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Testing of potential reactive materials for removal of heavy metals from contaminated water

机译:测试潜在的反应性材料以去除污水中的重金属

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One of the most important environmental problems of the last decade is water (groundwater, surface water) contamination, which poses a significant ecological risk to the environment and human health. Permeable reactive barrier (PRB) is an efficient technology for remediating contaminated water on industrial and mining sites. The PRB technology is based on an emplacement of a reactive material in the subsurface designed to intercept a contaminated groundwater plume. The contaminated plume flows through the reactive material where the contaminants are transformed into environmentally acceptable species. The aim of the present study was to test experimentally caustic calcined magnesia, limestone, dolomite and blast furnace slag as potential reactive materials for the PRB technology. The effects of the chemical composition of contaminated water and water-to-reactive material weight ratio on the efficiency of heavy metals removal were investigated. The results have shown that caustic calcined magnesite (CCM-KK) was the most suitable reactive material for removal of cations Fe3+, Al3+, Cu2+, Zn2+, Ni2+, and Mn2+. This reactive material was able to increase the pH of the contaminated water to the value of about 10 and the efficiency of selected cations removal up to 100 % was observed.
机译:过去十年中最重要的环境问题之一是水(地下水,地表水)污染,这对环境和人类健康构成了重大的生态风险。渗透性反应屏障(PRB)是一种有效的技术,用于修复工业和采矿场所的污水。 PRB技术基于在地下埋置的一种反应材料,旨在拦截受污染的地下水羽流。被污染的羽流流经反应性材料,在此污染物被转化为环境可接受的物质。本研究的目的是测试腐蚀性烧成的氧化镁,石灰石,白云石和高炉矿渣作为PRB技术的潜在反应材料。研究了污水中化学成分和水与反应性物质的重量比对重金属去除效率的影响。结果表明,苛性煅烧菱镁矿(CCM-KK)是最适合去除阳离子Fe3 +,Al3 +,Cu2 +,Zn2 +,Ni2 +和Mn2 +的反应性材料。这种反应性材料能够将污水的pH值增加到大约10,观察到选定的阳离子去除效率高达100%。

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