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有机肥-膨润土-腐植酸复合调理剂对黄壤土吸附氮素的影响

Effects of organic fertilizer-bentonite-humic acid composite conditioner on nitrogen adsorption of tobacco-growing yellow soil

  • 摘要: 为了有效提高黄壤烟田土壤对氮素的吸持能力,降低氮素流失对环境造成的影响,通过土壤培养试验和等温吸附试验研究了商品有机肥-膨润土-腐植酸(HA)配制成的土壤调理剂对黄壤铵态氮(NH4+-N)吸持特性的影响。结果表明,在本试验条件下,土壤调理剂对土壤NH4+-N吸附的影响随着培养时间的延长表现出逐渐增加的趋势,土壤培养60 d氮素吸附量达到最高值546.34 mg/kg。各处理NH4+-N的等温吸附曲线可以用Langmuir方程很好地拟合。随着土壤调理剂用量的增加,土壤NH4+-N最大吸附量Qmax也逐渐提高。土壤调理剂中腐植酸的添加比例可以调节黄壤对NH4+-N的吸持能力,调理剂中腐植酸添加量为20%时,黄壤对NH4+-N的吸附容量和强度指标均显著增加。在烤烟生产上可选择有机肥-膨润土-腐植酸三者配比为6:2:2的土壤调理剂,且根据不同烟田土壤肥力状况确定具体施用量。土壤调理剂能有效地调控黄壤氮素容量和强度指标,对黄壤NH4+-N吸持力具有明显的促进作用,在生产上可保证烤烟前期生长对氮素营养的需求,同时降低氮素的环境风险。

     

    Abstract: To effectively improve the ability of nitrogen uptake and to decrease the loss of nitrogen in a tobacco field, the effects of a composite soil conditioner consisting of an organic fertilizer, bentonite and humic acid (HA)on NH4+-N adsorption properties of yellow soil were studied with a soil culture experiment and an isothermal adsorption experiment. The results showed that in this experiment, the effects of soil conditioner on NH4+-N uptake enhanced gradually with the proceeding of culture time and peaked at 546.34 mg/kg on the 60th day. The isothermal adsorption curves of NH4+-N in different treatments could be well fitted by Langmuir equation. With the increase of soil conditioner rate, the maximum adsorption capacity(Qmax)of soil for NH4+-N raised. The ratio of humic acid in soil conditioner influenced the adsorption of yellow soil for NH4+-N. When the ratio of humic acid in soil conditioner was 20%, the capacity and intensity index of NH4+-N adsorption of yellow soil increased significantly. For flue-cured tobacco production, the mixture of organic fertilizer, bentonite and humic acid at a ratio of 6:2:2 could be used as soil conditioner, and its application amount should be determined according to the soil fertility of tobacco fields. In conclusion, the composite soil conditioner consisting of organic fertilizer, bentonite and humic acid can effectively regulate the nitrogen content and intensity index of yellow soil and significantly increase the content of NH4+-N in yellow soil, which ensures the nitrogen need of flue-cured tobacco at early growing stage and reduces the environment risk of nitrogen.

     

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