首页> 外文期刊>Journal of the Chemical Society of Pakistan >Comparative Study oh the Leaching Characteristics of Industrial Sludge and Fly Ash using KSLP and TCLP Techniques
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Comparative Study oh the Leaching Characteristics of Industrial Sludge and Fly Ash using KSLP and TCLP Techniques

机译:KSLP和TCLP技术对工业污泥和粉煤灰浸出特性的比较研究

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摘要

Leaching characteristics of industrial sludge and fly ash using Korean Standard Leaching Procedure (KSLP) and Toxicity Characteristics Leaching Procedure (TCLP) were studied. Possibilities of re-adsorption of heavy metal ions on the surface of sludge and ash during the course of leaching were also investigated. KSLP looked relatively more aggressive than the TCLP in leaching heavy metal ions. Concentrations of metal ions leached in both the methods, however, were found very low in comparison to the concentration of ions present in the original samples. In case of sludge, heavy metal ions showed relatively high rate of leaching at 4th and 5th stages of sequential extraction while ash showed high rate of leaching at the first three stages of extraction. Some of the concentrations of heavy metal ions leached out in the tests also found to be adsorbed on the surface of sludge and ash. Heavy metal ions present in high concentrations in the sample showed lower rate of adsorption than their leaching rate. No distinct difference in the results of KSLP and TCLP was observed. However, variations in the leaching results could be due to the different nature of hazardous waste and leaching conditions. More information like kinetics of leaching, mineralogical characteristics of waste and site characteristics of landfill were required to predict more accurate leaching behavior of ions in natural conditions.
机译:研究了使用韩国标准浸出程序(KSLP)和毒性特征浸出程序(TCLP)进行工业污泥和粉煤灰的浸出特性。还研究了在浸出过程中重金属离子在污泥和灰分表面上重新吸附的可能性。在浸出重金属离子方面,KSLP比TCLP更具侵略性。但是,与原始样品中存在的离子浓度相比,发现两种方法中浸出的金属离子浓度都非常低。对于污泥,重金属离子在顺序萃取的第4和第5阶段显示出较高的浸出率,而灰分在萃取的前三个阶段显示出较高的浸出率。在测试中浸出的一些重金属离子浓度也被发现吸附在污泥和灰烬的表面上。样品中高浓度的重金属离子的吸附速率低于其浸出速率。在KSLP和TCLP的结果中没有观察到明显差异。但是,浸出结果的变化可能是由于危险废物和浸出条件的不同性质所致。需要更多信息,例如浸出动力学,废物的矿物学特征和垃圾填埋场的特征,才能预测自然条件下离子的更准确浸出行为。

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