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Preparation of boric acid from low-grade ascharite and recovery of magnesium sulfate 被引量:5
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作者 李杰 樊占国 +3 位作者 刘艳丽 刘素兰 姜涛 奚正平 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2010年第6期1161-1165,共5页
Boric acid and kieserite were prepared from low-grade ascharite by sulfuric acid method.This method results in the recovery of 71.06%and 45.03%for boric acid and kieserite,respectively.Meanwhile,the boric acid was pre... Boric acid and kieserite were prepared from low-grade ascharite by sulfuric acid method.This method results in the recovery of 71.06%and 45.03%for boric acid and kieserite,respectively.Meanwhile,the boric acid was precipitated from the filtrate at low temperature and the solution was recycled without discharging waste liquid in the whole process.The influence of amount of sulfuric acid,mass fraction of sulfuric acid,reaction temperature and reaction time on the leaching rate of boric acid were studied. The results show that the leaching rate of boric acid reaches 93.80%under the following conditions:the amount of sulfuric acid is 85%of theoretical dosage;the mass fraction of sulfuric acid is 25%;reaction temperature is 95℃;and the reaction time is 100 min. Meanwhile,the effects of mass fraction of magnesium sulfate,crystallization temperature and crystallization time on the crystallization of kieserite were investigated and the optimal crystallization conditions are obtained:the mass fraction of magnesium sulfate is 28%;the crystallization temperature is 180℃and the crystallization time is 4h. 展开更多
关键词 low-grade ascharite sulfuric acid method high temperature crystallization boric acid kieserite
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Acetalization of Carbonyl Compounds as Pentaerythritol Diacetals and Diketals in the Presence of Cellulose Sulfuric Acid as an Efficient, Biodegradable and Reusable Catalyst 被引量:6
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作者 Shaterian, Hamid Reza Rigi, Fatemeh 《Chinese Journal of Chemistry》 SCIE CAS CSCD 2012年第3期695-698,共4页
This paper reports a practical and green method for the acetalization of carbonyl compounds as pentaerythritol diacetals and diketals derivatives using cellulose sulfuric acid as a biodegradable and reusable solid aci... This paper reports a practical and green method for the acetalization of carbonyl compounds as pentaerythritol diacetals and diketals derivatives using cellulose sulfuric acid as a biodegradable and reusable solid acid catalyst under thermal solvent-free conditions. 展开更多
关键词 synthetic method aldehyde cellulose sulfuric acid pentaerythritol solvent-free acetalization
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