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The Effects of Mulched with Dripping on Carbon and Water Dynamics by Cotton in Northwest China

机译:中国西北地区棉花滴落对碳水动力学的影响

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The mulch was widely practiced in cotton (Gossypium hirsutum L.) cropland in northwest China. Quantifying carbon and water flux was significant for maintaining the sustainable cotton production under the declining in available water in arid regions. In this study, the ecosystem exchange (NEE) and evapotranspiration (ET) of cotton was during 2009-2010 in Wulanwusu, North Xinjiang. The LAI reached to the maximum value of 7.3 m~2 m~(-2) and 8.8 m~2 m~(-2) around 80-90 days after planting. Although, the total precipitation account for 25-26% of the sum evapotranspiration (ET), the dripping irrigation supplied the water shortages and mulch restrained soil evaporation. Thus, the monthly total ET was more relayed on the irrigation than on the precipitation, and showed the supplement water was more important to oasis cotton. The NEP of cotton ranged from 454.23 gC m~(-2) y~(-1) to 526.31 gC m~(-2) y~(-1) during 2009-2010. The mulch made the water use efficiency (WUE) was 0.89 kgC m~(-3) y~(-1) and 1.11 kgC m~(-3) y~(-1), which was similar to that of crop in semi-humid regions of North Plane China. The results showed that mulch with dripping could maintain higher WUE and saving water in arid regions which had deficit irrigation.
机译:覆盖物在中国西北部的棉花(Gossypium hirsutum L.)田间广泛实施。定量碳和水通量对于在干旱地区的可用水下降下维持可持续棉花生产是显着的。在这项研究中,棉花的生态系统交易所(NEE)和蒸散(ET)是棉花北部乌兰威苏州的2009 - 2010年。莱达到植入后80-90天的最大值为7.3m〜2 m〜(-2)和8.8m〜2 m〜(-2)。虽然,总降水占25-26%的蒸散量(ET),滴水灌溉提供了水短缺和覆盖物的抑制土壤蒸发。因此,每月总ET在灌溉上比沉淀更加慢,并显示补充水对Oasis棉花更重要。 2009 - 2010年期间,棉的Nep的棉花范围为454.23 gc m〜(-2)y〜(-1)至526.31 gc m〜(-2)y〜(-2)。覆盖物使水使用效率(Wue)为0.89kgc m〜(-3)y〜(-1)和1.11kgc m〜(-3)y〜(-1),这与半自动中的作物类似 - 北飞机地区中国。结果表明,随着赤字灌溉的干旱地区,覆盖物的覆盖物可以保持更高的电力和节约用水。

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