-hai  CUI Qing-chun  MA Xuan-xuan
Institution:1. The Institute of Advanced Study of Coastal Ecology, Ludong University, Yantai 264025, China; 2. School of Resources and Environmental Engineering, Ludong University, Yantai 264025, China
Abstract:The Pd/C catalyst was synthesized by deposition-precipitation method. The effect of solvent on catalytic hydrodechlorination was studied for the disposal of 4-chlorobiphenyl over Pd/C catalyst, and biphasic n-butanol-water solvent was established for efficient hydrodechlorination of high concentration capacitor oils (mainly polychlorinated biphenyls). It was found that protic solvents more favoured liquid-phase hydrodechlorination. Moreover, the addition of water promoted Pd/C catalyzed hydrodechlorination of 4-chlorobiphenyl in isopropanol-water solvent and biphasic organic-water solvent. The results showed that complete conversion of 4-CBP could be achieved in biphasic n-butanol-water (1:3, V/V) solvent within 90min, and the catalyst could be recovered and reused at least 8 times. In the biphasic n-butanol-water (1:3, V/V) solvent, capacitor oil containing polychlorinated biphenyls (10g/L) could be completely hydrodechlorinated into biphenyl over Pd/C catalyst within 360 min.
Keywords:polychlorinated biphenyls (PCBs)  hydrodechlorination  Pd/C  heterogeneous catalytic  regulated  
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