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The degradation of PCDD/Fs in fly ash using dielectric barrier discharge in a lab-scale reactor

机译:使用介电阻挡件在实验室级反应器中使用介电阻挡放电的PCDD / FS的降解

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Polychlorinated dibenzo-p-dioxins and dibenzofurans (PCDD/Fs) in fly ash emitted by municipal solid waste (MSW) incinerators are harmful to human health and the environment. Based on the degradation efficiency and application potential of non-thermal plasma (NTP) for gaseous pollutants, a typical lab-scale dielectric barrier discharge (DBD) module was adopted to generate plasma and degrade the PCDD/Fs present in fly ash. In this study, the degradation characteristics of 17 kinds of PCDD/Fs congeners were studied, and the effects of input energy, discharge time and moisture content of fly ash on PCDD/Fs removal efficiency were also discussed in detail. The results indicated that the degradation efficiency of 2378-tetrachlorodibenzo-p-dioxin (2378-TCDD) was the highest among 17 kinds of PCDD/Fs congeners at the same operating condition, and the total degradation efficiency of PCDDs was higher than that of PCDFs. The highest degradation efficiencies of 2378-TCDD, PCDDs and PCDFs acquired in this study could be up to 92%, 83%, and 55%, respectively. A long time of electric discharge was not beneficial to the decomposition of PCDD/Fs, and the moisture content of fly ash affected the degradation of PCDDs more obviously than that of PCDFs. Also, the degradation mechanisms of PCDD/Fs were discussed further. It was discovered from results that the decomposition of PCDFs was mainly attributed to the dissociation of the C-Cl bond, while for that of PCDDs, the dissociation of the C-O bond played a dominant role rather than that of the C-Cl bond.
机译:城市固体废物(MSW)焚烧炉发出的粉煤灰(MSW)焚烧炉发出的多氯二苯甲苯-P-二恶英和二苯并呋喃(PCDD / FS)对人类健康和环境有害。基于气态污染物的非热血浆(NTP)的降解效率和应用潜力,采用典型的实验室介质屏障放电(DBD)模块来产生等离子体并降解粉煤灰中存在的PCDD / FS。在这项研究中,研究了17种PCDD / FS同质仪的降解特性,并详细讨论了粉煤灰对PCDD / FS去除效率的输入能量,放电时间和水分含量的影响。结果表明,2378-四氯二氯二苯深素-P-二恶英(2378-TCDD)的降解效率在相同的操作条件下的17种PCDD / FS Congeners中最高,PCDD的总劣化效率高于PCDFS 。本研究中获得的2378-TCDD,PCDD和PCDFS的最高降解效率分别高达92%,83%和55%。长时间的放电对PCDD / FS的分解并不有益,粉煤灰的水分含量影响PCDDS的降解比PCDFS更明显。此外,进一步讨论了PCDD / FS的降解机制。从结果发现,PCDFS的分解主要归因于C-Cl键的解离,而对于PCDDS的解离,C-O键的解离得出了显性作用而不是C-Cl键的粘性作用。

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