首页> 外文会议>WEFTEC 2011;Annual Water Environment Federation technical exhibition and conference >CONCEPTUAL DESIGN AND EVALUATION OF ZERO LIQUID DISCHARGE SYSTEMS FOR MANAGEMENT OF INDUSTRIAL WASTEWATER
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CONCEPTUAL DESIGN AND EVALUATION OF ZERO LIQUID DISCHARGE SYSTEMS FOR MANAGEMENT OF INDUSTRIAL WASTEWATER

机译:用于工业废水管理的零液体排放系统的概念设计和评估

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Zero liquid discharge (ZLD) is becoming a more viable option for discharge of complexindustrial wastewater. Drivers for ZLD include lowering of water quality standards for metals,implementation of chloride, sulfate, and total dissolved solids (TDS) water quality standards, aswell as scarcity of water resources. ZLD of a gasification wastewater and two flue-gasdesulfurization (FGD) scrubber blowdown wastewaters were evaluated. In all cases, complexwater chemistry required use of a software model to evaluate boiling point rise, changes in pH,and solids formed. Formation of hygroscopic solids occurred with full crystallization of bothwastewaters requiring careful handling. For the FGD blowdown, the chlorine concentration inthe coal and the FGD scrubber operating chloride level drives the quality of the FGD blowdownand the extent of concentration using evaporation. The magnesium content of the limestone alsoimpacts ZLD due to increases in the boiling point. Disposal of the concentrated brine with thefly ash is a convenient method for disposal of the brine and avoids full crystallization. Thisrequires dry fly ash handling and a dependence on ash production for brine disposal.
机译:零液体排放(ZLD)成为排放复杂工业废水的更可行选择。 ZLD的驱动因素包括降低金属的水质标准,实施氯化物,硫酸盐和总溶解固体(TDS)水质标准,以及水资源短缺。对气化废水和两种烟气脱硫(FGD)洗涤塔排污废水的ZLD进行了评估。在所有情况下,复杂的水化学都需要使用软件模型来评估沸点升高,pH值变化和形成的固体。吸湿性固体的形成与两种废水的完全结晶一起发生,需要仔细处理。对于烟气脱硫排污,煤中的氯浓度和烟气脱硫洗涤塔的氯化物含量决定了烟气脱硫排污的质量和蒸发的浓缩程度。由于沸点的增加,石灰石的镁含量也会影响ZLD。用粉煤灰处理浓盐水是处理盐水的一种方便方法,并且避免了完全结晶。这需要干粉煤灰处理,并且依赖于灰分生产以进行盐水处理。

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