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中国农学通报 ›› 2018, Vol. 34 ›› Issue (1): 148-153.doi: 10.11924/j.issn.1000-6850.casb17070131

所属专题: 水稻 园艺

• 农业科技信息 • 上一篇    下一篇

洱海流域稻蒜轮作系统小农与规模经营户化肥N投入及成本效益研究

耿飙,罗良国   

  1. 中国农科院环发所,中国农业科学院环境和可持续发展研究所
  • 收稿日期:2017-07-27 修回日期:2017-12-11 接受日期:2017-11-24 出版日期:2018-01-12 发布日期:2018-01-12
  • 通讯作者: 罗良国
  • 基金资助:
    “十二五”国家水专项“洱海流域农业面源污染综合防控体系研究与示范课题”(2014ZX07105-001);中国农业科学院农业清洁流域创新项 目“农业清洁流域环境友好型技术实践补贴机制政策研究课题”(CAASIP-001)。

Chemical Fertilizer N Input and Cost-benefit Under Different Farmer Scales of Rice-garlic Rotation System in the Erhai Lake Basin

罗良国   

  • Received:2017-07-27 Revised:2017-12-11 Accepted:2017-11-24 Online:2018-01-12 Published:2018-01-12

摘要: 稻-蒜轮作模式下不合理施氮肥所引起的N素流失是造成洱海流域污染的主要原因,而小农普遍化肥N投入过量。鼓励适度规模经营和转变生产方式已成为突破农业可持续发展瓶颈的发力点,越来越受到大家的关注和重视。笔者通过入户调研方式,考察了洱海流域水稻、大蒜种植散户和规模化经营农业组织在稻-蒜水旱轮作模式下生产成本效益与化肥N养分投入情况。结果表明:洱海流域适度规模化的农业经营,不仅大大降低了生产中化肥N养分的投入,从源头上预防农田面源污染,而且转变农业生产方式,积极采用环境友好型种植经营模式,如有机稻栽植、稻-鱼生态耕作模式和改变传统施肥方式,实现了面源污染风险防控,同时获得更高的收益,凸显了规模经营的优势。洱海流域规模化经营农业组织发展相对慢且数量少,需要各级政府全方位给予政策扶持。

Abstract: The loss of nitrogen induced by irrational nitrogen application in the rice-garlic rotation system is the important cause of the nonpoint source pollution in the Erhai lake basin, which the small farmers couldn’t extricated themselves due to the excessive N input. Encouraging agricultural moderate scale operation and the shifting production mode are the breakthrough of bottleneck of agricultural sustainable development, which has been getting more and more attention. In this paper, the cost-benefit and inorganic nitrogen input under rice-garlic rotation system from different scale farmers in the Erhai lake basin were examined through the face to face survey way. The results indicated that agricultural scale-moderated management organization not only realized source control of agricultural pollution by reducing inorganic nitrogen input, but also obtained high economic profit and nonpoint source pollution mitigation by transferring agricultural production mode with the adoption of environmental-friendly technology, such as organic rice planting mode, rice-fish ecological cultivation mode and traditional fertilization innovation. However, the number of agricultural scale management organizations in the Erhai lake basin grows slowly and needs comprehensive policy support from governments at all levels.