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Investigation on leaching behaviour of toxic metals from biomedical ash and its controlling mechanism

机译:生物医学灰毒毒性金属浸出行为的研究及其控制机制

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It is comprehensible that disposal of biomedical ash (BMA) is a serious threat to human life and to the environment compared to any other type of waste without proper treatment. In the present study, it is focused in studying the leaching behaviour and its controlling mechanism to predict the contamination levels of BMA. Experimental investigation was carried out to determine the physico-chemical properties of BMA. The morphological and mineralogical composition was performed by SEM equipped with EDAX and XRD. A leaching pattern was identified for various heavy metals simultaneously (Hg, Se, As, Fe, Cd, Zn, Pb, Ca, Co, Ni, Cr and Cu) by varying pH (3, 5, 7, 9, and 11) via a pH-dependent batch leaching test using AAS and ICP. Major oxidation states of leached mineral/metal were established by Visual MINTEQA 3.1. Leaching test results show that a high concentration of Hg (9.3mg/l), Se (2.4mg/l) and As (9.7mg/l) at pH11 was obtained. Characterisation studies substantiate 60% of calcium silicate presence and major minerals like ettringite, calcite and thermonatrite. Geochemical modelling reveals that leached elements were solubility controlled except As and Se. It is inferred that, presence/formation of ettringite, calcite and thermonatrite minerals are responsible for immobilizing/reduced leaching of toxic heavy metals in alkaline environment except for Hg, Se and As as they are highly mobile in an alkaline condition which can be reduced by adopting a suitable pretreatment option so as to reduce the contamination levels of handling even untreated waste disposal.
机译:这是可以理解的是生物医学处置灰(BMA)的是对人的生命,并相对于没有适当处理任何其他类型的废弃物对环境构成严重威胁。在本研究中,它的重点是在研究浸出行为及其控制机制来预测BMA的污染水平。实验研究进行了确定BMA的物理化学性质。形态和矿物组成用装有EDAX和XRD SEM进行。浸出图案是通过改变pH值确定了各种重金属同时(汞柱,硒,砷,铁,镉,锌,铅,钙,钴,镍,铬和铜)(3,5,7,9,和11)经由使用AAS和ICP pH依赖性批次浸出测试。浸取的矿物/金属的主要氧化态通过视觉MINTEQA 3.1成立。浸出试验结果表明,汞(9.3mg / L)的高浓度,得到硒(2.4mg / L)和As(9.7mg / L)的PH11。表征研究证实硅酸钙的存在和重要矿物质,如钙矾石,方解石和thermonatrite的60%。地球化学模拟表明,沥滤元素被溶解度控制除砷和硒。据推断,,存在/形成钙矾石,方解石和thermonatrite矿物质是负责用于固定/缩小除汞,Se和如在碱性环境中的有毒重金属的浸出,因为它们是在其中可以通过以下方式在碱性条件高度移动采用合适的预处理选项,以便减少处理甚至未经处理的废物处置的污染水平。

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