SOLUBILITY IN ALCOHOLS AND ALCOHOLYSIS REACTIONS OF CARBONATES, SULFIDES, CYANIDES, AND PHOSPHATES OF ALKALI METALS

IF 0.6 Q4 CHEMISTRY, MULTIDISCIPLINARY
A. N. Evdokimov, A. V. Kurzin, A. A. Sivakov, V. S. Golikova
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引用次数: 2

Abstract

The published data on the solubilities of lithium, sodium, potassium, rubidium and cesium carbonates; sodium bicarbonate; sodium sulphide; potassium and sodium cyanides; orthophosphates, hydro- and dihydroorthophosphates of potassium and sodium, as well as sodium pyrophosphate in methanol, ethanol, 2-propanol, 2-methyl-1-propanol, benzyl alcohol, ethylene glycol, methyl cellosolve and glycerol have been considered and collected. A little bit information for salts has been taken from the most common solubility handbooks, but most of data was selected from scientific articles. There is an acid-base equilibrium with the formation of the corresponding alcoholates in the systems "potassium or sodium carbonate/methanol, ethanol, ethylene glycol, ethylene glycol monomethyl ether", "sodium sulphide/methanol, ethanol, 2-propanol, 2-methyl-1-pro-panol, benzyl alcohol", "potassium cyanide/methanol, ethylene glycol, glycerol", "potassium or sodium orthophosphate/ethylene glycol", and "sodium pyrophosphate/ethylene glycol". The mechanism of the reaction of alcoholysis and the formation of alcoholates from the alkali metal salts and alcohols is based on the distribution of the components in phases. Analysis of all phases in the alcohol solutions of alkali metal salts proved the presence of an alcoholysis reaction in some salt/alcohol systems. The concentrations of dissolved salts in alcoholate-generating systems are significantly lower than those determined by the gravimetric method without taking into account the alcoholysis reaction and are considered in the common handbooks "solubilities of the corresponding salts in alcohols". A classification of inorganic alkali metal salts reacting with alcohols in the alcoholysis reaction has been proposed. The analysis of literature data showed that along hydroxides and alkali metal salts, the hydrides, organometallic compounds, acetylenides, nitrides, amides (including alkyl amides) as well as azides can react with alcohols to form alkoxides by alcoholysis reaction. Alcoholysis of salts can be considered as a promising method for the production of alkali metal alkoxides in which the salt is used instead of metal or hydroxide.
碱金属的碳酸盐、硫化物、氰化物和磷酸盐在醇中的溶解度和醇解反应
已发表的碳酸锂、钠、钾、铷和铯的溶解度数据;小苏打;硫化钠;氰化钾和氰化钠;考虑并收集了甲醇、乙醇、2-丙醇、2-甲基-1-丙醇、苯甲醇、乙二醇、甲基纤维素溶液和甘油中的正磷酸盐、钾和钠的氢正磷酸盐和二氢正磷酸盐以及焦磷酸钠。关于盐的少量资料取自最常见的溶解度手册,但大部分数据选自科学文章。在“碳酸钾或碳酸钠/甲醇、乙醇、乙二醇、乙二醇单甲醚”、“硫化钠/甲醇、乙醇、2-丙醇、2-甲基-1-原甲醇、苯甲醇”、“氰化钾/甲醇、乙二醇、甘油”、“正磷酸钾或正磷酸钠/乙二醇”和“焦磷酸钠/乙二醇”体系中形成相应的醇类,形成酸碱平衡。碱金属盐和醇的醇解反应和生成醇酸盐的机理是基于相中组分的分布。对碱金属盐醇溶液中所有相的分析证明,在某些盐/醇体系中存在醇解反应。在不考虑醇解反应的情况下,产醇体系中溶解盐的浓度明显低于用重量法测定的浓度,并在通用手册“相应盐在醇中的溶解度”中予以考虑。提出了在醇解反应中与醇反应的无机碱金属盐的分类。文献资料分析表明,氢化物、有机金属化合物、乙炔、氮化物、酰胺(包括烷基酰胺)和叠氮化物沿氢氧化物和碱金属盐可与醇解反应生成醇氧化物。盐的醇解法是一种很有前途的生产碱金属烷氧化物的方法,用盐代替金属或氢氧化物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
CiteScore
1.40
自引率
44.40%
发文量
83
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