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将混凝和臭氧氧化集成作为煤气化废水再生反渗透浓缩液预处理的潜力。

Potential of the integration of coagulation and ozonation as a pretreatment of reverse osmosis concentrate from coal gasification wastewater reclamation.

机构信息

School of Environmental Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, PR China; Key Laboratory of Water and Wastewater Treatment (HUST), MOHURD, Wuhan 430074, PR China.

School of Environmental Science and Engineering, Huazhong University of Science and Technology, Wuhan 430074, PR China; Key Laboratory of Water and Wastewater Treatment (HUST), MOHURD, Wuhan 430074, PR China.

出版信息

Chemosphere. 2019 May;222:696-704. doi: 10.1016/j.chemosphere.2019.01.187. Epub 2019 Feb 1.

Abstract

Combination of coagulation and ozonation was used to treat brine derived from a three-stage reverse osmosis (RO) process during coal gasification wastewater reclamation. Effects of operating parameters on the removals of total organic carbon (TOC), color and UV absorbance at 254 nm (A) were investigated during coagulation and ozonation. All the removal efficiencies of TOC, A and color of FeCl coagulant are about twice those of AlCl coagulant at the same molar dose since almost all the molecular weight fractions of RO concentrate (ROC) could be removed effectively by FeCl coagulant while only the fractions of molecular weight > 3 k Da could be removed effectively by AlCl coagulant. The TOC removal increases with the increasing of ozone dose and reaction temperature during ozonation of ROC after coagulation pretreatment. TOC and color of ROC after pretreated by coagulation could be further removed effectively during ozonation since ozonation can significant reduce the fluorescence response of all the fractions of effluent organic matter in ROC. It is unexpectedly found that the increase of A is observed after ozonation, this is because the intensity of absorbance at 254 nm by the low molecular weight transformation products (<2 k Da) increases significantly with the reaction time after 30 min. The coagulation coupling with ozonation is efficient in the removals of both TOC and color of ROC.

摘要

采用混凝-臭氧化组合工艺处理煤气化废水再生中的三级反渗透(RO)浓缩液。考察了混凝和臭氧化过程中操作参数对总有机碳(TOC)、色度和 254nm 紫外吸光度(A)去除率的影响。在相同摩尔剂量下,FeCl 混凝剂对 TOC、A 和色度的去除效率约为 AlCl 混凝剂的两倍,因为 FeCl 混凝剂几乎可以有效去除 RO 浓缩液(ROC)的所有分子量级分,而 AlCl 混凝剂只能有效去除分子量>3kDa 的级分。混凝预处理后,臭氧化过程中随着臭氧剂量和反应温度的增加,TOC 的去除率增加。由于臭氧化可以显著降低 ROC 中所有出水中有机物级分的荧光响应,因此经过混凝预处理的 ROC 的 TOC 和色度可以在臭氧化过程中进一步有效去除。出乎意料的是,在臭氧化后观察到 A 的增加,这是因为在 30min 后,低分子量转化产物(<2kDa)的 254nm 吸光度强度随反应时间显著增加。混凝与臭氧化的结合对 ROC 的 TOC 和色度去除均有效。

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