首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Pd-catalyzed hydrodechlorination of chlorinated aromatics in contaminated waters—Effects of surfactants, organic matter and catalyst protection by silicone coating
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Pd-catalyzed hydrodechlorination of chlorinated aromatics in contaminated waters—Effects of surfactants, organic matter and catalyst protection by silicone coating

机译:Pd污染水中氯代芳烃的加氢脱氯—表面活性剂,有机物和有机硅涂层对催化剂的保护作用

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摘要

Many chlorinated aromatic and aliphatic hydrocarbons dissolved in water can be rapidly and selectively hydrodechlorinated by means of Pd catalysts. However, if they appear in a complex water matrix, as is common for wastewater treatment or after soil extraction, the protection of the Pd sites against catalyst poisons may become the key step for applicability of this reaction. In the present study, Pd/Al2O3 was tested as hydrodechlorination (HDC) catalyst in various soil washing effluents. As probe compounds 3-chlorobiphenyl (3-CBP), monochlorobenzene (MCB) and trichloroethene (TCE) were chosen. Specific catalyst activities up to A_(pd) = 200 L g~(-1) min~(-1) were measured in clean water. The influence of surfactants and co-solvents was studied. In addition, soil slurry supernatant was employed as reaction medium to appraise the influence of soil co-extractants (dissolved organic matter, DOM) on the dechlorination reaction. Results show that commercially available surfactants such as Tween 80, Triton X-100, SDBS, and CTMAOH as well as methanol as co-solvent with concentrations up to 20 vol% did not strongly affect the catalyst activity. However, the catalyst performance was heavily decreased in the presence of a soil slurry supernatant (40 mg L~(-1) DOM). Hydrophobic coating of the catalyst by silicone polymers was successful in protecting the Pd sites against ionic catalyst poisons such as DOM and bisulphite for at least 24 h.
机译:溶解在水中的许多氯化芳族和脂族烃可以通过Pd催化剂快速选择性地加氢脱氯。但是,如果它们出现在复杂的水基质中(如废水处理中或土壤提取后的常见情况),则保护Pd位免受催化剂毒害可能成为该反应适用性的关键步骤。在本研究中,Pd / Al2O3在各种土壤洗涤废水中作为加氢脱氯(HDC)催化剂进行了测试。作为探针化合物,选择了3-氯联苯(3-CBP),一氯苯(MCB)和三氯乙烯(TCE)。在清洁水中测量了高达A_(pd)= 200 L g〜(-1)min〜(-1)的比活度。研究了表面活性剂和助溶剂的影响。另外,将土壤浆液上清液用作反应介质以评估土壤共萃取剂(溶解的有机物,DOM)对脱氯反应的影响。结果表明,市售的表面活性剂(例如Tween 80,Triton X-100,SDBS和CTMAOH)以及浓度不超过20%(体积)的甲醇作为助溶剂不会强烈影响催化剂的活性。然而,在土壤上清液(40 mg L〜(-1)DOM)存在下,催化剂的性能大大降低。有机硅聚合物对催化剂的疏水涂层成功地保护了Pd位免受离子催化剂毒物(例如DOM和亚硫酸氢盐)的侵害至少24小时。

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