Agricultural wastes improve soil quality and enhance the phytoremediation efficiency of economic crops for heavy metal-contaminated soils in mining areas.

IF 4.3 3区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL Environmental Geochemistry and Health Pub Date : 2025-02-03 DOI:10.1007/s10653-025-02381-4
Qiankui Yu, Bo Gao, Xingfeng Zhang
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Abstract

In recent years, global attention has increasingly focused on soil heavy metal (HM) contamination. However, there remains a paucity of studies examining the interaction effects of agricultural wastes as amendments in HMs contaminated soil, particularly concerning the utilization of economic crops for soil remediation. This study investigates the impacts of various agricultural wastes (soybean meal, peanut bran, oak leaves, and coffee grounds) on soil properties, plant growth, and HMs accumulation in economic crops (sugarcane and cassava) through pot experiments. The application of these amendments resulted in significant increases in soil pH, soil organic matter (SOM), and cation exchange capacity (CEC) content. Moreover, catalase and urease activities in sugarcane planting soil were enhanced by 2.73-32.53% and 84.07-132.74%, respectively, with differing effects observed in cassava planting soil. Applications of oak leaves and coffee grounds inhibited soil invertase activity (by 28.78-61.95%), whereas soybean meal and peanut bran stimulated invertase activity (by 28.18-122.05%). Overall, these amendments reduced the bioavailability of HMs in the soil, with soybean meal demonstrating the most significant reduction in the effective state HMs content in sugarcane planting soil. The pot experiment results demonstrated that soybean meal and peanut bran, as soil amendments, improved soil quality, and promoted the growth of sugarcane and cassava. Additionally, they also increased the accumulation amount of Cd, Pb, and Zn in the plants, thereby enhancing the effectiveness of phytoremediation in HM-contaminated soils. Consequently, this study provides practical insights for soil safety and cleaner production in HMs contaminated karst farmland.

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农业废弃物改善了矿区土壤质量,提高了经济作物对重金属污染土壤的植物修复效率。
近年来,土壤重金属污染日益受到全球的关注。然而,关于农业废弃物作为农药污染土壤改良剂的相互作用的研究仍然很少,特别是关于利用经济作物进行土壤修复的研究。本研究通过盆栽试验研究了不同农业废弃物(豆粕、花生糠、橡树叶和咖啡渣)对经济作物(甘蔗和木薯)土壤性质、植物生长和HMs积累的影响。土壤pH值、土壤有机质(SOM)和阳离子交换容量(CEC)含量显著增加。此外,甘蔗种植土壤过氧化氢酶和脲酶活性分别提高了2.73 ~ 32.53%和84.07 ~ 132.74%,木薯种植土壤的效果不同。橡树叶和咖啡渣对土壤转化酶活性有抑制作用(28.78 ~ 61.95%),而豆粕和花生糠对土壤转化酶活性有刺激作用(28.18 ~ 122.05%)。总的来说,这些改良剂降低了土壤中HMs的生物有效性,其中豆粕对甘蔗种植土壤中有效状态HMs含量的降低最为显著。盆栽试验结果表明,豆粕和花生糠作为土壤改良剂,改善了土壤质量,促进了甘蔗和木薯的生长。此外,它们还增加了植物体内Cd、Pb和Zn的积累量,从而增强了植物对重金属污染土壤的修复效果。因此,本研究对土壤安全与土壤清洁生产具有重要的指导意义。
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来源期刊
Environmental Geochemistry and Health
Environmental Geochemistry and Health 环境科学-工程:环境
CiteScore
8.00
自引率
4.80%
发文量
279
审稿时长
4.2 months
期刊介绍: Environmental Geochemistry and Health publishes original research papers and review papers across the broad field of environmental geochemistry. Environmental geochemistry and health establishes and explains links between the natural or disturbed chemical composition of the earth’s surface and the health of plants, animals and people. Beneficial elements regulate or promote enzymatic and hormonal activity whereas other elements may be toxic. Bedrock geochemistry controls the composition of soil and hence that of water and vegetation. Environmental issues, such as pollution, arising from the extraction and use of mineral resources, are discussed. The effects of contaminants introduced into the earth’s geochemical systems are examined. Geochemical surveys of soil, water and plants show how major and trace elements are distributed geographically. Associated epidemiological studies reveal the possibility of causal links between the natural or disturbed geochemical environment and disease. Experimental research illuminates the nature or consequences of natural or disturbed geochemical processes. The journal particularly welcomes novel research linking environmental geochemistry and health issues on such topics as: heavy metals (including mercury), persistent organic pollutants (POPs), and mixed chemicals emitted through human activities, such as uncontrolled recycling of electronic-waste; waste recycling; surface-atmospheric interaction processes (natural and anthropogenic emissions, vertical transport, deposition, and physical-chemical interaction) of gases and aerosols; phytoremediation/restoration of contaminated sites; food contamination and safety; environmental effects of medicines; effects and toxicity of mixed pollutants; speciation of heavy metals/metalloids; effects of mining; disturbed geochemistry from human behavior, natural or man-made hazards; particle and nanoparticle toxicology; risk and the vulnerability of populations, etc.
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