Praharaj T, Powell M A, Hart B R, Tripathy S
Department of Geology and Geophysics, Indian Institute of Technology, Kharagpur.
Environ Int. 2002 Mar;27(8):609-15. doi: 10.1016/s0160-4120(01)00118-0.
Environmental concerns regarding the potential contamination of soil, surface and ground water due to the presence of soluble metal species in the ash pond leachate is of great importance. Serial batch leaching was carried out simulating the rainwater condition of the study area to understand the behaviour of elements during leaching. The leachates were analysed for the elements Al, Ca, K, Mg, Na, P, S, Si, As, Ba, Fe, Mn, Mo, Ti, V, Pb, Zn, Co, Cr, Cu, Ni and Cd by inductively coupled plasma optical emission spectrometer (ICP-OES). It was found that Cd, Co, Cr and Ni did not leach from the ash while Cu and Pb concentrations were insignificant in the leachate regardless of liquid to solid (L/S) ratio. Most of the elements showed maximum concentrations at lower L/S ratio and then decreased with increasing L/S. The total cumulative concentrations of As, Mn and Mo were found to be higher than the World Health Organization (WHO) recommended values for drinking water while the concentrations of Fe, Mn and As exceeded the maximum allowable concentrations prescribed by the United States Environmental Protection Agency (USEPA). The pre and the post leached ash samples were analysed for morphology, specific surface area and mineralogical changes. Analysis of post-leached fly ash indicated changes in the specific surface area and morphology but no change in mineralogy.
由于灰塘渗滤液中存在可溶性金属物种,可能对土壤、地表水和地下水造成污染,这一环境问题至关重要。进行了一系列间歇式浸出实验,模拟研究区域的雨水条件,以了解浸出过程中元素的行为。通过电感耦合等离子体发射光谱仪(ICP - OES)对渗滤液中的铝(Al)、钙(Ca)、钾(K)、镁(Mg)、钠(Na)、磷(P)、硫(S)、硅(Si)、砷(As)、钡(Ba)、铁(Fe)、锰(Mn)、钼(Mo)、钛(Ti)、钒(V)、铅(Pb)、锌(Zn)、钴(Co)、铬(Cr)、铜(Cu)、镍(Ni)和镉(Cd)等元素进行了分析。结果发现,镉(Cd)、钴(Co)、铬(Cr)和镍(Ni)不会从灰中浸出,而无论液固比(L/S)如何,渗滤液中铜(Cu)和铅(Pb)的浓度都很低。大多数元素在较低的液固比下显示出最高浓度,然后随着液固比的增加而降低。砷(As)、锰(Mn)和钼(Mo)的总累积浓度高于世界卫生组织(WHO)推荐的饮用水值,而铁(Fe)、锰(Mn)和砷(As)的浓度超过了美国环境保护局(USEPA)规定的最大允许浓度。对浸出前后的灰样进行了形态、比表面积和矿物学变化分析。浸出后飞灰的分析表明比表面积和形态发生了变化,但矿物学没有变化。