首页> 外文期刊>Journal of Degraded and Mining Lands Management >Influence of type and amount of organic matters on the iron sorption of acid mine drainage onto reclaimed-mining soils
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Influence of type and amount of organic matters on the iron sorption of acid mine drainage onto reclaimed-mining soils

机译:有机物质类型和数量对再生矿土壤铁吸收的影响

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Mining activity may potentially produce acid mine drainage (AMD), which has relatively high acidity and dissolved heavy metal concentrations. Constructed wetlands is one of the AMD management methods in which organic matter (OM) plays a very important function in reducing the concentration of heavy metals in AMD through absorption and precipitation processes. Three types of OM (empty fruit bunches of oil palm, chicken manure and water hyacinth) and five levels of OM (0, 10, 20, 30 and 40 Mg ha-1) were applied to reclaimed-mining soils (RMS) in an incubation study. A batch experiment was then performed to measure the effect of OM application on the maximum sorption capacity (Qmax) of iron (Fe) from the AMD onto the mixed soil-OM. The application of OM resulted in increases in soil pH, carboxylic groups, and total functional groups, in which these increases varied based on the types and amounts of OM application. This study also revealed that OM application resulted in increasing Fe sorption. The application of OM increased Qmax values from 2077 to 2348-3259 mg kg-1 (water hyacinth), to 2607-3635 mg kg-1 (chicken manure), and to 2219-2992 mg kg-1 (empty fruit bunches of oil palm). Increasing these Qmax values may ascribe to increasing functional groups of the RMS with OM application. The results prove the importance of OM in controlling the sorption of Fe from AMD onto soils.
机译:采矿活动可能潜在地产生酸性矿山排水(AMD),其具有相对高的酸度和溶解的重金属浓度。构造的湿地是AMD管理方法之一,其中有机物质(OM)通过吸收和沉淀过程降低了减少AMD中重金属浓度的非常重要的功能。应用三种类型的OM(空果束油棕,鸡粪和水风信花)和五级OM(0,10,20,30和40mg HA-1),以在一个接收的土壤(RMS)中孵化研究。然后进行批量实验以测量OM施用对来自AMD的最大吸附能力(Qmax)的效果在混合土壤中。 OM的施加导致土壤pH,羧基和总官能团的增加,其中这些增加根据OM应用的类型和量而变化。本研究还表明OM应用导致Fe吸附增加。 OM增加Qmax值从2077到2348-3259mg Kg-1(水葫芦),达到2607-3635mg kg-1(鸡粪),以及2219-2992 mg kg-1(空果串油棕榈)。增加这些Qmax值可能归因于使用OM应用程序增加rms的功能组。结果证明了OM在将来自AMD的Fe的吸附到土壤上的重要性。

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