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Microcatchment water harvesting for growing Tamarix ramosissima in the semiarid loess region of China.

机译:在中国半干旱黄土地区种植Ta柳(Tamarix ramosissima)的微集水集水区。

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Revegetation is a pressing issue for eco-environmental improvement in the semiarid loess region of China; however, the establishment of vegetation is quite difficult due to inadequate availability of moisture. A field study was conducted in a semiarid loess region in Gansu Province, China to explore the possibility of using microcatchment water harvesting for growing Tamarix ramosissima during 2001 and 2003. The experiment involved four different size microcatchments (5, 15, 30 and 50 m2) and the control (0 m2) with six replications to supply runoff water for one tree. Microcatchment water harvesting treatments significantly improved the growth of the T. ramosissima because more water was made available to the tree. Runoff volume increased with increasing catchment size, following a positive linear function; and runoff percentage decreased with increasing catchment size, following a negative exponential function. Considering catchment/planted area ratio and soil moisture storage characteristics, the ratio 38.2 and 19.1 may be most appropriate for growing T. ramosissima using microcatchment water harvesting in the study area..
机译:植被恢复是中国半干旱黄土地区生态环境改善的紧迫问题。但是,由于水分不足,植被的建立非常困难。在中国甘肃省的一个半干旱黄土地区进行了田野研究,以探讨在2001年和2003年期间使用微集水集水来种植Ta柳的可能性。该实验涉及四个不同大小的微集水区(5、15、30和50 m2)对照(0平方米),有6个副本,可为一棵树供应径流水。微集水集水处理显着改善了毛T虫的生长,因为有更多的水可用于树木。径流量随着集水面积的增加而增加,遵循正线性函数;径流百分比随负指数函数的增加而减小。考虑到集水区/种植面积比和土壤水分存储特性,在研究区域内使用微集水集水来种植三角锥虫最适合38.2和19.1的比例。

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