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Field Demonstration of the Activated Iron Technology for Removing Heavy Metals from Flue-Gas-Desulfurization Wastewater

机译:用于从烟道 - 气脱硫废水中除去重金属活性铁技术的现场演示

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The Activated Iron Process (AIP) technology, which is renamed from the hybrid zero-valent-iron (hZVI) process, is a novel chemical treatment process that has shown great potential in previous laboratory and field bench-scale tests for removing selenium, mercury, and nutrients from the flue-gas-desulfurization wastewater. In this study, a pilot-scale demonstration was conducted to continuously treat 3.8-7.6 L/min (1-2 gpm) of the FGD wastewater at a coal-fired power plant for five months. Results show that the AIP process could simultaneously reduce selenate-Se from 1-3 mg/L to below 10 μg/L and mercury from over 100 μg/L to below 10 ng/L, in compliance with new stringent effluent discharge limits planned by the USEPA for Se and Hg. Moreover, the process efficiently removed a broad spectrum of heavy metals such as As(III), As(V), Cr(VI), Cd(II), Pb(II) and Cu(II) from ppm level to near or sub-ppb level. A 3-stage AIP reactor with a combined hydraulic retention time of 8-12 h was sufficient for Se treatment and a single stage for Hg and other heavy metals. The process had a competitive economics and consumed ~0.3 kg ZVI per 1 m~3 FGD wastewater treated at a cost of about $0.6/m~3. Solid waste production and energy consumption were reasonably low. The AIP process is scalable. The successful pilot study demonstrates that the AIP technology can be a reliable, low-cost, high-performance treatment platform with numerous application potentials, particularly, for solving some of the toughest heavy metal water problems
机译:从混合零价 - 铁(HZVI)工艺中重命名的激活的铁工艺(AIP)技术,是一种新的化学处理过程,在以前的实验室和现场工作台级测试中表现出巨大的潜力,用于去除硒,汞和烟道 - 气脱硫废水的营养素。在这项研究中,在燃煤发电厂进行了五个月的5个月,进行了试验规范示范以连续治疗3.8-7.6L / min(1-2GPm)的FGD废水。结果表明,AIP过程可以同时将1-3mg / L至低于10μg/ L和汞从超过100μg/ L至低于10ng / L的硒酸盐,符合计划的新严格的流出物放电限制用于se和hg的使用者。此外,该方法有效地除去了从PPM水平到附近的PPM水平的(V),Cr(VI),Cd(II),Pb(II)和Cd(II),Cd(II),Cd(II),Pb(II)和Cu(II)的广谱-PPB级别。具有8-12小时的组合液压保留时间的3级AIP反应器足以进行SE治疗和用于Hg和其他重金属的单一阶段。该过程具有竞争性经济学,每1米〜3个FGD废水消耗〜0.3千克ZVI,其成本约为0.6 / m〜3。固体废物生产和能耗相当低。 AIP过程可扩展。成功的试验研究表明,在AIP技术可以成为一个可靠的,低成本,高性能处理平台与众多的应用潜力,特别是为解决一些最棘手的重金属的水问题

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