[Effects of food waste biogas residue composting on soil aggregates and its organic matter content in relocation site].

Q3 Environmental Science 应用生态学报 Pub Date : 2024-05-01 DOI:10.13287/j.1001-9332.202405.014
Hai-Bing Wu, Yu-Hui Niu, Jing Liang
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Abstract

Understanding the effects of food waste biogas residue composting and chemical amendments on soil aggregates composition of different particle sizes, stability, and organic matter distribution in relocation sites could provide primary data for improving soil quality and land utilization of food waste biogas residue composting. We analyzed the characteristics of soil aggregates distribution, stability of aggregates, and organic matter content in different particle sizes under treatments with different application amounts of food waste biogas residue composting, chemical amendments (β-cyclodextrin, calcium sulfate and ferric oxide were mixed at a mass ratio of 1:1:1), and control (100% soil). The results showed that 20% (soil: biogas residue composting=8:2) and 30% (soil: biogas residue composting =7:3) biogas residue composting significantly decreased the micro-aggregates content with the particle size of <0.106 mm and increased the large aggregates content with the particle size of 0.5-1.0 mm. All treatments significantly increased large aggregates content with the particle size of ≥2.0 mm, soil aggregate structure content, and mean weight diameter, but reduced the percentage of aggregate destruction. Among all the treatments, the effect of mixes application of 20% biogas residue composting and chemical amendments was the best. Biogas residue composting treatments significantly affected the distribution of organic matter in soil aggregates, with the strongest effect under 30% biogas residue composting treatment. Biogas residue composting treatments significantly increased soil organic matter content in all aggregates, with the maximal increase of organic matter content in soil micro-aggregates with the particle size of 0.106-0.25 mm. In conclusion, biogas residue composting could increase organic matter content of soil aggregates in different particle sizes, promote the formation of large soil aggregates, and improve the stability of aggregation. Specifically, the mixed application of biogas residue composting and chemical amendments performed better on soil improvement in relocation site.

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[厨余沼渣堆肥对迁移地土壤团聚体及其有机质含量的影响]。
了解餐厨垃圾沼渣堆肥和化学添加剂对迁移地不同粒径土壤团聚体组成、稳定性和有机质分布的影响,可为改善土壤质量和提高餐厨垃圾沼渣堆肥的土地利用率提供原始数据。我们分析了不同施用量的餐厨垃圾沼气渣堆肥、化学添加剂(β-环糊精、硫酸钙和氧化铁按 1:1:1 的质量比混合)和对照(100% 土壤)处理下不同粒径土壤团聚体分布特征、团聚体稳定性和有机质含量。结果表明,20%(土壤:沼气渣堆肥=8:2)和 30%(土壤:沼气渣堆肥=7:3)的沼气渣堆肥显著降低了微团聚体的含量,微团聚体的粒径分别为 0.5 毫米和 0.5 毫米。
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来源期刊
应用生态学报
应用生态学报 Environmental Science-Ecology
CiteScore
2.50
自引率
0.00%
发文量
11393
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