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Chemical stability of acid rock drainage treatment sludge and implications for sludge management

机译:酸性岩石排水处理污泥的化学稳定性及其对污泥管理的意义

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摘要

To assess the chemical stability of sludges generated by neutralizing acid rock drainage (ARD) with alkaline reagents, synthetic ARD was treated with hydrated lime (batch and high-density sludge process), limestone, and two proprietary reagents (KB-1 and Bauxsol). The amorphous metal hydroxide sludge produced was leached using deionized water, U.S. EPA methods (toxicity characteristic leaching procedure, synthetic precipitation leaching procedure), and the new strong acid leach test (SALT), which leaches the sludge with a series of sulfuric acid extractant solutions; the pH decreases by similar to 1 pH unit with each test, until the final pH is similar to 2. Sludges precipitated by all reagents had very similar leachabilities except for KB-1 and Bauxsol, which released more aluminum. SALT showed that lowering the pH of the leaching solution mobilized more metals from the sludges. Iron, aluminum, copper, and zinc began to leach at pH 2.5-3, similar to 4.5, similar to 5.5, and 6-6.5, respectively. The leachability of ARD treatment sludges is determined by the final pH of the leachate. A higher neutralization potential (e.g., a greater content of unreacted neutralizing agent) makes sludges inherently more chemically stable. Thus, when ARD or any acidic metalliferous wastewater is treated, a choice must be made between efficient reagent use and resistance to acid attack.
机译:为了评估使用碱性试剂中和酸性岩石排水(ARD)所产生的污泥的化学稳定性,将合成ARD用熟石灰(分批和高密度污泥法),石灰石和两种专有试剂(KB-1和Bauxsol)进行处理。 。使用去离子水,US EPA方法(毒性特征浸出程序,合成沉淀浸出程序)和新的强酸浸出试验(SALT)浸出产生的无定形金属氢氧化物污泥,该浸出液用一系列硫酸萃取液浸出;在每次测试中,pH值均降低至接近1个pH单位,直到最终pH值接近于2。除KB-1和Bauxsol释放出更多的铝外,所有试剂沉淀的污泥的浸出能力都非常相似。 SALT表明,降低浸提溶液的pH值可以从污泥中转移出更多的金属。铁,铝,铜和锌在pH 2.5-3时开始浸出,分别类似于4.5、5.5和6-6.5。 ARD处理污泥的浸出能力取决于浸出液的最终pH值。较高的中和潜力(例如,较大含量的未反应的中和剂)使污泥本来就更化学稳定。因此,当处理ARD或任何酸性含金属废水时,必须在有效使用试剂和抗酸侵蚀之间做出选择。

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