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国家自然科学基金(41201063)

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中国西部冰川冰尘的粒度及矿物组成被引量:2
2015年
利用Mastersizer 2000型激光粒度分析仪和X-射线衍射仪分析了新疆木扎尔特冰川、唐古拉山小冬克玛底冰川、东昆仑山玉珠峰冰川和祁连山七一冰川冰尘的粒度组成和矿物特征。结果表明,这4条冰川冰尘的粒度组成以粉砂(2~63μm)为主,占62.32%~86.46%;粘土(〈2μm)含量最低,占2.77%~7.40%。平均粒径的顺序依次是:木扎尔特冰川(84.96±45.14μm)〉玉珠峰冰川(38.96±13.94μm)〉小冬克玛底冰川(34.76±11.41μm)〉七一冰川(20.21±15.81μm)。矿物成份分析表明,冰尘中的碎屑矿物含量高于粘土矿物,主要以石英和长石为主。除木扎尔特冰川之外,其他3条冰川冰尘中的伊利石含量在粘土中最高。七一冰川的伊利石和高岭石含量都高于玉珠峰冰川和小冬克玛底冰川。伊利石和高岭石等均为铝硅酸盐的风化分解产物,来源于陆源物质。伊利石和高岭石含量自东向西减少,说明木扎尔特冰川冰尘主要来自寒冷环境下岩石经过的物理风化而非化学风化形成的局地粉尘。其他3条冰川冰尘除局地来源外,还有一部分是陆源物质经一定距离搬运后物理风化分解而成。
李全莲张成龙武小波姚平蒲建辰
关键词:青藏高原冰川粒度矿物组分
Diurnal and seasonal variation of glacier meltwater hydrochemistry in Qiyi glacierized catchment in Qilian Mountains, Northwest China: implication for chemical weathering被引量:1
2018年
In glacierized catchments, glacier runoff typically shows a strong diurnal cycle in the ablation season(June-September). To elucidate the effect of these processes on the chemical weathering, fresh snowfall and water samples were collected and studied from the supraglacial river, proglacial river,and gauging site in Qiyi glacierized catchment Qilian Mountains, Northwestern China, in the summer of2011. The pH and electronic conductivity(EC) were determined in the field, and the concentrations of major ions(Na^+, K^+, Mg^(2+), Ca^(2+), Cl^-, SO_4^(2-), NO_3^-) were measured. The results indicated that EC linearly increased with increasing distance from the glacial snout, and the concentrations of major ions increased with increasing water-rock interaction time. Along the flow path of the glacier runoff, Na^+ and Cl^-are more concentrated than other ions in the supraglacial river while Mg^(2+) and SO_4^(2-)are more concentrated than other ions at the gauging site. The discharge, pH, EC,and the concentrations of major ions exhibited significant diurnal variation along the flow path. On the other hand, the amplitude of variation diminished from upstream to downstream along the flow path.The chemical weathering rate(Na^++K^++Mg^(2+)+Ca^(2+))was determined to be 10.9 t/yr/km^2. Moreover,further research indicated that the sampling method influenced the assessment of chemical weathering rates. When the sample was collected randomly in one diurnal cycle of hydrography, the estimated ionic flux could deviate-47%~73% based on estimated hourly data. In contrast, if three samples were collected at peak, base flow and the discharge decreasing rate starts to slow down in one diurnal cycle of hydrography, respectively, the deviation would be less than 15%. The smaller the diurnal variation of discharge, the smaller deviation calculated.
WU Xiao-bo
关键词:DIURNALHYDROCHEMISTRYWEATHERING
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