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从富硫酸钠盐水去除硫酸盐并回收钡作为钡盐混合物。

Sulphate removal from sodium sulphate-rich brine and recovery of barium as a barium salt mixture.

机构信息

Natural Resources and Environment, Council for Scientific and Industrial Research, Pretoria, South Africa.

出版信息

J Environ Sci Health A Tox Hazard Subst Environ Eng. 2013;48(8):933-8. doi: 10.1080/10934529.2013.762737.

Abstract

Sulphate removal from sodium sulphate-rich brine using barium hydroxide and recovery of the barium salts has been investigated. The sodium sulphate-rich brine treated with different dosages of barium hydroxide to precipitate barium sulphate showed sulphate removal from 13.5 g/L to less than 400 mg/L over 60 min using a barium to sulphate molar ratio of 1.1. The thermal conversion of precipitated barium sulphate to barium sulphide achieved a conversion yield of 85% using coal as both a reducing agent and an energy source. The recovery of a pure mixture of barium salts from barium sulphide, which involved dissolution of barium sulphide and reaction with ammonium hydroxide resulted in recovery of a mixture of barium carbonate (62%) and barium hydroxide (38%), which is a critical input raw material for barium salts based acid mine drainage (AMD) desalination technologies. Under alkaline conditions of this barium salt mixture recovery process, ammonia gas is given off, while hydrogen sulfide is retained in solution as bisulfide species, and this provides basis for ammonium hydroxide separation and recovery for reuse, with hydrogen sulfide also recoverable for further industrial applications such as sulfur production by subsequent stripping.

摘要

使用氢氧化钡从富含硫酸钠的盐水中去除硫酸盐并回收钡盐已得到研究。用不同剂量的氢氧化钡处理富含硫酸钠的盐水,在 60 分钟内将硫酸盐从 13.5 g/L 降低到 400mg/L 以下,钡与硫酸盐的摩尔比为 1.1。使用煤作为还原剂和能源,将沉淀的硫酸钡热转化为硫化钡,转化率达到 85%。从硫化钡中回收纯钡盐混合物,包括硫化钡的溶解和与氨反应,可回收碳酸钡(62%)和氢氧化钡(38%)的混合物,这是基于钡盐的酸性矿山排水(AMD)脱盐技术的关键输入原料。在这种钡盐混合物回收过程的碱性条件下,会释放出氨气,而硫化氢则以双硫化合物的形式保留在溶液中,这为氨的分离和回收提供了依据,可重复使用,硫化氢也可进一步用于生产硫磺等工业应用。

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