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    不同增氧措施对牛粪有机肥矿化及烟叶生长的影响

    Effects of Cow Manure Organic Fertilizer Combined with Oxygenation on Soil Organic Matter Transformation Efficiency and Tobacco Yield and Quality

    • 摘要: 通过增氧措施提升有机肥矿化速率,满足烤烟生长发育的需肥规律。本研究从2种物理增氧(打孔增氧与泵增氧)与3种化学增氧(过氧化钙、过氧化氢和过碳酸钠)中筛选出最利于土壤酶活性和烟株生长的增氧方式,在此基础上明确最佳增氧时间和增氧剂浓度。开展不同增氧方式田间试验,从田间产量、产值、有机肥矿化率及土壤微生物群落结构等方面评价增氧效果。结果表明:(1)综合烟株长势、农艺性状和土壤生态多样性等指标发现,化学增氧和物理增氧方式分别以过氧化钙增氧和泵增氧效果最佳。(2)牛粪有机肥增氧时间以12 h/d最优,过氧化钙用量以40 g/株为最优,二者根部干质量分别为对照的1.92倍和1.24倍。(3)田间应用牛粪有机肥联合过氧化钙增氧,遵义、毕节和黔西南的烟叶产值分别增加10.47%、12.48%和18.82%。过氧化钙增氧烟叶化学成分综合评分分别增加13.97、3.38和19.95分,工业可用性提升4.5个百分点。(4)与对照相比,打孔增氧使有机肥氮矿化率增加31.6%~57.1%,过氧化钙处理有机肥氮矿化率增加95.0%~138.9%。综上所述,打孔增氧和过氧化钙增氧可应用于田间生产,以提高碳氮转化效率,改善土壤微生物功能多样性,提升烟叶产量和品质。

       

      Abstract: It is of great significance to increase the mineralization rate of organic fertilizer through oxygen addition measures to meet the fertilizer demand law of flue-cured tobacco growth and development. In this study, the most conducive oxygen addition method including two types of physical oxygenation and three types of chemical oxygenation for soil activity and tobacco plant growth was selected, and the optimal oxygen concentration and time were determined on this basis. Field experiments with different oxygen addition methods were carried out, and the effects were evaluated by field yield, yield value, organic fertilizer mineralization rate and soil microbial community structure. Our results showed that: (1) based on the indicators of tobacco plant growth, agronomic traits and soil ecological diversity, it was found that calcium peroxide had the best effects in chemical oxygen addition while pump oxygenation was best in physical oxygen addition; (2) The 12 h/d oxygenation time and 40 g/plant calcium peroxide of manure were the best, and the root dry weight increased by 1.92 times and 1.24 times compared with the control, respectively; (3) The output value with field application of organic fertilizer combined with calcium peroxide increased by 10.47%, 12.48% and 18.82% in Zunyi, Bijie and Qianxinan respectively. Tobacco quality in calcium peroxide oxygenation treatments increased by 13.97, 3.38 and 19.95 points respectively, and the Industrial utilization increased by 4.5 percentage points compared with the control; (4) Compared with control, the mineralization rate of nitrogen with perforated oxygenation increased by 31.6%~57.1%, while that with calcium peroxide increased by 95.0%~138.9%. In conclusion, perforated oxygenation and calcium peroxide addition can be applied to field production, which improves carbon and nitrogen conversion efficiency, soil microbial functional diversity as well as tobacco yield and quality, thus laying a foundation for the upgrading application of organic fertilizer in flue-cured tobacco.

       

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