不同种植年限蔬菜大棚土壤特性的综合评估

The Comprehensive Evaluation of Soil Characteristics in Vegetable Greenhouses with Different Planting Years

  • 摘要:
    目的 西北旱区蔬菜大棚长期连作引起的土壤健康问题不容忽视。本研究阐明不同深度土壤质量随种植年限的演变规律,对综合评估温室种植的田间效应具有重要意义。
    方法 以甘肃武威市清源镇连续种植5年(Y1)、9年(Y2)和13年(Y3)的传统日光温室蔬菜大棚和大田玉米地(CK)为研究对象,分析了0 ~ 20 cm、20 ~ 40 cm、40 ~ 60 cm、60 ~ 80 cm、80 ~ 100 cm土壤物理、化学和生物特性的时空变化规律,采用模糊综合评价法量化了各种植年限的土壤健康指数。
    结果 与CK相比,大棚土壤的保水性增强,0 ~ 40 cm范围内土壤全氮、有效磷、速效钾和有机质含量显著增加,0 ~ 100 cm范围内土壤铵态氮残留量显著提高。连续种植9年的土壤容重和电导率最高、pH最低、在0 ~ 100 cm范围内土壤各养分含量最高,但土壤酶活性明显下降。综合评价结果表明,种植9年虽然对0 ~ 100 cm土壤健康能维持较好水平,但该年限0 ~ 80 cm和0 ~ 60 cm范围内土壤健康指数相比5年大幅下降。
    结论 蔬菜大棚连作因灌溉施肥制度的改变在短期内土壤性质优于大田,但有盐渍化和酸化的潜在风险。连作10年左右是土壤性质转变的临界点,通过深翻措施能够缓解对土壤物理和化学性质的不利影响,但对生物学性质的改良有限。

     

    Abstract:
    Object  Soil health issues caused by long-term continuous cropping in vegetable greenhouses in northwest arid regions could not be ignored. This study aimed to clarify the evolution patterns of soil quality at different depths with planting years, which is of great significance for the comprehensive evaluation of the field effects of greenhouse planting.
    Method Traditional solar vegetable greenhouses in Qingyuan town, Wuwei, Gansu Province, which have been continuously planted for 5 years (Y1), 9 years (Y2), and 13 years (Y3), as well as maize fields (CK) were selected as the research objects. The spatio-temporal changes of soil physical, chemical, and biological characteristics of soil layers at 0 ~ 20, 20 ~ 40, 40 ~ 60, 60 ~ 80, and 80 ~ 100 cm depths were analyzed. The soil health index was quantified by fuzzy comprehensive evaluation method.
    Result Compared with CK, the water retention of greenhouse soil was enhanced, the contents of total nitrogen, available phosphorus, available potassium, and organic matter in the soil within the range of 0 ~ 40 cm were significantly increased. The residual amount of ammonium nitrogen in the soil within the range of 0 ~ 100 cm also increased significantly. The soil bulk density and electrical conductivity of Y2 were the highest, while the pH was the lowest. The soil nutrient contents within the range of 0 ~ 100 cm were the highest in Y2, but the soil enzyme activity decreased significantly. The comprehensive evaluation results showed that the soil health maintained well in the soil range of 0 ~ 100 cm after 9 years of planting, but the soil health index decreased significantly in the soil within the range of 0 ~ 80 cm or 0 ~ 60 cm compared with that of 5 years.
    Conclusion Soil properties of vegetable greenhouse continuous cropping are better than those of field soil in short term due to the change of irrigation and fertilization management, but there are potential risks of salinization and acidification. About 10-year continuous cropping is the critical point for the transformation of soil properties. The adverse effects of physical and chemical indices can be alleviated by deep tillage measures, but the improvement of soil biological indices was limited.

     

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