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文峪河灌区北部区域存在问题及解决措施
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作者 李殿威 《山西水利》 2012年第5期31-31,40,共2页
介绍了文峪河灌区文祁公路以北区域的基本情况,分析该区域运行中存在河灌面积逐年减少,农田水利设施遭到严重破坏,地下水遭受污染,以及文峪河防洪能力降低等问题,并提出大力保证灌区河灌面积,控制机井数量及综合治理灌区农田水利基础设... 介绍了文峪河灌区文祁公路以北区域的基本情况,分析该区域运行中存在河灌面积逐年减少,农田水利设施遭到严重破坏,地下水遭受污染,以及文峪河防洪能力降低等问题,并提出大力保证灌区河灌面积,控制机井数量及综合治理灌区农田水利基础设施等解决措施。 展开更多
关键词 农田水利 河灌面积 地下水 文峪
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Long-term variability of the carbon balance in a large irrigated area along the lower Yellow River from 1984 to 2006 被引量:4
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作者 LEI HuiMin YANG DaWen +1 位作者 CAI JianFeng WANG FengJiao 《Science China Earth Sciences》 SCIE EI CAS 2013年第4期671-683,共13页
The irrigated areas in the northern region of China are important food production areas. Therefore, studies on the variability of the carbon balance in these agro-ecosystems are fundamental for the management of carbo... The irrigated areas in the northern region of China are important food production areas. Therefore, studies on the variability of the carbon balance in these agro-ecosystems are fundamental for the management of carbon sequestration. This paper simulated the long-term variability of the carbon balance in a typical irrigated area along the lower Yellow River from 1984 to 2006, using a process-based ecosystem model called the Simple Biosphere Model, version 2. The mean annual gross primary production (GPP), mean annual net assimilation rate (NAR), mean annual soil respiration (Rs ), and mean annual net ecosystem exchange (NEE) were 1733, 1642, 1304, and 338g C m-2 a-1 , respectively. A significant increasing trend in the seasonal total NAR during the wheat growing season, and a significant decreasing trend in the seasonal total NAR during the maize growing season were detected. However, no significant trend was found in the annual NAR, R s , and NEE. The average carbon sequestration was 1.93 Tg C a-1 when the grain harvest was not taken into account, and the carbon sequestration amount during the maize season was higher than that during the wheat season. However, the agro-ecosystem was a weak carbon source with a value of 0.23 Tg C a-1 , when the carbon in the grain was assumed emitted into the atmosphere. 展开更多
关键词 carbon balance winter wheat summer maize process-based ecosystem model irrigated area
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