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生物固体产品和生物炭的共同施用对两种粗质地草地土壤的微生物氮循环基因和氮淋失潜力有影响。

Co-application of a biosolids product and biochar to two coarse-textured pasture soils influenced microbial N cycling genes and potential for N leaching.

机构信息

UWA School of Agriculture and Environment (M079), The University of Western Australia, 35 Stirling Highway, Perth, WA, 6009, Australia.

UWA Institute of Agriculture (M082), The University of Western Australia, 35 Stirling Highway, Perth, WA, 6009, Australia.

出版信息

Sci Rep. 2021 Jan 13;11(1):955. doi: 10.1038/s41598-020-78843-9.

Abstract

Co-application of biochar and biosolids to soil has potential to mitigate N leaching due to physical and chemical properties of biochar. Changes in N cycling pathways in soil induced by co-application of biological amendments could further mitigate N loss, but this is largely unexplored. The aim of this study was to determine whether co-application of a biochar and a modified biosolids product to three pasture soils differing in texture could alter the relative abundance of N cycling genes in soil sown with subterranean clover. The biosolids product contained lime and clay and increased subterranean clover shoot biomass in parallel with increases in soil pH and soil nitrate. Its co-application with biochar similarly increased plant growth and soil pH with a marked reduction in nitrate in two coarse textured soils but not in a clayey soil. While application of the biosolids product altered in silico predicted N cycling functional genes, there was no additional change when applied to soil in combination with biochar. This supports the conclusion that co-application of the biochar and biosolids product used here has potential to mitigate loss of N in coarse textured soils due to N adsoption by the biochar and independently of microbial N pathways.

摘要

生物炭和生物污泥同时施用于土壤,由于生物炭的物理和化学性质,有可能减少氮淋失。生物添加剂同时施用在土壤中引起的氮循环途径的变化可能进一步减少氮损失,但这在很大程度上尚未得到探索。本研究的目的是确定将生物炭和改良的生物污泥产品同时施用于三种质地不同的牧草地土壤是否会改变接种三叶草后土壤中氮循环基因的相对丰度。生物污泥产品中含有石灰和粘土,与土壤 pH 值和土壤硝酸盐的增加平行,增加了三叶草地上部生物量。其与生物炭的同时施用同样增加了植物生长和土壤 pH 值,在两种粗质地土壤中显著降低了硝酸盐,但在粘性土壤中没有。虽然生物污泥产品的应用改变了预测的氮循环功能基因,但当与生物炭一起应用于土壤时,并没有额外的变化。这支持了这样的结论,即这里使用的生物炭和生物污泥产品的同时施用有可能减少由于生物炭对氮的吸附以及独立于微生物氮途径而导致的粗质地土壤中氮的损失。

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