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Impacts of Biochar on Physical Properties and Erosion Potential of a Mudstone Slopeland Soil

机译:生物炭对泥岩坡地土壤物理性质和侵蚀潜力的影响

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Food demand and soil sustainability have become urgent issues recently because of the global climate changes. This study aims to evaluate the application of a biochar produced by rice hull, on changes of physiochemical characteristics and erosion potential of a degraded slopeland soil. Rice hull biochar pyrolized at 400°C was incorporated into the soil at rates of 2.5%, 5%, and 10% (w/w) and was incubated for 168 d in this study. The results indicated that biochar application reduced the Bd by 12% to 25% and the PR by 57% to 92% after incubation, compared with the control. Besides, porosity and aggregate size increased by 16% to 22% and by 0.59 to 0.94 mm, respectively. The results presented that available water contents significantly increased in the amended soils by 18% to 89% because of the obvious increase of micropores. The water conductivity of the biochar-amended soils was only found in 10% biochar treatment, which might result from significant increase of macropores and reduction of soil strength (Bd and PR). During a simulated rainfall event, soil loss contents significantly decreased by 35% to 90% in the biochar-amended soils. In conclusion, biochar application could availably raise soil quality and physical properties for tilth increasing in the degraded mudstone soil.
机译:由于全球气候变化,粮食需求和土壤可持续性最近成为迫切问题。本研究旨在评估稻壳生产的生物炭,对降解坡地土壤的生理学特性和侵蚀潜力的变化。将稻壳生物炭在400℃下达到400℃的速率,以2.5%,5%和10%(w / w)的速率掺入土壤中,并在本研究中孵育168 d。结果表明,与对照相比,Biochar应用在孵育后将BD减少12%至25%,PR在57%至92%。此外,孔隙率和聚集体尺寸分别增加了16%至22%,分别增加了0.59至0.94毫米。结果表明,由于微孔的显而易见,可用的水含量明显增加18%至89%。生物炭修正的土壤的水导率仅在10%的生物炭处理中发现,这可能是大量增加的大量增加和土壤强度的降低(BD和PR)。在模拟的降雨过程中,生物炭修正的土壤中土壤流失含量明显下降了35%至90%。总之,生物炭申请可用性地提高降解泥岩土壤的胎儿的土壤质量和物理性质。

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