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富钾页岩酸浸提钾实验 被引量:2
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作者 刘杰 韩跃新 印万忠 《矿冶》 CAS 2008年第1期38-41,共4页
针对朝阳地区富钾页岩进行酸浸提钾的实验研究。在适宜的条件下对富钾页岩进行焙烧预处理,对焙烧产物进行酸浸提钾的条件实验,确定了适宜的酸浸提钾条件为:液固比为3,硫酸浓度为33.03%,浸出温度为80℃和浸出时间为1h。在此条件下,钾的... 针对朝阳地区富钾页岩进行酸浸提钾的实验研究。在适宜的条件下对富钾页岩进行焙烧预处理,对焙烧产物进行酸浸提钾的条件实验,确定了适宜的酸浸提钾条件为:液固比为3,硫酸浓度为33.03%,浸出温度为80℃和浸出时间为1h。在此条件下,钾的浸出率可达88.08%。通过XRD分析,初步确定了在酸浸过程中的主要物相变化规律及反应机理。 展开更多
关键词 页岩 酸浸提钾 反应机理
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磷矿系含钾页岩的湿法酸耦合提钾
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作者 万革枝 王岩 陈金芳 《化工矿物与加工》 CAS 北大核心 2016年第1期4-7,共4页
根据磷矿系含钾页岩的特点,研究了湿法磷、钾耦合酸浸提钾的工艺条件,在含钾页岩与磷矿的质量配比为0.8,硫酸质量分数为50%,液固比为3,反应温度120℃和反应时间5h的条件下,钾的浸出率达到76.08%。
关键词 难溶性 磷矿 酸浸提钾 热力学
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Potassium recovery from muscovite using NaCl-roasting followed by H_(2)SO_(4)-leaching 被引量:3
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作者 Sandeep Kumar JENA Baijayantimala MOHANTY +2 位作者 Geetikamayee PADHY Jogeshwara SAHU Sapan Kumar KANDI 《Journal of Central South University》 SCIE EI CAS CSCD 2022年第6期1881-1894,共14页
The present study aims at the recovery of potassium from muscovite mica(which contains K_(2)O;~10 wt%)using NaCl-roasting coupled with H_(2)SO_(4)-leaching process.The preliminary acid leaching studies applying differ... The present study aims at the recovery of potassium from muscovite mica(which contains K_(2)O;~10 wt%)using NaCl-roasting coupled with H_(2)SO_(4)-leaching process.The preliminary acid leaching studies applying different mineral acids resulted in a potassium recovery of 8%−18%.The optimum leaching conditions for the maximum recovery were 4 mol/L H_(2)SO_(4),60 min leaching time and liquid-solid ratio 4 mL/g at 90℃.However,the roasting of muscovite with additive NaCl(muscovite:NaCl mass ratio of 1:1.00,900℃,45 min)followed by H_(2)SO_(4)-leaching(95℃,60 min)extracted potassium to the tune of 98%.Under similar roasting conditions,the H_(2)O-leaching process extracted only 60%of potassium.The effects of various roasting and leaching parameters such as temperature,time,NaCl concentration,acid concentration,liquid-solid ratio on potassium extraction were evaluated.The appearance of the sylvite(KCl)mineral phase in the NaCl-roasted muscovite and its disappearance in the acid/water leached residue confirmed the physical and chemical distortions of the muscovite crystal structure.The possible mechanism of potassium release from the complex muscovite structure was elucidated based on available literature substantiated by characterizations using X-ray diffraction(XRD)and scanning electron microscopy with energy dispersive X-rays spectroscopy(SEM-EDX). 展开更多
关键词 MUSCOVITE ROASTING acid leaching potassium recovery SYLVITE
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