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Influence of organic and inorganic flocculants on the formation of PCDD/Fs during sewage sludge incineration

机译:有机和无机絮凝剂对污泥焚烧过程中PCDD / Fs的影响

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Flocculants are widely used to improve the properties of sludge dewatering in industrial wastewater treatment. However, there have been no studies conducted on the influence of flocculants on the formation of polychlorinated dibenzo-p-dioxin and dibenzofurans (PCDD/Fs) during sewage sludge incineration. This paper selected three typical kinds of flocculants, including polyacrylamide (PAM), poly-ferric chloride (PFC), and polyaluminum chloride (PAC) flocculant, to study their influences on the formation of PCDD/Fs during sewage sludge incineration. The results indicated that PAM flocculant, which is an organic flocculant, inhibited the formation of PCDD/Fs in sewage sludge incineration, while inorganic flocculant, such as PFC and PAC flocculant, promoted the formation. The most probable explanation is that the amino content in the PAM flocculant acted as an inhibitor in the formation of PCDD/Fs, while the chlorine content, especially the metal catalyst in the PFC and PAC flocculants, increased the formation rate. The addition of flocculants nearly did not change the distribution of PCDD/F homologues. The PCDFs contributed the most toxic equivalent (TEQ) value, especially 2, 3, 4, 7, 8-PeCDF. Therefore, the use of inorganic flocculants in industrial wastewater treatment should be further assessed and possibly needs to be strictly regulated if the sludge is incinerated. From this aspect, a priority to the use of organic flocculants should be given.
机译:絮凝剂被广泛用于改善工业废水处理中的污泥脱水性能。然而,尚未进行关于絮凝剂对污水污泥焚烧过程中多氯代二苯并对二恶英和二苯并呋喃(PCDD / Fs)形成的影响的研究。本文选择了三种典型的絮凝剂,包括聚丙烯酰胺(PAM),聚氯化铁(PFC)和聚氯化铝(PAC)絮凝剂,以研究它们对污泥焚烧过程中PCDD / Fs形成的影响。结果表明,PAM絮凝剂是一种有机絮凝剂,可抑制污水污泥焚烧过程中PCDD / Fs的形成,而PFC和PAC絮凝剂等无机絮凝剂可促进其形成。最可能的解释是,PAM絮凝剂中的氨基含量起PCDD / Fs形成的抑制剂的作用,而氯含量,尤其是PFC和PAC絮凝剂中的金属催化剂,则增加了形成速率。絮凝剂的添加几乎没有改变PCDD / F同系物的分布。 PCDF贡献了最高毒性当量(TEQ)值,尤其是2、3、4、7、8-PeCDF。因此,应进一步评估无机絮凝剂在工业废水处理中的使用,如果焚化污泥,则可能需要严格管理。从这一方面出发,应优先使用有机絮凝剂。

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