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Phytoremediation of Pb contaminated paddy field using combination of Agrobacterium sp. I3, compost and ramie (Boehmeria nivea)

机译:利用土壤杆菌组合的PB污染稻田的植物修复。 I3,堆肥和苎麻(Boehmeria Nivea)

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摘要

Industry sector exerts a negative effect on the environment. Industrial waste is often disposed to the rivers. The industry contributes to the accumulation of heavy metals in the environment. In farming sector, the accumulation of heavy metals can result in water pollution and be washed into the ground. Therefore, the farming product can be contaminated with heavy metals and they can be harmful to human health. The objective of this research was to reduce the Pb heavy metal content in paddy soil. This research was taken place in the Pb contaminated paddy soil using a randomized complete block design with three factors and three replicates. This research employed combination of inorganic fertilizer, ramie and Agrobacterium sp. I3 or compost as a chelator to improve Pb uptake. The results showed that combination of the three treatments increased Pb uptake. The combination of chemical fertilizers, ramie with compost increased the Pb uptake of 11.93 μg/g or 45.9%. The combination of chemical fertilizers, ramie with Agrobacterium sp. I3 resulted in the highest Pb uptake of 12.85 μg/g or 49.8%. The combination also decreased the soil Pb level by 7.8 μg/g or 23.5% of the control.
机译:行业部门对环境产生负面影响。工业废物通常被围绕着河流。该行业有助于在环境中积累重金属。在农业部门,重金属的积累可能导致水污染,并将其洗涤进入地面。因此,农业产品可以污染重金属,它们可能对人类健康有害。本研究的目的是减少水稻土中的PB重金属含量。使用具有三个因素和三个重复的随机完整的块设计,在PB受污染的水稻土中进行了该研究。该研究采用无机肥料,苎麻和土壤杆菌的组合。 I3或堆肥作为螯合剂,以改善PB摄取。结果表明,三种治疗的组合增加了Pb吸收。化肥的组合,苎麻具有堆肥增加了11.93μg/ g或45.9%的Pb摄取。化肥组合,苎麻与土壤杆菌SP。 I3导致最高的Pb摄取为12.85μg/ g或49.8%。该组合还将土壤PB水平降低7.8μg/ g或对照的23.5%。

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