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Dehalogenation of polychlorinated biphenyls and polybrominated diphenyl ethers using a hybrid bioinorganic catalyst

机译:使用混合生物无机催化剂对多氯联苯和多溴联苯醚进行脱卤

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摘要

The environmentally prevalent polybrominated diphenyl ether (PBDE) #47 and polychlorinated biphenyls (PCBs) #28 and #118 were challenged for 24 hours with a novel biomass-supported Pd catalyst (BioPd0). Analysis of the products via GC/MS revealed the BioPd0 to cause the challenged compounds to undergo stepwise dehalogenation with preferential loss of the least sterically hindered halogen atom. A mass balance for PCB #28 showed that it is degraded to three dichlorobiphenyls (33.9 %), two monochlorobiphenyls (12 %), and biphenyl (30.7 %). The remaining mass was starting material. In contrast, while PCB #118 underwent degradation to yield five tetra- and five trichlorinated biphenyls; no less chlorinated products or biphenyl were detected, and the total mass of degraded products was 0.3 %. Although the BioPd0 material was developed for treatment of PCBs, a mass balance for PBDE #47 showed that the biocatalyst could prove a useful method for treatment of PBDEs. Specifically, 10 % of PBDE # 47 was converted to identifiable lower brominated congeners, predominantly the tribrominated BDE 17, and the dibrominated BDE 4, 75 % remained intact, while 15 % of the starting mass was unaccounted for.
机译:使用新型的生物质负载型Pd催化剂(BioPd0)对环境中普遍存在的多溴联苯醚(PBDE)#47和多氯联苯(PCB)#28和#118进行24小时攻击。通过GC / MS对产物进行分析后发现,BioPd0可使受攻击的化合物逐步脱卤,并优先损失受空间最小影响的卤素原子。 PCB#28的质量平衡表明它已降解为三个二氯联苯(33.9%),两个一氯联苯(12%)和联苯(30.7%)。剩余的物质是起始原料。相反,PCB#118经过降解后会生成五个四氯和五个三氯联苯;至少检测到氯化产物或联苯,降解产物的总质量为0.3%。尽管开发了BioPd0材料用于处理PCB,但PBDE#47的质量平衡表明,生物催化剂可以证明是处理PBDEs的有用方法。具体而言,将10%的PBDE#47转化为可识别的低溴同类物,主要是三溴BDE 17,而二溴BDE 4则保持75%完好无损,而起始质量的15%无法确定。

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