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两段式除盐工艺,通过氯化物沉淀实现烟气脱硫废水近零排放。

A two-stage desalination process for zero liquid discharge of flue gas desulfurization wastewater by chloride precipitation.

机构信息

Shanghai Engineering Research Center of Energy - Saving in Heat Exchange Systems, College of Environmental and Chemical Engineering, Shanghai University of Electric Power, Shanghai 200090, China.

Shanghai Engineering Research Center of Energy - Saving in Heat Exchange Systems, College of Environmental and Chemical Engineering, Shanghai University of Electric Power, Shanghai 200090, China; Shanghai Institute of Pollution Control and Ecological Security, Shanghai 200092, China.

出版信息

J Hazard Mater. 2020 Oct 5;397:122744. doi: 10.1016/j.jhazmat.2020.122744. Epub 2020 Apr 23.

Abstract

A two-stage desalination process was developed to achieve zero liquid discharge (ZLD) of flue gas desulfurization (FGD) wastewater by precipitating chloride as Friedel's salt. Influential factors for Friedel's salt precipitation, including dosage, reaction time, concentration of sulfate, were investigate by batch tests. Batch results showed that at calcium to aluminum molar ratio of 3.0, the optimal chloride removal and the highest crystallinity of Friedel's salt were obtained. Sulfate impeded Friedel's salt precipitation by competitive inhibition mechanism, and thus calcium sulfate removal was designed in advance of chloride removal. Batch results and long-term results of bench-scale experiments showed that magnesium and part of sulfate were effectively removed by lime addition in Stage I of the proposed process, and then the remaining sulfate and 48.1 % of chloride were precipitated as ettringite and Friedel's salt in Stage II. The effluent of the two-stage process was alkaline with low turbidity, and had considerable desulfurization capacity. Techno-economic evaluation showed that the two-stage process is technically feasible, economically viable and environmentally friendly technology for ZLD of FGD wastewater.

摘要

开发了两段式脱盐工艺,通过沉淀氯化物作为弗赖德尔盐来实现烟气脱硫(FGD)废水的零液体排放(ZLD)。通过批量试验研究了影响弗赖德尔盐沉淀的因素,包括剂量、反应时间、硫酸盐浓度。批量结果表明,在钙与铝摩尔比为 3.0 时,可获得最佳的氯化物去除率和最高的弗赖德尔盐结晶度。硫酸盐通过竞争抑制机制阻碍了弗赖德尔盐的沉淀,因此钙盐的去除先于氯化物的去除。批处理结果和中试规模实验的长期结果表明,在提出的工艺的第一阶段通过添加石灰有效去除了镁和部分硫酸盐,然后在第二阶段将剩余的硫酸盐和 48.1%的氯化物沉淀为钙矾石和弗赖德尔盐。两段式工艺的出水呈碱性,浊度低,具有相当的脱硫能力。技术经济评价表明,两段式工艺是一种技术可行、经济可行且环保的 FGD 废水 ZLD 技术。

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