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作物相对水分利用效率与理论节水潜力 被引量:4
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作者 代小平 周雯晶 +3 位作者 韩宇平 窦明 冯吉 Svensson Jesper 《水科学进展》 EI CAS CSCD 北大核心 2019年第5期682-690,共9页
作物水分利用效率是评价农业用水效率的重要指标,由于气候差异,采用作物水分利用效率评价不同区域的用水效率可能存在一定误差,尚缺乏深入研究。基于潜在水分利用效率指标和气象数据,计算了2014年中国小麦、玉米和水稻在充分灌溉条件下... 作物水分利用效率是评价农业用水效率的重要指标,由于气候差异,采用作物水分利用效率评价不同区域的用水效率可能存在一定误差,尚缺乏深入研究。基于潜在水分利用效率指标和气象数据,计算了2014年中国小麦、玉米和水稻在充分灌溉条件下的潜在水分利用效率,分析了区域气候差异对作物水分利用效率的影响,提出了相对水分利用效率和理论节水潜力的概念和计算方法,并进行了实例研究。结果表明:各类作物在不同站点的潜在水分利用效率的标准差为0.49~1.01 kg/m 3,多数作物潜在水分利用效率的空间差异大于实际水分利用效率的空间差异;主要作物的平均相对水分利用效率为50.7%,其理论节水潜力为884.8~4 064.5 m 3/hm 2;作物水分利用效率和广义节水潜力指标可能高估或低估作物的用水效率和节水潜力。研究认为在比较区域间作物的水分利用效率时不能忽略气候差异的影响;由于考虑了区域气候差异,相对水分利用效率和理论节水潜力指标更合理。 展开更多
关键词 相对水分利用效率 理论节水潜力 粮食作物
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Water use strategies of the desert riparian forest plant community in the lower reaches of Heihe River Basin, China 被引量:11
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作者 FU AiHong CHEN YaNing LI WeiHong 《Science China Earth Sciences》 SCIE EI CAS 2014年第6期1293-1305,共13页
The object of this paper is the different plant communities in the Ejina desert riparian forest. Groundwater depth, soil moisture, plant water potential, relative leaf moisture content and water use efficiency was mon... The object of this paper is the different plant communities in the Ejina desert riparian forest. Groundwater depth, soil moisture, plant water potential, relative leaf moisture content and water use efficiency was monitored, and the response of soil moisture and plant ecology to the groundwater depth and the water use efficiency of the different plant communities was analyzed. The results showed that:(1) Along with the groundwater depth increasing, predawn and midday water potential of the plants, with the exception of Reaumuria soongorica, did not decrease significantly, indicating that when the groundwater depth is less than 3 m, the plant communities in the range of 4 km from the river way did not suffer or slightly suffer from water stress;(2) The distribution of higher soil moisture content within 0–3 m soil layer is suitable with the plants’ root system, as indicated in the communities of coexisting overripe Populus euphratica or Taramrix chinensis, both of which can release excessive water into soil for shallow rooted shrubs or herbaceous plants when there is water shortage;(3) R. soongorica can absorb deep soil moisture through deep roots for their own survival;(4) The community consisting of Sophora alopecuroides, Karelinia caspica, T. chinensis, and overripe P. euphratica has the best species combination for restoring the damaged eco-environment in the lower reaches of Heihe River;(5) The order of plants’ relative leaf water contents is K. caspica &gt; S. alopecuroides &gt; young P. euphratica &gt; overripe P. euphratica &gt; mature P. euphratica = T. chinensis coexisting with other species &gt; single R. soongorica &gt; single T. chinensis and the order of WUE is single T. chinensis &gt; single R. soongorica &gt; T. chinensis living in symbiosis with other species &gt; S. alopecuroides = young P. euphratica &gt; mature P. euphratica &gt; overripe P. euphratica &gt; K. caspica. Therefore, with ample soil moisture, the plant community helps rapid growth of T. chinensis, young P. euphratica and R. soongorica plants of less moisture content. Despite this they do not have much water storage capability, but have strong drought resistance, and higher moisture contents of S. alopecuroides and K. caspica, thus leaving them with poor drought resistance. Overall, the desert riparian forest plant community in the lower reaches of Heihe River helps the species of higher WUE live on it. 展开更多
关键词 water potential soil moisture water use efficiency water use strategy desert riparian forest Heihe river
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