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中国农学通报 ›› 2014, Vol. 30 ›› Issue (23): 171-176.doi: 10.11924/j.issn.1000-6850.2013-2582

所属专题: 小麦

• 资源 环境 生态 土壤 气象 • 上一篇    下一篇

燕麦与脱硫石膏对内蒙古河套地区盐渍化土壤肥力的影响

李谟志 徐彦虎 林启美 李贵桐 赵小蓉   

  • 收稿日期:2013-09-30 修回日期:2013-11-10 出版日期:2014-08-15 发布日期:2014-08-15
  • 基金资助:
    国家十二五科技支撑计划项目 “河套地区盐碱地耐盐植物高效利用与生态修复模式研究与示范” (2013BAC02B06)。

The Improvement of the Na2SO4 Saline Soil fertility with Oat and Desulfurization Gypsum in Hetao Inner Mongolia

  • Received:2013-09-30 Revised:2013-11-10 Online:2014-08-15 Published:2014-08-15

摘要: 内蒙古河套地区土壤盐渍化格外严重,盐渍化土壤改良是农业生产及生态环境建设面临的主要问题。生物与化学技术结合是盐渍化土壤改良发展方向之一,为了探讨燕麦和施用脱硫石膏结合对本地区盐渍化土壤肥力的影响,采用田间试验方法,设置种植燕麦和施用脱硫石膏(30 t/hm2)2个处理,在春季灌溉洗盐后采取土壤样品,在燕麦收获期采取植物和土壤样品,测定植物生物量和NPK含量,以及土壤pH、EC、盐分离子含量,有机质、全氮、有效氮磷钾等指标。结果表明:春季灌溉洗盐,能够大幅度降低土体各层土壤pH、EC和盐分离子含量,尤其是表层土壤降低的幅度更大,pH和EC分别降低了14%~17%和7%~69%,主要盐分离子Na+和SO42-分别降低了80%和39%,施用脱硫石膏对灌溉洗盐没有显著的影响。施用脱硫石膏对燕麦生长表现出一定的促进作用,但对其NPK营养有负面的影响。种植燕麦显著地降低了土壤盐分含量,但对土壤养分的影响比较小;同时施用脱硫石膏,对降低盐分没有显著的作用,但可提高有机质、有效氮磷钾含量,表现出一定的交互作用效应。

关键词: 效应模型, 效应模型

Abstract: Soil salinization is very serious in Hetao Inner Mongolia. The improvement of the saline soil becomes thus one of the most important issues for agriculture and environment. The combination of biological and chemical techniques has become a trend in improving saline soil. This paper is concerned on the improvement of saline soil fertility with combining biological and chemical techniques. The aim was to investigate the impacts of both desulfurization gypsum and oat on soil properties. The field experiment was set up in the sulfate saline soil at Hetao Inner Mongolia. The soil was amended with desulfurization gypsum (30 t/ hm2) and then grown with oat. The soil samples were collected following irrigation for washing salts. Both plant and soil samples were collected after harvesting oat. The oat plant was measured for dry matter and NPK contents. The soil samples were determined for pH, EC, salt ions, organic matter, total N and available NPK. The results showed that the irrigation in spring largely reduced the pH, electrical conductivity (EC) and salt ions in all the soil layers, more significant in surface. The values of pH and EC in surface soil had a reduction ranging from 14% to 17% and from 7% to 69% respectively. The main salt ions of Na+ and SO42- were decreased by 80% and 39%. The desulfurization gypsum had not significant impacts on the salt washing. However, it had a potential improvement in oat growth, but negative impacts on NPK concentration of oat plant. The oat cultivation reduced markedly salt content, but little improvement on soil nutrients. Surprisingly, oat cultivation together with desulfurization gypsum addition could significantly enhance soil organic matter, available NPK, but little impacts on the reduction of salt ions, which might indicate there was a synergistic effect in improving saline soil fertility.