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生态学杂志 ›› 2012, Vol. 31 ›› Issue (08): 2050-2058.

• 研究报告 • 上一篇    下一篇

控释肥硫膜降解对微域土壤性质的影响

隋常玲1,2,张民1   

  1. 1土肥资源高效利用国家工程实验室,国家缓控释肥工程技术研究中心, 山东农业大学资源与环境学院, 山东泰安 271018; 2遵义师范学院, 贵州遵义 563002)
  • 出版日期:2012-08-10 发布日期:2012-08-10

Effects of sulfur-coating residual degradation of controlled-release fertilizers on the soil properties of fertilized microsite.

SUI Chang-ling1,2, ZHANG Min1**   

  1. (1National Engineering Laboratory for Efficient Utilization of Soil and Fertilizer Resources, National Engineering & Technology Research Center for Slow and Controlled Release Fertilizers, College of Environment and Resource, Shandong Agricultural University, Tai’an 271018, Shandong, China;
    2Department of Biology; Zunyi Normal College, Zunyi 563003, Guizhou, China)
  • Online:2012-08-10 Published:2012-08-10

摘要: 硫包膜控释肥在农业上的大面积应用,引起了硫膜降解产物对土壤环境影响的广泛关注。选用山东有代表性的耕作土壤棕壤和潮土,设置处理包括硫加树脂残膜、硫残膜、硫磺片,采用尼龙滤网分隔法获取受控释肥硫膜影响较强的微域土壤,对比研究了硫膜对微域和非微域土壤某些化学性质的影响。结果表明,在棕壤上施用各含硫材料会显著影响微域土壤的pH值,微域各含硫材料的氧化高峰期出现在60 d左右。硫膜降解对潮土pH值影响与棕壤相比不显著,但肥际微域与非微域相比下降明显。硫残膜对土壤中的微量元素能起到一定的活化作用,尤其是对潮土肥际微域有效铁的影响最为显著,培养结束时硫加树脂残膜处理是空白处理的6.58倍。潮土中施用含硫包膜控释肥可活化土壤养分,从而提高土壤中有效硫和有效磷的含量。控释肥硫膜降解对土壤性质影响显著的区域是在硫膜≤5 mm范围内的土壤,而对非肥际微域土壤的化学性质无显著影响。

关键词: 大兴安岭, 落叶松, 穿透雨特征

Abstract: With the application of sulfur-coated controlled-release fertilizers (CRFs) in agriculture, much attention has been paid to the effects of the degraded CRFs sulfur coatings on soil environment. In this study, two types of representative agricultural soils in Shandong Province, i.e., Argosols and Cambosols, and three types of CRFs sulfurcoating residuals including polymersulfur residual, sulfur residual, and sulphur slice were selected to study the effects of the residuals on the soil properties of fertilized microsite and non-microsite separated by nylon net. In Agrosols, the residuals had significant effects on the fertilized microsite soil pH. In Cambosols, the residuals had little effects on the soil pH of fertilized microsite, but the soil pH of the microsite had more obvious decrease than that of the non-microsite. Sulfurcoating residuals had definite activation effects on soil microelements, especially on the available Fe in Cambosols, with the available Fe content being 6.58 times of the control for polymer-sulfur residual by the end of the experiment. Applying sulfurcoated CRFs in the Cambosols could activate soil nutrients, and increase the available sulfur and phosphorus contents. The prominent effect of the residuals on soil properties was observed within the microsite 5 mm around the sulfurcoatings.

Key words: Great Xing’an Mountains, Larix gmelinii, throughfall characteristics.