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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Effects of biochar amendment on rapeseed and sweet potato yields and water stable aggregate in upland red soil
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Effects of biochar amendment on rapeseed and sweet potato yields and water stable aggregate in upland red soil

机译:生物炭改良剂对旱地红壤油菜和甘薯产量及水稳性团聚体的影响

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摘要

A field experiment was conducted to study the effect of biochar amendment (0, 2.5, 5, 10, 20, 30 and 40 t.ha(-1)) on rapeseed and sweet potato yields, aggregate particle size distribution, aggregate stability, soil organic carbon, total N content and C:N ratio in soil water stable aggregate under a rapeseed-sweet potato rotation system in upland red soil in Jiangxi Province of southern, China. The results were as follows: compared with control treatment (CK), when the amount of biochar was 40 t.ha(-1), rapeseed and sweet potato yields were increased by 36.02% and 53.77% respectively; the soil water stable aggregate (>0.25 mm) in the 0-15 cm soil layer had a remarkable increase than other treatments, especially the macroaggregate with particle size larger than >2 mm. In the rapeseed harvest season, the mean weight diameter of soil water stable aggregate was enhanced by 28.02% compared to CK with the application rate of biochar being 40 t.ha(-1). A significant increment in soil organic carbon, total N and C:N ratio was observed in the >2 mm, 2-0.5 mm, 0.5-0.25 mm and <0.25 mm aggregate fractions with respect to the maximum treatment. These results suggest that biochar's incorporation into upland red soil will increase crop productivity and improve soil structure
机译:进行了田间试验,研究了生物炭改良剂(0、2.5、5、10、20、30和40 t.ha(-1))对油菜和甘薯产量,总粒径分布,总稳定性,土壤的影响江南旱地红壤油菜-马铃薯轮作体系下土壤水分稳定团聚体中有机碳,总N含量和C:N比结果表明:与对照处理相比,当生物炭含量为40 t.ha(-1)时,油菜籽和甘薯的产量分别提高了36.02%和53.77%。 0-15 cm土层土壤水稳性团聚体(> 0.25 mm)比其他处理有显着增加,尤其是粒径大于> 2 mm的大团聚体。在油菜收获季节,土壤水稳定集料的平均重量直径比CK提高了28.02%,生物炭的施用量为40 t.ha(-1)。相对于最大处理量,在> 2 mm,2-0.5 mm,0.5-0.25 mm和<0.25 mm的骨料级分中,观察到土壤有机碳,总氮和碳氮比的显着增加。这些结果表明生物炭掺入旱地红壤将提高农作物的生产力并改善土壤结构

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