
水稻节水灌溉技术模式研究进展
马世浩, 杨丞, 王贵兵, 张赓, 李小坤
水稻节水灌溉技术模式研究进展
Research Progress of Rice Water-Saving Irrigation Technology Mode
为了应对水资源紧缺对水稻生产的威胁,自20世纪80年代以来,国内外水稻科技工作者对水稻节水灌溉技术或模式进行了大量的研究,但缺少系统地比较以及根据不同区域实际田间情况进行节水效果的评价梳理。本文采用文献数据分析的方法,综述了几种常见的水稻节水灌溉技术模式,比较了不同技术模式在节水和增产效果上的差异及其优、缺点。结果表明,“浅湿晒灌溉”的增产效果较好,但对田块的要求较高,并且难以确定灌溉定额;“间歇灌溉”的节水效果较好,但操作复杂,推广性差;“控制灌溉”能提高水稻的抗逆性,但没有统一的灌水指标;“适雨灌溉”节水效果较好,但增产效果一般;“滴灌”能提高水肥利用率,但可能会导致产量降低。综合来看,“滴灌”和“控制灌溉”适合在北方稻区推广,“蓄雨型灌溉”技术具有较大的节水和增产潜力,适合在南方稻区推广。
In order to deal with the threat of water shortage to rice production, since the 1980s, domestic and foreign rice science and technology workers have done a lot of research on rice water-saving irrigation technology or mode, but there is a lack of systematic comparison and evaluation of water-saving effect according to the actual field situation in different regions. By using the method of literature data analysis, this paper summarizes several common rice water-saving irrigation technology modes, and compares the differences, advantages and disadvantages of different technology modes in water-saving and yield increasing effects. The results show that the effect of the "shallow wet sun irrigation" mode is better, but the requirement of field is higher, and it is difficult to determine the irrigation quota. The “intermittent irrigation” mode has better water-saving effect, but it is complex to operate and poor to popularize. The "Controlled irrigation" mode can improve the stress resistance of rice, but there is no unified irrigation index. The water-saving effect of the "suitable rain irrigation" mode is better, but the effect of increasing production is general. The "Drip irrigation" mode can improve the utilization rate of water and fertilizer, but it may reduce the yield. In general, the "drip irrigation" mode and the "controlled irrigation" mode are suitable for popularization in northern rice area, while the "rain storage irrigation" mode has great potential of water-saving and yield increasing, and is suitable for popularization in southern rice area.
水稻 / 水资源 / 节水灌溉 / 灌溉技术 / 灌溉模式 {{custom_keyword}} /
rice / water resources / water-saving irrigation / irrigation technology / irrigation mode {{custom_keyword}} /
表1 不同灌溉技术的节水增产效果Tab.1 Water saving and yield increasing effects of different irrigation techniques |
灌溉技术模式 | 地点 | 年份 | 增产/% | 节水/% | 参考文献 |
---|---|---|---|---|---|
浅湿晒灌溉 | 湖北、贵州、黑龙江、广西 | 2012-2018 | 5.5~20.9 | 7.0~41.0 | [ |
间歇灌溉 | 广西、黑龙江、江西 | 2009-2019 | -22.6~18.0 | 25.0~77.8 | [ |
控制灌溉 | 黑龙江、江西、浙江 | 2009-2019 | -7.8~16.0 | 24.0~45.9 | [ |
蓄雨型灌溉 | 浙江、湖北 | 2019 | 11.8~36.9 | 43.4~87.7 | [ |
适雨灌溉 | 浙江、湖北 | 2016-2019 | 2.1~4.4 | 41.7~81.9 | [ |
滴灌 | 黑龙江 | 2015-2018 | -8.0~0 | 41.5~60.0 | [ |
表2 不同灌溉技术的优缺点比较Tab.2 Comparison of advantages and disadvantages of different irrigation techniques |
灌溉技术模式 | 优点 | 缺点 |
---|---|---|
浅湿晒灌溉 | 节水,增加田间生长积温 | 对于田块要求过高,难以确定灌溉定额 |
间歇灌溉 | 灌水速度快、效率高、节水节能 | 操作复杂,推广性差 |
控制灌溉 | 高产高效,节水节能,提高抗逆性 | 工作量大,不同地区灌水指标不一 |
蓄雨型灌溉 | 节水高产,减排省工 | 受天气因素影响较大 |
适雨灌溉 | 提高水肥利用率,减灌减排 | 适用性差,只适用于南方多雨区 |
滴灌 | 便于自动控制,不受地形限制,提高水肥利用率 | 技术复杂,单位面积投资高 |
自动控制灌溉 | 精准灌溉,节水节肥 | 大多还处于理论阶段,缺乏生产实践 |
1 |
中华人民共和国国家统计局,中国统计年鉴[M].北京:中国统计出版社,2018.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
2 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
3 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
4 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
5 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
6 |
中华人民共和国水利部.中国水资源公报 2019[M]. 北京:中国水利水电出版社, 2020.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
7 |
阎鹏超.五常市水稻种植户节水灌溉技术采用行为及其影响因素分析[D].沈阳:沈阳农业大学,2018.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
8 |
舟成.我国水资源现状与问题研究[J]. 资源节约与环保, 2013 (10):64.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
9 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
10 |
陈雷.节水灌溉是一项革命性的措施[J]. 节水灌溉, 1999(1):1-6.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
11 |
陈婷婷,杨建昌.移栽水稻高产高效节水灌溉技术的生理生化机理研究进展[J]. 中国水稻科学, 2014, 28(1):103-110.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
12 |
刘晶,鲍振鑫,刘翠善,等.近20年中国水资源及用水量变化规律与成因分析[J]. 水利水运工程学报, 2019(4):31-41.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
13 |
潘圣刚,曹凑贵,蔡明历,等.不同灌溉模式下氮肥水平对水稻氮素利用效率、产量及其品质的影响[J]. 植物营养与肥料学报, 2009,15(2):283-289.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
14 |
茆智.水稻节水灌溉及其对环境的影响[J].中国工程科学,2002(7):8-16.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
15 |
