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智利Maricunga盐湖模拟卤水25℃等温蒸发实验研究 被引量:7
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作者 杨国彬 杨建元 +3 位作者 李陇岗 董军峰 陈联文 李玉凤 《盐业与化工》 CAS 2012年第6期4-8,共5页
文章对智利Maricunga盐湖模拟卤水进行了25℃等温蒸发试验,参考KCl-CaCl2-MgCl2∥H2O 25℃四元水盐体系进行了相图理论分析,采用X射线衍射手段进行了析出矿物的物相分析,结合化学测试结果,研究了该卤水在等温蒸发过程盐类矿物的结晶路... 文章对智利Maricunga盐湖模拟卤水进行了25℃等温蒸发试验,参考KCl-CaCl2-MgCl2∥H2O 25℃四元水盐体系进行了相图理论分析,采用X射线衍射手段进行了析出矿物的物相分析,结合化学测试结果,研究了该卤水在等温蒸发过程盐类矿物的结晶路线和析出顺序,为Maricunga盐湖卤水的开发和综合利用提供了基础数据,将为我国现有氯化钙型含硼、含锂卤水的开发提供参考。 展开更多
关键词 智利maricunga盐湖 25℃等温蒸发 结晶路线 矿物析出顺序
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智利Maricunga盐湖卤水综合利用途径研究
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作者 杨国彬 李陇岗 +3 位作者 杨建元 钟辉 杨朝勇 赖学明 《化工矿物与加工》 CAS 北大核心 2013年第2期16-19,共4页
本文以KCl-CaCl2-MgCl2//H2O 25℃四元水盐体系相图为理论基础,以智利Maricunga盐湖模拟卤水25℃等温蒸发实验数据为依据,提出了一条"萃取提硼→浮选提钾→除钙镁→沉锂"综合利用工艺途径,该研究对国内外高钙富硼锂氯化物型... 本文以KCl-CaCl2-MgCl2//H2O 25℃四元水盐体系相图为理论基础,以智利Maricunga盐湖模拟卤水25℃等温蒸发实验数据为依据,提出了一条"萃取提硼→浮选提钾→除钙镁→沉锂"综合利用工艺途径,该研究对国内外高钙富硼锂氯化物型盐湖卤水综合利用与开发具有一定的参考价值。 展开更多
关键词 高钙氯化物型 maricunga盐湖卤水 综合利用途径
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Environmental degradation through mining for energy resources:The case of the shrinking Laguna Santa Rosa wetland in the Atacama Region of Chile 被引量:1
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作者 Mohammad Ayaz Alam Rosa Sepúlveda 《Energy Geoscience》 2022年第2期182-190,共9页
As the world strives to replace fossil fuels with clean energy e reflected by global surge in the number of electric vehicles e the environmental impact of mining all the lithium(Li)needed to enable such a transformat... As the world strives to replace fossil fuels with clean energy e reflected by global surge in the number of electric vehicles e the environmental impact of mining all the lithium(Li)needed to enable such a transformation has become a problem in its own right.In South America,the biggest problem is the excessive use of water in Li extraction process in one of the driest areas in the world.Apart from causing severe friction over water rights between local communities and mining companies,it puts enormous pressure on the region's fragile and poorly understood wetland ecosystems.Wetlands are one of the most threatened ecosystems on the Earth,despite their great importance as habitats for a vast number of species and corresponding to one of the most productive environments.Present work is the outcome of an investigation on Laguna Santa Rosa's(LSR)vulnerability resulting from ongoing metal mining operations in its surroundings that require a large volume of water extracted from local aquifers,in addition to a high evaporation rate in the area.This groundwater-dependent wetland will soon be further vulnerable with the commencement of water-intensive Li mining at Salar de Maricunga,with the extraction project already having an environmental impact study approved.Sustainability of this wetland protected under the Ramsar Convention and home to numerous wildlife species habiting this highland sector of the Andean Cordillera is vital for the associated ecosystems.The variation in the water surface area of LSR has been deciphered through the application of a Landsat-5 Thematic Mapper(TM)satellite image collection.This has been done both for the hydrological year 2016e2017 and 1993-2014 period.A decreasing trend in the water surface area of LSR,a hypersaline lake at the southern extreme of Salar de Maricunga,a salt flat in the Atacama Region of Chile,was observed through the study of satellite images between 1993 and 2014,showing shrinking of this wetland.However,this shrinking trend was punctuated by extreme rainfall and consequent flood with accumulated precipitation exceeding 40 mm in a single day and hourly mean rainfall rates higher than 10 mm/h recorded at several locations in the hyperarid Atacama Desert on March 25,2015.This raised the lake's water level,and thus the areal extent of the lake water observed in the satellite images of the 2016-2017 hydrological year following the extreme weather events of 2015.The interplay of such extreme weather events and groundwater extraction for mining activities in the area complicates the assessment of the latter's effect on LSR,as the evaluation is constrained to the intervals between successive extreme weather events.In addition,the water level increases in summer because of the thawing of the snow.Close monitoring of the wetlands like LSR is essential to ensure their sustainability by considering both anthropic and climatic factors. 展开更多
关键词 Laguna Santa Rosa Salar de maricunga Lithium Water WETLAND Ecosystem
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