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Biochar-enhanced composts reduce the potential leaching of nutrients and heavy metals and suppress plant-parasitic nematodes in excessively fertilized cucumber soils

机译:生物炭增强堆肥可降低营养成分和重金属的潜在浸出,并抑制过受受精黄瓜土壤中的植物 - 寄生线虫

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摘要

Abstract Excessive fertilization is a common agricultural practice that has largely reduced soil nutrient retention capacity and led to nutrient leaching in China. To reduce nutrient leaching, in this study, we evaluated the application of biochar, compost, and biochar-compost on soil properties, leaching water quality, and cucumber plant growth in soils with different nutrient levels. In general, the concentrations of nutrients and heavy metals in leaching water were higher under high-nutrient conditions than under low-nutrient conditions. Both biochar and compost efficiently enhanced soil cation exchange capacity (CEC), water holding capacity (WHC), and microbial biomass carbon (MBC), nitrogen (MBN), and phosphorus (MBP), reduced the potential leaching of nutrients and heavy metals, and improved plant growth. The efficiency of biochar and compost in soil CEC, WHC, MBC, MBN, and MBP and plant growth was enhanced when applied jointly. In addition, biochar and biochar - enhanced compost efficiently suppressed plant-parasitic nematode infestation in a soil with high levels of both N and P. Our results suggest that biochar - enhanced compost can reduce the potential environmental risks in excessively fertilized vegetable soils.
机译:摘要施肥过度施肥是一种常见的农业实践,在很大程度上降低了土壤养分保留能力,并导致了中国的营养浸出。为了减少营养浸出,在本研究中,我们评估了生物炭,堆肥和生物炭 - 堆肥在土壤性质,浸出水质和具有不同营养水平的土壤中的应用。通常,在高营养条件下,浸出水中营养物质和重金属的浓度高于低营养条件。生物炭和堆肥既有效增强土壤阳离子交换能力(CEC),水持量(WHC)和微生物生物量碳(MBC),氮(MBN)和磷(MBP),降低了营养素和重金属的潜在浸出,并改善植物生长。在联合施用时,增强了土壤CEC,WHC,MBC,MBN和MBP和MBP和植物生长中的生物炭和堆肥的效率。此外,生物炭和生物炭 - 增强堆肥有效地抑制了具有高水平的土壤中的植物寄生虫线虫侵染,我们的结果表明生物炭 - 增强堆肥可以降低过受受精的植物土壤中的潜在环境风险。

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