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内陆河流域绿洲土壤盐分演化及其与地下水动态的关系:以中国新疆阜北地区为例

Soil salinity evolution and its relationship with dynamics of groundwater in the oasis of inland river basins: case study from the Fubei region of Xinjiang Province, China.

作者信息

Wang Yugang, Xiao Duning, Li Yan, Li Xiaoyu

机构信息

Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, 40-3 South Beijing Road, Urumqi, Xinjiang 830011, People's Republic of China.

出版信息

Environ Monit Assess. 2008 May;140(1-3):291-302. doi: 10.1007/s10661-007-9867-z. Epub 2007 Aug 10.

Abstract

Soil salinization is an important worldwide environmental problem, especially in arid and semi-arid regions. Knowledge of its temporal and spatial variability is crucial for the management of oasis agriculture. The study area has experienced dramatic change in the shallow groundwater table and soil salinization during the 20th century, especially in the past two decades. Classical statistics, geostatistics and geographic information system (GIS) were applied to estimate the spatial variability of the soil salt content in relation to the shallow groundwater table and land use from 1983 to 2005. Consumption of reservoir water for agricultural irrigation was the main cause of a rise in the shallow groundwater table under intense evapotranspiration conditions, and this led indirectly to soil salinization. The area of soil salt accumulation was greater in irrigated than in non-irrigated landscape types with an increasing of 40.04% from 1983 to 2005 in cropland at approximately 0.43 t ha(-1) year(-1), and an increase at approximately 0.68 t ha(-1) year(-1) in saline alkaline land. Maps of the shallow groundwater table in 1985 and 2000 were used to deduce maps for 1983 and 1999, respectively, and the registration accuracy was 99%.

摘要

土壤盐渍化是一个全球性的重要环境问题,在干旱和半干旱地区尤为突出。了解其时空变异性对于绿洲农业管理至关重要。研究区域在20世纪,特别是过去二十年中,浅层地下水位和土壤盐渍化发生了显著变化。运用经典统计学、地统计学和地理信息系统(GIS)来估算1983年至2005年期间土壤盐分含量相对于浅层地下水位和土地利用的空间变异性。在强烈的蒸发蒸腾条件下,农业灌溉用水消耗是浅层地下水位上升的主要原因,这间接导致了土壤盐渍化。灌溉景观类型中的土壤盐分积累面积大于非灌溉景观类型,1983年至2005年期间,农田土壤盐分积累量以约0.43 t ha(-1) year(-1)的速度增加,增幅达40.04%,盐碱地的增加速度约为0.68 t ha(-1) year(-1)。利用1985年和2000年的浅层地下水位图分别推断出1983年和1999年的地图,配准精度为99%。

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