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Effects of Full Straw Incorporation on Soil Fertility and Crop Yield in Rice-Wheat Rotation for Silty Clay Loamy Cropland

机译:稻麦轮作粉质粘土壤土耕地全秸秆还田对土壤肥力和作物产量的影响

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This 2-year field experiment investigated the effects of full straw incorporation on soil fertility and crop yield in a rice-wheat ( Oryza sativa L.– Triticum aestivum L.) rotation on sandy, loamy soil. Two treatments were tested: (i) straw removal (CK) and (ii) straw incorporation (STR). The STR significantly increased the wheat yield by an average of 58% compared with CK; however, no significant difference was found in the rice yield. Soil available nitrogen, phosphorus, and potassium in the 0–20 cm soil layer increased by more than 15% with STR compared to CK. The soil cation exchange capacity and organic carbon in the 0–20 cm soil layer increased by 8% and 22%, for STR compared to CK, respectively. Straw incorporation significantly elevated the soil saturated water content but decreased the soil bulk density compared with CK. Soil aggregates 2 mm were significantly increased after straw return. STR also notably increased the soil urease, invertase, and catalase activities in the 0–15 cm soil layer by 11.4%, 41.0%, and 12.9%, respectively, and the soil microbial carbon and nitrogen contents in the 0–20 cm soil layer by 59% and 54%. Therefore, full straw incorporation could significantly improve soil fertility and maintain crop yields for the study area.
机译:这项为期两年的田间试验研究了在砂质壤土上的稻麦轮作中,完全秸秆还田对土壤肥力和作物产量的影响。测试了两种处理:(i)去除秸秆(CK)和(ii)引入秸秆(STR)。与CK相比,STR显着提高了小麦平均产量58%。但是,水稻产量没有显着差异。与CK相比,STR在0-20 cm土层中的土壤有效氮,磷和钾增加了15%以上。与CK相比,STR的0-20 cm土壤层中的土壤阳离子交换容量和有机碳分别增加了8%和22%。与CK相比,秸秆还田显着提高了土壤饱和水含量,但降低了土壤容重。秸秆还田后,> 2 mm的土壤团聚体显着增加。 STR还显着增加了0-15 cm土壤层中土壤脲酶,转化酶和过氧化氢酶的活性,分别增加了11.4%,41.0%和12.9%,以及0-20 cm土壤层中土壤微生物的碳和氮含量分别减少了59%和54%。因此,完整的秸秆还田可以显着改善土壤肥力并保持研究区域的农作物产量。

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