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Mercury uptake by Zea mays L. grown on an inceptisol polluted by amalgamation and cyanidation tailings of small-scale gold mining

机译:Zea Mays L.在汞合金中的汞合金污染的汞污染和小型金矿尾矿污染

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摘要

Pollution of agricultural land by tailings from the Artisanal and Small-Scale Gold Mining (ASGM) can increase the concentration of mercury (Hg) in plant tissue thus; it will endanger the health of humans and animals that consume it. This study aimed to determine the amount of Hg taken up by maize plants on an inceptisol contaminated with tailings from amalgamation and cyanidation processes of small-scale gold mining. A field experiment was conducted at the experimental field of Faculty of Agriculture, University of Mataram by using a factorial randomized block design consisting of two factors, namely: (1) tailings (L), and (2) ) fertilization (N). The results indicated that adding amalgamation and cyanidation tailings increased the physical and chemical fertility of the soil studied but caused Hg pollution. Most of the Hg in plant tissue was concentrated in the roots of the plants. The content of Hg in the plant shoot was above the threshold value of mercury allowed in plants. The NK33 variety of maize can be categorized as a mercury tolerant plant as the plant grew well in a mercury-contaminated soil.
机译:从手工和小型金矿(ASGM)的尾矿污染农业土地(ASGM)可以增加植物组织中汞(HG)的浓度;它将危及消费它的人类和动物的健康状况。本研究旨在确定玉米植物在用尾矿污染的染色中染色的玉米植物造成的HG含量。通过使用由两个因素组成的因子随机化块设计,Mataram大学的农业学院实验领域进行了一个田间实验,即:(1)尾矿(L)和(2))施肥(N)。结果表明,添加汞合作和氰化尾矿增加了研究的土壤的物理和化学生育,但引起了HG污染。植物组织中的大部分Hg都浓缩在植物的根部。植物芽中Hg的含量高于植物中允许的汞的阈值。随着植物在汞污染的土壤中增长良好,NK33各种玉米可以作为汞耐受性植物分类。

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