唐利群.中国水稻种植户极端气候适应性行为及效应研究[D].杭州:浙江大学,2018.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
16 |
杨建昌,张建华.水稻高产节水灌溉[M]. 北京:科学出版社,2019.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
17 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
18 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
19 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
20 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
21 |
张宏路,朱安,胡昕,等.稻田常用节水灌溉方式对水稻产量和米质影响的研究进展[J]. 中国稻米, 2018, 24(6):12-16.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
22 |
茆智.水稻节水灌溉[J]. 中国农村水利水电, 1997(4):45.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
23 |
奥马尔·阿齐兹. 水稻节水灌溉条件下水氮利用效益研究[D].武汉:华中农业大学,2018.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
24 |
张忠明,王忠波,张忠学,等.不同灌溉模式对寒地水稻田碳排放、耗水量及产量的影响[J]. 灌溉排水学报, 2018,37(11):1-7.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
25 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
26 |
万玉文.基于节水灌溉模式的稻田增产减污研究[J]. 中国农村水利水电, 2012(5):42-44,48.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
27 |
董艳芳,黄景,李伏生,等.不同灌溉模式和施氮处理下稻田CH4和N2O排放[J]. 植物营养与肥料学报, 2017,23(3):578-588.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
28 |
姚林,郑华斌,刘建霞,等.中国水稻节水灌溉技术的现状及发展趋势[J]. 生态学杂志,2014,33(5):1 381-1 387.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
29 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
30 |
朱士江,孙爱华,张忠学,等.不同节水灌溉模式对水稻分蘖、株高及产量的影响[J]. 节水灌溉, 2013(12):16-19.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
31 |
赵宏亮,王麒,孙羽,等.秸秆还田下灌溉方式对水稻产量及水分利用率的影响[J]. 核农学报, 2018, 32(5):959-969.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
32 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
33 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
34 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
35 |
CARRIJO,
{{custom_citation.content}}
{{custom_citation.annotation}}
|
36 |
易镇邪,苏雨婷,谷子寒,等.不同生育阶段间歇灌溉对镉污染稻田双季稻产量构成与镉累积的影响[J].水土保持学报,2019,33(5):364-368.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
37 |
彭世彰,徐俊增.水稻控制灌溉理论与技术[M]. 南京:河海大学出版社, 2010.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
38 |
庞桂斌,杨士红,徐俊增.节水灌溉稻田水肥调控技术试验研究[J]. 节水灌溉, 2015(9):44-47.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
39 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
40 |
许怡,吴永祥,王高旭,等.小区和田块尺度下水稻不同灌溉模式的节水减污效应分析[J]. 灌溉排水学报, 2019, 38(5):62-68.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
41 |
何军,高燕俐,张骞,等.缓释肥条件水稻节水灌溉模式适宜性研究[J]. 水电能源科学, 2019, 37(3):125-127.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
42 |
贾宏伟,郑世宗.水稻适雨灌溉方法:中国,CN201210137740.0. [P].2013.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
43 |
晏军,吴启侠,朱建强,等.适雨灌溉下氮肥运筹对水稻光合特性、氮素吸收及产量形成的影响[J]. 中国水稻科学, 2019, 33(4):347-356.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
44 |
肖万川,贾宏伟,邱昕恺,等.水稻适雨灌溉对稻田CH4和N2O放的影响[J]. 灌溉排水学报, 2017(11):38-42.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
45 |
许怡,吴永祥,王高旭,等.稻田不同灌溉模式的节水减污效应分析:以浙江平湖为例[J].灌溉排水学报,2019,38(2):56-62.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
46 |
成华伟,陈林,银永安,等.水稻滴灌栽培技术在8511农场的应用[J]. 大麦与谷类科学, 2015(2):53-54.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
47 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
48 |
郭庆人,陈林.水稻膜下滴灌栽培技术在我国发展的优势及前景分析[J]. 中国稻米, 2012, 18(4):36-39.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
49 |
陈金武. 内蒙古通辽市水稻膜下滴灌灌溉制度试验研究[J]. 节水灌溉, 2018(4):11-14.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
50 |
李冬,杨江平,王欢庆,等.新疆膜下滴灌旱作水稻不同生育期控制性灌溉对产量及农艺性状的影响[J]. 北方水稻, 2018,48(6):11-12,15.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
51 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
52 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
53 |
邱照宁,晏清洪,王建忠,等.水稻田精准节水灌溉全自动控制系统研究[J]. 科技创新与应用, 2016(25):23-24,25.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
54 |
钱梦清,于泓川,苏中滨.稻田节水灌溉系统的研究与设计[J]. 农机化研究, 2012, 34(12):128-131.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
55 |
MASSERONI,DANIELE,
{{custom_citation.content}}
{{custom_citation.annotation}}
|
56 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
57 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
58 |
候建英.黑龙江省红旗岭农场水稻节水灌溉模式研究[D].北京:中国农业科学院研究生院,2014:2-5.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
59 |
廖春华.浙江省水稻节水灌溉技术推广研究[D].杭州:浙江工业大学,2016.
{{custom_citation.content}}
{{custom_citation.annotation}}
|
60 |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
{{custom_ref.label}} |
{{custom_citation.content}}
{{custom_citation.annotation}}
|
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