1. 中国科学院 水利部 水土保持研究所, 陕西 杨凌,712100
2. 深圳市微润灌溉技术有限公司,广东,深圳,518000
纸质出版:2017
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邹小阳, 全天惠, 周梦娜, 等. 微润灌溉技术研究进展及展望[J]. 水土保持通报, 2017,37(4):150-155.
ZOU Xiaoyang, QUAN Tianhui, ZHOU Mengna, et al. Progress and Prospects of Moistube Irrigation Technology Research[J]. Bulletin of Soiland Water Conservation, 2017, 37(4): 150-155.
邹小阳, 全天惠, 周梦娜, 等. 微润灌溉技术研究进展及展望[J]. 水土保持通报, 2017,37(4):150-155. DOI: 10.13961/j.cnki.stbctb.2017.04.025.
ZOU Xiaoyang, QUAN Tianhui, ZHOU Mengna, et al. Progress and Prospects of Moistube Irrigation Technology Research[J]. Bulletin of Soiland Water Conservation, 2017, 37(4): 150-155. DOI: 10.13961/j.cnki.stbctb.2017.04.025.
[目的]对近年来国内外关于微润灌溉技术的研究成果进行综述,探讨微润灌溉的未来研究方向,为微润灌溉制度和灌溉参数的制定及该节水技术的推广提供依据。[方法]总结微润灌溉的发展历程和应用现状,微润灌溉条件下土壤水分运动规律,微润灌溉对作物生长的影响,并分析微润灌溉技术的不足之处。[结果]微润灌溉是一种新型地下灌溉技术,以连续灌溉方式不间断地向作物根系供应适量水分,使植物吸水过程与田间灌溉过程具有同步性,灌水量与植物耗水量相匹配,实现无胁迫灌溉,改善作物品质和产量。该技术已成为国际领先的仿生型连续灌溉系统,在干旱半干旱地区具有广阔的应用前景。[结论]今后应加强的研究领域主要包括:微润灌溉对土壤养分运移的影响;微润灌溉对不同种植模式作物生长的影响;微润灌溉对农田生态系统温室气体排放的影响。
[Objective] The research progress of moistube irrigation technology was reviewed to investigate the future research direction and provide available bases for the formulation of water-saving irrigation system and parameters. In addition
this review would play a key role in popularizing moistube irrigation technology.[Methods] The paper summarized the development history and application status of moistube irrigation technology
soil water movement under moistube irrigation
effects of moistube irrigation on crops growth
etc. and the drawbacks of moistube irrigation technology were analyzed.[Results] Moistube irrigation is an underground irrigation technology
having the advantages of uninterrupted adequate water supply for plant absorption and field irrigation were synchronicity. Moistube irrigation water was matched with plant water consumption. Meanwhile
moistube irrigation can come into being no-stress irrigation. In addition
moistube irrigation plays an important role in improving crop quality and yield. The moistube irrigation technology has become a leading international bionic type continuous irrigation system
and will have broad prospect of popularization in arid and semi-arid region.[Conclusion] This paper reviewed the development history and application status of moistube irrigation
the research progress of moistube irrigation technology mechanism
migration rules of soil water and the effects of moistube irrigation on crop growth
and put forward the key research fields needed to be further study
including the effects of moistube irrigation on soil nutrient migration; the effects of moistube irrigation on crop growth with different planting patterns; the effects of moistube irrigation on greenhouse gas emissions of farmland ecosystem.
郑海霞,张陆彪,涂勤.金华江流域生态服务补偿支付意愿及其影响因素分析[J].资源科学,2010,32(4):761-767.
石广明,王金南,毕军.基于水质协议的跨界流域生态补偿标准研究[J].环境科学学报,2012,32(8):1973-1983.
魏楚,沈满洪.基于污染权角度的流域生态补偿模型及应用[J].中国人口·资源与环境,2011,21(6):135-141.
范晓芬.基于污染物消减成本核算太湖流域跨界生态补偿额研究[D].上海:上海师范大学,2015.
刘桂环,文一惠,张惠远.流域生态补偿标准核算方法比较[J].水利水电科技进展,2011,31(6):1-6.
赵海霞,徐颂军.基于污染足迹的区域内生态补偿标准研究:以广州市为例[J].华南师范大学学报:自然科学版,2015(4):116-121.
于鲁冀,王燕鹏,梁亦欣.基于污水治理成本的流域污染赔偿标准研究[J].生态经济,2011(9):51-54.
陈沫宇.基于TPC-WRV耦合模型的流域生态补偿标准研究[D].河南郑州:郑州大学,2015.
吕文艳.宜昌市城镇污水处理设施效益分析与对策探索[J].资源节约与环保,2015(6):180-180.
闫旭.流域污染生态补偿标准模型研究[D].吉林长春:吉林大学,2012.
杨玲.綦江干流江津段水环境容量研究[D].重庆:西南大学,2009.
谭亚荣,郑少锋.环境污染物单位治理成本确定的方法研究[J].生产力研究,2007(24):52-53.
秦敏.天然河道采用临时曲线法定线推流理论要领与技巧[J].黑龙江水利科技,2013,41(8):25-29.
胡宪发.堰闸站流量资料插补方法探讨[J].中国水利,2013(S2):101-102.
刘洪燕,代巍.浅谈河流污染物综合衰减系数的确定方法[J].河南科技,2014(2):171-172.
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