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首页> 外文期刊>Journal of geophysical research. Planets >Laboratory-simulated acid-sulfate weathering of basaltic materials: Implications for formation of sulfates at Meridiani Planum and Gusev crater, Mars
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Laboratory-simulated acid-sulfate weathering of basaltic materials: Implications for formation of sulfates at Meridiani Planum and Gusev crater, Mars

机译:Laboratory-simulated acid-sulfate风化的玄武岩材料:对形成的影响硫酸盐在子午平原和古谢夫陨石坑,3

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摘要

Acid-sulfate weathering of basaltic materials is a candidate formation process for the sulfate-rich outcrops and rocks at the MER rover Opportunity and Spirit landing sites. To determine the style of acid-sulfate weathering on Mars, we weathered basaltic materials (olivine-rich glassy basaltic sand and plagioclase feldspar-rich basaltic tephra) in the laboratory under different oxidative, acid-sulfate conditions and characterized the alteration products. We investigated alteration by (1) sulfuric-acid vapor (acid fog), (2) three-step hydrothermal leaching treatment approximating an “open system,” and (3) single-step hydrothermal batch treatment approximating a “closed system.” In acid fog experiments, Al-, Fe-, and Ca-sulfates and amorphous silica formed from plagioclase-rich tephra, and Mg- and Ca-sulfates and amorphous silica formed from the olivine-rich sands. In three-step leaching experiments, only amorphous Si formed from the plagioclase-rich basaltic tephra, and jarosite, Mg-, and Ca-sulfates and amorphous silica formed from olivine-rich basaltic sand. Amorphous silica formed under single-step experiments for both starting materials. On the basis of our experiments, jarosite formation in Meridiani outcrop is potential evidence for an open system acid-sulfate weathering regime. Waters rich in sulfuric acid percolated through basaltic sediment, dissolving basaltic phases (e.g., olivine) and forming jarosite, other sulfates, and iron oxides. Aqueous alteration of outcrops and rocks on the West Spur of the Columbia Hills may have occurred when vapors rich in SO2 from volcanic sources reacted with basaltic materials. Soluble ions from the host rock (e.g., olivine) reacted with S to form Ca-, Mg-, and other sulfates along with iron oxides and oxyhydroxides.
机译:Acid-sulfate风化玄武岩的材料候选人硫酸盐的形成过程露头和岩石在火星的机会和精神的着陆地点。acid-sulfate风化在火星上,我们风化玄武岩材料(olivine-rich玻璃玄武岩沙子和斜长石feldspar-rich玄武岩火山灰)实验室在不同和氧化,acid-sulfate条件变更产品的特征。由(1)硫酸进行变更蒸汽(酸雾),(2)三步热液浸出处理近似一个“开放系统”,(3)单步热液批次治疗近似“封闭系统”。酸雾实验,Al - Fe -, Ca-sulfates并从plagioclase-rich形成无定形氧化硅火山灰和Mg - Ca-sulfates和非晶态硅olivine-rich砂形成的。三步浸出实验,只有非晶态如果plagioclase-rich形成的玄武岩火山灰和黄钾铁矾,Mg -, Ca-sulfates和从olivine-rich无定形二氧化硅形成的玄武岩沙子。单步开始实验材料。黄钾铁矾的形成在子午线地盘露头潜在的证据,一个开放的系统acid-sulfate风化政权。通过玄武岩硫酸扩散沉淀物,溶解玄武岩阶段(例如,橄榄石)和其他形成黄钾铁矾,硫酸盐,和铁氧化物。和岩石西哥伦比亚山的刺激可能发生在蒸汽富含二氧化硫的与玄武岩火山源反应材料。可溶性离子从主机的岩石(如橄榄石)与年代反应形成钙、镁、和其他随着铁氧化物和硫酸盐氢氧化物。

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