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Effect of biodegradable film mulching on crop yield, soil microbial and enzymatic activities, and optimal levels of irrigation and nitrogen fertilizer for the Zea mays crops in arid region

机译:生物降解膜覆盖对农作物产量,土壤微生物和酶活性的影响,ZEA中的灌溉和氮肥灌溉水平

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摘要

Biodegradable film mulching (BM) is considered as the best alternative to plastic film mulching (PM) since it can prevent pollution caused due to plastic residues. However, the differences in soil microbial biomass and enzymatic activities between BM and PM, especially for different soil water and nitrogen contents remain ambiguous. In this study, the effects of BM, PM, and no film mulching (NM) on soil microbial biomass C (C_(mic)), N (N_(mic)), soil enzymes, and soil C/N ratio in a cornfield were evaluated using experimental data from 2018 and 2019. Additionally, different irrigation depths (30 mm, 22.5 mm, and 15 mm) and N-fertilizer application levels (280 kg ha~(-1) and 210 kg ha~(-1)) were used in BM. The experimental results demonstrated no apparent differences between the C_(mic), N_(miC), and soil enzymes between BM and PM in the early stage (elongation stage), but these values under BM were significantly lower than that of PM in the middle stage of crop growth (tasseling and filling stages). Soil sucrase, catalase, and urease under PM were increased by 20.2%, 0.6%. and 12.0%, respectively, compared to BM. The analysis of C_(mic), N_(mic), soil enzymes, and crop yield under different irrigation and N-fertilizer application levels demonstrated the preponderance of BM22.5. 280. showing the highest yield of 14,110.1 kg ha~(-1) and NUE of 61.7.
机译:可生物降解的薄膜覆盖(BM)被认为是塑料薄膜覆盖(PM)的最佳替代方案,因为它可以防止由于塑料残留物引起的污染。然而,BM和PM之间土壤微生物生物质和酶活性的差异,特别是对于不同土壤水和氮含量仍然模糊。在该研究中,BM,PM和NO膜覆盖(NM)对玉米田土壤微生物生物量C(C_(MIC)),N(N_(MIC)),土壤酶和土壤C / N比的影响通过2018年和2019年的实验数据进行评估。另外,不同的灌溉深度(30mm,22.5毫米和15毫米)和N-肥料施用水平(280 kg ha〜(-1)和210kg ha〜(-1) )用于BM。实验结果表明,在早期(伸长阶段)中,BM和PM之间的C_(MIC),N_(MIC)和土壤酶之间没有明显差异,但是BM下的这些值显着低于中间PM的值作物生长阶段(流苏和填充阶段)。 PM下PM下的土壤蔗糖酶,过氧化氢酶和脲酶增加了20.2%,0.6%。与BM相比,分别为12.0%。不同灌溉和N-肥施用水平下C_(MIC),N_(MIC),土壤酶和作物产量的分析证明了BM22.5的优势。 280.显示最高产量为14,110.1公斤〜(-1)和NUE为61.7。

著录项

  • 来源
    《Science of the total environment》 |2021年第1期|145970.1-145970.11|共11页
  • 作者单位

    College of Water Conservancy and Civil Engineering Inner Mongolia Agricultural University. Huhhot 010018 China;

    College of Water Conservancy and Civil Engineering Inner Mongolia Agricultural University. Huhhot 010018 China;

    College of Water Conservancy and Civil Engineering Inner Mongolia Agricultural University. Huhhot 010018 China;

    College of Water Conservancy and Civil Engineering Inner Mongolia Agricultural University. Huhhot 010018 China;

    College of Water Conservancy and Civil Engineering Inner Mongolia Agricultural University. Huhhot 010018 China;

    College of Water Conservancy and Civil Engineering Inner Mongolia Agricultural University. Huhhot 010018 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Soil microbial biomass; Soil enzyme; Biodegradable film mulching; Biomass turnover time; Corn yield; Nitrogen use efficiency;

    机译:土壤微生物法;土壤酶;可生物降解的薄膜覆盖;生物质周转时间;玉米产量;氮气使用效率;
  • 入库时间 2022-08-19 02:11:34

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