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.
J Hazard Mater. 2021 Sep 5;417:126054. doi: 10.1016/j.jhazmat.2021.126054. Epub 2021 May 7.
In this study, a five-stage stepwise precipitation process, including pre-sedimentation, magnesium removal, gypsum precipitation, ettringite precipitation and calcium removal, was proposed as a softening pretreatment for zero liquid discharge system for flue gas desulfurization wastewater. Batch tests and long-term bench-scale experiment showed that magnesium, sulfate and calcium were efficiently removed with efficiencies all above 98.0%, leaving a clean effluent majorly containing NaCl and NaOH. The precipitated CaSO, CaCO, Mg(OH) and ettringite were completely separated by stepwise precipitation, and the purity of Mg(OH) and ettringite were further enhanced by washing and soaking treatment. CaSO and CaCO can be directly recycled as gypsum product and desulfurizing agent within the power plant, while Mg(OH) and ettringite presented proper particle size and excellent thermal properties as a synergistic flame retardant. The flame retardancy of ethylene vinyl acetate copolymer were greatly improved when blended with recovered Mg(OH) and ettringite, and possessed better performance by blending them together because ettringite could act as a dispersing and compatible agent of Mg(OH), and relieve the intensity of smoke releasing. Chemical sludge recovery compensates the total cost of the five-stage process by 45.0%, and makes the process technically versatile, economically beneficial and environmentally friendly without solid waste production.
在这项研究中,提出了一种五阶段逐步沉淀法,包括预沉淀、镁去除、石膏沉淀、钙矾石沉淀和钙去除,作为用于烟气脱硫废水零排放系统的软化预处理。批量测试和长期中试实验表明,镁、硫酸盐和钙的去除效率均高于 98.0%,得到了主要含有 NaCl 和 NaOH 的清洁出水。通过分步沉淀完全分离出沉淀的 CaSO4、CaCO3、Mg(OH)2 和钙矾石,并通过洗涤和浸泡处理进一步提高了 Mg(OH)2 和钙矾石的纯度。CaSO4 和 CaCO3 可直接在电厂内作为石膏产品和脱硫剂回收,而 Mg(OH)2 和钙矾石具有适当的颗粒尺寸和优异的热性能,可用作协同阻燃剂。回收的 Mg(OH)2 和钙矾石与乙烯-醋酸乙烯酯共聚物共混,可大大提高其阻燃性能,且共混时性能更好,因为钙矾石可以作为 Mg(OH)2 的分散和相容剂,减轻烟雾释放的强度。化学污泥回收使五阶段工艺的总成本降低了 45.0%,使该工艺在技术上具有多功能性,在经济上有利,在环境上无害,且不产生固体废物。