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The crucial factors of soil fertility and rapeseed yield - A five year field trial with biochar addition in upland red soil, China

机译:土壤肥力和油菜籽产量的关键因素-一项在中国旱地红壤中添加生物炭的五年田间试验

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Biochar has been used as an amendment to improve soil fertility and increase crop yield. However, the effects of biochar on soil properties and rapeseed yield in upland red soil have not been thoroughly investigated, and the factors crucial for rapeseed yield are not yet clear. A five-year field trial was conducted to investigate the effects the of biochar (biochar application rates of 0, 2.5, 5, 10, 20, 30, and 40 t ha(-1), respectively) on soil physicochemical and microbial properties as well as rapeseed yield in upland red soil in Jiangxi Province, China. Results showed that biochar can significantly increase soil pH, available phosphorus, organic carbon, Ks, and water retention, however, the influences of biochar on these indexes declined over time. Soil total nitrogen increased significantly when the dose of biochar exceeded 5 t ha(-1), and the content of total nitrogen in the 40 t ha(-1) biochar treatment increased each year. While the application of biochar gradually increased the contents of NH4+ -N, NO3- -N and enhanced the soil microorganism and enzymatic activities during the first three years, they had returned nearly to their starting values by the end of this study. Rapeseed yield and yield components were significantly improved relative to the control for all biochar amendments in the first year, but the rapeseed yield in all biochar treatments decreased steadily after 2012. According to the principal components analysis and path analysis, the most responsive parameters in the upland red soil were soil acidity and hydraulic properties, meanwhile, soil acidity and hydraulic properties had greater impacts on rapeseed yield than did other indexes. Taken together, these results suggest that biochar can significantly improve soil fertility and rapeseed yield, but the improvements are not permanent. Soil acidity and hydraulic properties were the crucial factors that determined soil fertility and rapeseed yield in upland red soil. (C) 2018 Elsevier B.V. All rights reserved.
机译:生物炭已被用作改良剂,以提高土壤肥力和增加农作物产量。然而,生物炭对旱地红壤土壤性质和油菜籽产量的影响尚未得到彻底研究,对油菜籽产量至关重要的因素尚不清楚。进行了为期五年的田间试验,以研究生物炭(分别为0、2.5、5、10、20、30和40 t ha(-1)的生物炭施用量)对土壤理化和微生物特性的影响。江西省旱地红壤的油菜籽产量以及油菜籽产量。结果表明,生物炭可以显着提高土壤的pH值,有效磷,有机碳,Ks和保水率,但是生物炭对这些指标的影响随着时间的推移而下降。当生物炭剂量超过5 t ha(-1)时,土壤总氮显着增加,而40 t ha(-1)生物炭处理中的总氮含量逐年增加。在开始的三年中,尽管使用生物炭逐渐增加了NH4 + -N,NO3- -N的含量并增强了土壤微生物和酶的活性,但到本研究结束时,它们已几乎恢复到其初始值。相较于所有生物炭改良剂的对照,油菜籽的产量和产量成分在第一年均得到了显着改善,但所有生物炭处理中的油菜籽产量在2012年后稳步下降。根据主成分分析和路径分析,旱地红壤具有土壤酸度和水力特性,同时土壤酸度和水力特性对油菜产量的影响大于其他指标。综上所述,这些结果表明生物炭可以显着改善土壤肥力和油菜籽产量,但这种改善并非永久性的。土壤酸度和水力特性是决定旱地红壤土壤肥力和油菜产量的关键因素。 (C)2018 Elsevier B.V.保留所有权利。

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