首页> 外文期刊>Soil & Sediment Contamination >Basal and Foliar Treatment using an Organic Fertilizer Amendment Lowers Cadmium Availability in Soil and Cadmium Uptake by Rice on Field Micro-Plot Experiment Planted in Contaminated Acidic Paddy Soil
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Basal and Foliar Treatment using an Organic Fertilizer Amendment Lowers Cadmium Availability in Soil and Cadmium Uptake by Rice on Field Micro-Plot Experiment Planted in Contaminated Acidic Paddy Soil

机译:使用有机肥料修正的基础和叶面治疗降低了土壤和镉的镉可用性,在污染的酸性稻田土壤中种植的田间微图实验

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摘要

In the present study, field micro-plot experiments were conducted to investigate the basal and foliar application of a tested organic fertilizer amendment (OFA) for decreasing the risk of Cd accumulating in rice. The results showed that applications of OFA significantly increased rice yields in Cd-polluted soil and reduced the level of Cd in rice plants, especially in rice grain. In addition, three application methods of OFA were investigated (single basal application (B1, B2, and B3), combined basal application (+LM, +D, and +Z), and foliar application (F1, F2)). Treat B, F, +LM, +D were all higher than control on rice yield with 25.03, 28.05, 30.61, 22.50?g pot?1 on average, respectively. Among which, rice cadmium depress to 0.33?mg kg?1 in foliar application is considered to be a more efficient and economical method of heavy metal remediation. The mechanism of foliar application to alleviate the accumulation of Cd in brown rice may be related to the probable Cd sequestration in the leaves and straws. And the doses of the foliar application were 2.25–3.75?kg hm?2, approximately 1.0–2.5% of the basal application amount yet with more effect (0.10 mg kg?1 more than single basal; 0.23?mg kg?1 more than combined basal) on Cd reduction.
机译:在本研究中,进行现场微曲线实验,以研究测试的有机肥料修正(OFA)的基础和叶状应用,以降低水稻中积累CD的风险。结果表明,OFA的应用显着提高了CD污染土壤的水稻产量,并降低了水稻植物中的CD水平,特别是水稻粒。另外,研究了三种施用OFA的方法(单个基础施用(B1,B2和B3),组合基础施用(+ LM,+ D和+ Z)和叶面施用(F1,F2))。治疗B,F,+ LM,+ D全部高于水稻产量的控制,分别平均分别为25.03,28.05,30.61,22.50Ω·G罐1。其中,水稻镉抑制在叶面申请中的0.33μgα1中,被认为是一种更有效和经济的重金属修复方法。叶面申请缓解糙米中Cd积累的机制可能与叶子和吸管中可能的CD封存有关。并且叶面申请的剂量为2.25-3.75?kg hm?2,约1.0-2.5%的基础施用量,效果更多(0.10 mg kg?1多于单个基础; 0.23?mg kg?1多组合基底)减少CD.

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