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Leachability and metal-binding capacity in ageing landfill material

机译:老化填埋材料的浸出性和金属结合能力

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In order to study the stability of landfilled heavy metals, landfill material from a combined household and industrial waste landfill was aerated for 14 months to simulate the natural ageing processes as air slowly begins to penetrate the landfill mass. During aeration, the pH of the landfill material decreased from around 8.6 to 8.1 and the carbon content also decreased. In order to investigate the possible fate of metals in ageing landfills, a four-stage sequential extraction technique was applied. The ability of the materials to bind metal ions by electrostatic attractions and to form stronger complexes was studied separately. The amount of exchangeable cations, the capacity to bind metal ions by electrostatic attraction and the capacity of the landfill material to complex copper ions were increased by the aeration process. However, results from the sequential analysis showed an increased solubility of sulphur and some metals (Cd, Co, Cu, Ni and Zn). Equilibrium speciation models (Medusa) indicated that the organic matter deposit had a significant capacity to bind metal ions provided that pH was sufficiently high. However, as carbonates are consumed over time, the risk for metal mobility increases. Therefore, the landfills can become an environmental risk, depending on variations in the solubility of metal ions due to changes in pH, redox status and the availability of organic material.
机译:为了研究垃圾填埋场中重金属的稳定性,对来自家庭和工业垃圾填埋场的垃圾填埋场充气了14个月,以模拟自然衰老过程,因为空气开始慢慢渗入垃圾填埋场。在充气过程中,垃圾填埋场的pH值从8.6左右降低到8.1,碳含量也降低了。为了研究老化垃圾填埋场中金属的可能结局,采用了四阶段连续萃取技术。分别研究了材料通过静电引力结合金属离子并形成更强配合物的能力。曝气过程增加了可交换阳离子的量,通过静电吸引与金属离子结合的能力以及垃圾填埋材料与复杂的铜离子的能力。但是,顺序分析的结果表明,硫和某些金属(Cd,Co,Cu,Ni和Zn)的溶解度增加。平衡形态模型(美杜莎)表明,只要pH足够高,有机物沉积物就具有结合金属离子的显着能力。但是,随着时间的推移消耗碳酸盐,金属迁移率的风险增加。因此,垃圾填埋场可能会成为环境风险,这取决于pH值,氧化还原状态和有机材料的可用性所导致的金属离子溶解度的变化。

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