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DETOXIFICATION OF AQUEOUS CHLOROPHENOL SOLUTIONS BY IONIZING RADIATION

机译:电离辐射对氯酚水溶液的解毒

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摘要

The radiolytic degradation of aerated aqueous 5 x 10~-5 M (6-10 ppm) 2-, 3- and 4-chlorophe- nol. 2,4-di- and 2.4.6-trichlorophenol has been investigated by determination of the dose needed for complete substrate degradation as well as by analysing the dehalogenation process, the toxicity and the dissolved organic carbon (DOC) in dependence of dose. A radiation dose of 500 Gy leads to a 100 decomposition (corresponding to substrate concentrations < = l x 10~-6 M) for all compounds except 2- chlorophenol, for which 600 Gy are required. No influence of dose rate on the degradation rate could be observed in the range from 21 to 183 Gy min-1. Dechlorination is completed at 1 kGy, its rate increases markedly with increasing number of chlorine atoms. At a dose of I kGy the decrease of DOC is approximately 20. A bacterial bioluminescence test was used for evaluating the toxicity of the final radiolytic products. Total detoxification could be achieved by carrying out the irradiation procedure under air saturation and by doses of 500 Gy, which equals that for complete degradation.
机译:加气的5 x 10〜-5 M(6-10 ppm)2-,3-和4-氯苯酚水溶液的辐射降解。通过确定完全降解底物所需的剂量,以及通过分析脱卤过程,毒性和溶解有机碳(DOC)的剂量,对2,4-二氯和2.4.6三氯苯酚进行了研究。 500 Gy的辐射剂量会导致除2-氯酚外的所有化合物的100 Gy分解(对应于底物浓度<= x 10〜-6 M)(需要600 Gy)。在21至183 Gy min-1的范围内,未观察到剂量率对降解率的影响。脱氯以1 kGy完成,其速率随着氯原子数量的增加而显着增加。在剂量为1 kGy时,DOC的减少约为20。细菌生物发光测试用于评估最终放射分解产物的毒性。完全排毒可以通过在空气饱和和500 Gy的剂量下进行辐照程序来实现,该剂量等于完全降解的剂量。

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