覆膜方式与灌溉定额对甜菜田土壤水热状况与生长发育的影响

Effects of mulching method and irrigation quota on soil hydrothermal characteristics and growth of sugar beet

  • 摘要:
    目的 探究覆膜方式与灌溉定额对甜菜土壤耕层温度、水分及生长发育的影响,以期为甜菜生产中水资源的高效利用提供科学依据。
    方法 采用裂区试验设计,以覆膜方式为主区,设不覆膜(N)、覆普通聚乙烯地膜(P)、生物降解膜(B)3个处理。灌溉定额为副区,设置全生育期5700 m3/hm2(W1)为最高处理,再分别设置4950(W2)、4200 m3/hm2(W3)灌溉定额处理,分析覆膜方式与灌溉定额对土壤水分、温度、甜菜生长发育与产量、品质的影响。
    结果 覆生物降解膜与5700 m3/hm2灌溉定额互作,能有效提高土壤耕层温度、增加土壤含水量,促进甜菜功能叶叶面积、株高、叶片数的增加与干物质的积累。BW1处理能更好地满足甜菜各生育时期的水分需求,产量达到133196 kg/hm2,高于其他处理,含糖品质最优。
    结论 本研究中覆生物降解膜与5700 m3/hm2灌溉定额组合(BW1)土壤水热状况均优于其他处理,能够促进甜菜生长发育、提升甜菜产量与含糖品质,同时还能有效降低残膜污染,适宜在新疆北疆应用推广。

     

    Abstract:
    Objective This study aims to investigate the effects of different mulching methods and irrigation quotas on the temperature, moisture, and growth of sugar beet in the plough layer. The goal is to provide a scientific basis for the efficient utilization of water resources in sugar beet production.
    Methods A split-plot experimental design was adopted. The main plots consisted of three mulching methods: no mulching (N), conventional polyethylene film mulching (P), and biodegradable film mulching (B). The sub-plots consisted of three irrigation quotas: 5 700 m3/hm2 (W1, the highest level throughout the whole growth period), 4 950 m3/hm2 (W2), and 4 200 m3/hm2 (W3). The study analyzed the impacts of these factors on soil moisture, temperature, as well as the growth, development, yield, and quality of sugar beets.
    Results The interaction between biodegradable film mulching and the 5 700 m3/hm2 irrigation quota effectively increased the temperature and moisture content of the plough layer. It also promoted the increase of functional leaf area, plant height, leaf number, and dry matter accumulation in sugar beets. The BW1 treatment better met the water demands of sugar beets at various growth stages, achieving a yield of 133,196 kg/hm2, which was higher than other treatments, along with the optimal sugar content and quality.
    Conclusion In this study, the combination of biodegradable film mulching and a 5 700 m3/hm2 irrigation quota (BW1) resulted in superior soil hydrothermal conditions compared to other treatments. This combination not only promotes the growth, yield, and sugar quality of sugar beets but also effectively reduces residual film pollution, making it suitable for application and promotion in Northern Xinjiang.

     

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