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Linkage Analysis of Land Use/Cover Patterns and Hydro-Chemical Characteristics in Different Seasons in Ebinur Lake Watershed, China

机译:艾比湖流域不同季节土地利用/覆盖格局与水化学特征的联系分析

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Ebinur Lake Watershed, with its oases and deserts, is a typically arid and mountainous region on the northern slope of Tianshan Mountains. Along with ever increasing human activities, agricultural and domestic wastes have been directly discharged into river systems around the Watershed, which consequently poses a grave threat to the sustainable development of Xinjiang. Through statistical and spatial analysis, we have determined the relationships between land use/cover (LULC) and hydro-chemical characteristics during rainy and dry seasons in 2014. Spatial patterns of hydro-chemical characteristics as demonstrated by mineralization, pH, electrical conductivity (EC), and SO 4 2?¢???? , HCO 3 ?¢???? , Cl ?¢???? , Mg 2+ , Na + , Ca 2+ and K + concentrations were examined in 113 sites. Since hydro-chemical characteristics were affected by LULC patterns, this study delineated six zones to analyze the distribution characteristics of hydro-chemical parameters and its relationship with LULC patterns. The results showed that, except for the pH, all variables demonstrated significant spatial differences during dry and rainy seasons. In addition, the relationships between water quality and LULC patterns indicated that the farmland, forest?¢????grassland, water body and salinized land all affected hydro-chemical characteristics during both rainy and dry seasons. Especially, decreased rainfall, irrigation, surface runoff, the area of lake, etc. largely led to the increase in ion content, which had great influence on hydro-chemical characteristics parameters in dry season. Furthermore, we established several stepwise linear multiple regressions models. The results showed that pH, mineralization and Ca 2+ were defined by forest-grassland, while the Cl ?¢???? and Mg 2+ were defined by salinized land during the rainy season. The pH and Na + were estimated based on farmland, whereas Cl ?¢???? and Ca 2+ were estimated based on forest-grassland during the dry season. In conclusion, this research on the relationships between the spatial distribution of hydro-chemical characteristics in Ebinur Lake Watershed and LULC patterns will be significant for the sustainable management of the arid regions in northwest China.
机译:艾比湖流域及其绿洲和沙漠,是天山北坡上典型的干旱山区。随着人类活动的不断增加,农业和生活垃圾已直接排入流域周围的河流系统,从而对新疆的可持续发展构成了严重威胁。通过统计和空间分析,我们确定了2014年雨季和旱季土地利用/覆盖率(LULC)与水化学特征之间的关系。水化学特征的空间格局由矿化,pH,电导率(EC )和SO 4 2?¢ ???? ,HCO 3吗? ,Cl?¢ ????在113个位置检查了Mg 2+,Na +,Ca 2+和K +的浓度。由于水化学特征受LULC模式的影响,本研究划定了6个区域来分析水化学参数的分布特征及其与LULC模式的关系。结果表明,除pH值外,所有变量在干旱和雨季均表现出明显的空间差异。此外,水质与LULC模式之间的关系表明,在雨季和旱季,农田,森林,草地,水体和盐渍化土地都影响水化学特性。特别是降雨减少,灌溉,地表径流,湖泊面积等在很大程度上导致了离子含量的增加,这对旱季的水化学特征参数影响很大。此外,我们建立了几个逐步线性多元回归模型。结果表明,pH值,矿化度和Ca 2+是由森林草地决定的,而Cl是由草地决定的。 Mg 2+是雨季的盐碱化土地。 pH和Na +是根据农田估算的,而Cl是基于农田估算的。 Ca 2+是根据干旱季节的森林草地估算的。综上,本研究对艾比湖流域水化学特征的空间分布与LULC格局之间的关系具有重要意义,对西北干旱地区的可持续管理具有重要意义。

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