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Impact of pigeon pea biochar on cadmium mobility in soil and transfer rate to leafy vegetable spinach

机译:木豆生物炭对土壤中镉迁移和叶菜蔬菜菠菜转移速率的影响

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摘要

Introduction of heavy metals in the environment by various anthropogenic activities has become a potential treat to life. Among the heavy metals, cadmium (Cd) shows relatively high soil mobility and has high phyto-mammalian toxicity. Integration of soil remediation and ecosystem services, such as carbon sequestration in soils through organic amendments, may provide an attractive land management option for contaminated sites. The application of biochar in agriculture has recently received much attention globally due to its associated multiple benefits, particularly, long-term carbon storage in soil. However, the application of biochar from softwood crop residue for heavy metal immobilization, as an alternative to direct field application, has not received much attention. Hence, a pot experiment was conducted to study the effect of pigeon pea biochar on cadmium mobility in a soil-plant system in cadmium spiked sandy loam soil. The biochar was prepared from pigeon pea stalk through a slow pyrolysis method at 300 degrees C. The experiment was designed with three levels of Cd (0, 5, and 10 mg Cd kg(-1) soil) and three levels of biochar (0, 2.5, and 5 g kg-1 soil) using spinach as a test crop. The results indicate that with increasing levels of applied cadmium at 5 and 10 mg kg(-1) soil, the dry matter yield (DMY) of spinach leaf decreased by 9.84 and 18.29 %, respectively. However, application of biochar (at 2.5 and 5 g kg(-1) soil) significantly increased the dry matter yield of spinach leaf by 5.07 and 15.02 %, respectively, and root by 14.0 and 24.0 %, respectively, over the control. Organic carbon content in the postharvest soil increased to 34.9 and 60.5 % due to the application of biochar 2.5 and 5 g kg(-1) soil, respectively. Further, there was a reduction in the diethylene triamine pentaacetic acid (DTPA)-extractable cadmium in the soil and in transfer coefficient values (soil to plant), as well as its concentrations in spinach leaf and root, indicating that cadmium mobility was decreased due to biochar application. This study shows that pigeon pea biochar has the potential to increase spinach yield and reduce cadmium mobility in contaminated sandy soil.
机译:通过各种人为活动将重金属引入环境已成为生命的潜在治疗方法。在重金属中,镉(Cd)表现出较高的土壤迁移率,并且具有很高的植物-哺乳动物毒性。土壤修复和生态系统服务的整合,例如通过有机改良剂固碳在土壤中,可能为受污染的土地提供有吸引力的土地管理选择。生物炭在农业中的应用由于其相关的多重利益,特别是土壤中的长期碳储存,最近在全球引起了广泛关注。然而,将软木农作物残渣中的生物炭用于重金属固定的应用,作为直接田间应用的替代方法,并未引起广泛关注。因此,进行了盆栽试验,研究了木豆生物炭对掺镉砂壤土中土壤-植物系统中镉迁移率的影响。该生物炭是由豌豆茎通过300摄氏度的慢速热解方法制备的。该实验设计为三级Cd(0、5和10 mg Cd kg(-1)土壤)和三级生物炭(0 ,2.5和5 g kg-1的土壤),以菠菜为试验作物。结果表明,随着5和10 mg kg(-1)土壤中镉的施用量增加,菠菜叶的干物质产量(DMY)分别降低了9.84和18.29%。但是,施用生物炭(在2.5和5 g kg(-1)的土壤上)比对照分别显着增加了菠菜叶的干物质产量5.07和15.02%,根部分别增加14.0和24.0%。由于使用了生物炭2.5和5 g kg(-1),分别使采后土壤中的有机碳含量增加到34.9和60.5%。此外,土壤中二亚乙基三胺五乙酸(DTPA)可提取的镉和转移系数值(土壤到植物)的含量降低,菠菜叶和根中的浓度降低,表明镉的迁移率降低了生物炭的应用。这项研究表明,在污染的沙质土壤中,木豆生物炭具有提高菠菜产量和降低镉迁移率的潜力。

著录项

  • 来源
    《Environmental Monitoring and Assessment》 |2016年第1期|31.1-31.10|共10页
  • 作者单位

    Indian Inst Soil Sci, Bhopal 462038, Madhya Pradesh, India;

    Jawaharlal Nehru Krishi Vishwa Vidyalaya, Jabalpur, Madhya Pradesh, India;

    Jawaharlal Nehru Krishi Vishwa Vidyalaya, Jabalpur, Madhya Pradesh, India;

    Indian Inst Soil Sci, Bhopal 462038, Madhya Pradesh, India;

    Indian Inst Soil Sci, Bhopal 462038, Madhya Pradesh, India;

    Indian Inst Soil Sci, Bhopal 462038, Madhya Pradesh, India;

    Indian Inst Soil Sci, Bhopal 462038, Madhya Pradesh, India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Biochar; Cadmium; Pigeon pea; Spinach; Heavy metal transfer;

    机译:生物炭;镉;鸽子豌豆;菠菜;重金属转移;
  • 入库时间 2022-08-17 13:26:07

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