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猪粪生物炭对壤土物理性质和微生物活性的影响

The Impact of Swine Manure Biochar on the Physical Properties and Microbial Activity of Loamy Soils.

作者信息

Ayaz Muhammad, Feizienė Dalia, Feiza Virginijus, Tilvikienė Vita, Baltrėnaitė-Gedienė Edita, Khan Attaullah

机构信息

Lithuanian Research Center for Agriculture and Forestry, Institute of Agriculture, Instituto al. 1, LT-58344 Kėdainiai, Lithuania.

Institute of Environmental Protection, Vilnius Gediminas Technical University, LT-10223 Vilnius, Lithuania.

出版信息

Plants (Basel). 2022 Jun 29;11(13):1729. doi: 10.3390/plants11131729.

Abstract

Biochar has been proven to influence soil hydro-physical properties, as well as the abundance and diversity of microbial communities. However, the relationship between the hydro-physical properties of soils and the diversity of microbial communities is not well studied in the context of biochar application. The soil analyzed in this study was collected from an ongoing field experiment (2019-2024) with six treatments and three replications each of biochar (B1 = 25 t·ha and B0 = no biochar) and nitrogen fertilizer (N1 = 160, N2 = 120 kg·ha, and N0 = no fertilizer). The results show that biochar treatments (B1N0, B1N1, and B1N2) significantly improved the soil bulk density and total soil porosity at different depths. The B1N1 treatment substantially enhanced the volumetric water content (VMC) by 5-7% at -4 to -100 hPa suction at 5-10 cm depth. All three biochar treatments strengthened macropores by 33%, 37%, and 41%, respectively, at 5-10 cm depth and by 40%, 45%, and 54%, respectively, at 15-20 cm depth. However, biochar application significantly lowered hydraulic conductivity (HC) and enhanced carbon source utilization and soil indices at different hours. Additionally, a positive correlation was recorded among carbon sources, indices, and soil hydro-physical properties under biochar applications. We can summarize that biochar has the potential to improve soil hydro-physical properties and soil carbon source utilization; these changes tend to elevate fertility and the sustainability of Cambisol.

摘要

生物炭已被证明会影响土壤的水文物理性质以及微生物群落的丰度和多样性。然而,在生物炭应用的背景下,土壤水文物理性质与微生物群落多样性之间的关系尚未得到充分研究。本研究中分析的土壤取自一项正在进行的田间试验(2019 - 2024年),该试验有六种处理方式,每种处理方式下生物炭(B1 = 25吨·公顷,B0 = 无生物炭)和氮肥(N1 = 160,N2 = 120千克·公顷,N0 = 无肥料)各有三个重复。结果表明,生物炭处理(B1N0、B1N1和B1N2)在不同深度显著改善了土壤容重和总孔隙度。B1N1处理在5 - 10厘米深度处,在-4至-100 hPa吸力下,显著提高了体积含水量(VMC)5 - 7%。所有三种生物炭处理在5 - 10厘米深度处分别使大孔隙增加了33%、37%和41%,在15 - 20厘米深度处分别增加了40%、45%和54%。然而,生物炭的施用显著降低了水力传导率(HC),并在不同时间增强了碳源利用和土壤指标。此外,在生物炭施用条件下,碳源、指标和土壤水文物理性质之间存在正相关关系。我们可以总结出,生物炭有潜力改善土壤水文物理性质和土壤碳源利用;这些变化往往会提高褐土的肥力和可持续性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ac5c/9269350/c5385d3cd515/plants-11-01729-g001.jpg

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