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Production of magnesium hydroxide from magnesium silicate for the purpose of CO_2 mineralisation - Part 1: Application to Finnish serpentinite

机译:用于CO_2矿化的硅酸镁生产氢氧化镁-第1部分:在芬兰蛇纹石中的应用

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Carbonation of abundantly available magnesium silicates such as serpentinites could be an attractive route to capture and store CO_2. In this paper we describe a novel route to produce magnesium hydroxide, Mg(OH)_2, from Finnish serpentinite. The resulting Mg(OH)_2 is much more reactive towards CO_2 than the parent serpentinite. The process route of producing Mg(OH)_2 as reported here involves a staged process of Mg extraction using a moderately high temperature solid/solid reaction of serpentinite and ammonium sulphate (AS) salt followed by precipitation of Mg(OH)_2 using aqueous ammonia. Tests at 400-550 °C showed promising results. An optimum range of reaction conditions for the extraction stage (Mg extraction) and precipitation stages (production of valuable products) of the process was also identified. The valuable solid products refer to Fe-containing compound (dark brown solid, exhibiting the properties of FeOOH) and Mg(OH)_2 (white precipitate), both precipitated in an aqueous solution with 25% (v/v) ammonia at pH 8-9 and 11-12, respectively. In some cases all Mg extracted from serpentinite was converted to magnesium Mg(OH)_2 with very small volumes of ammonia solution added. Apart from the relatively cheap AS salt reagent, the prospect of recovery and use of by-products of the process: ammonia gas, FeOOH, and AS salt presents significant benefits.
机译:大量可用的硅酸镁(例如蛇纹石)的碳酸化可能是捕获和储存CO_2的有吸引力的途径。在本文中,我们描述了一种从芬兰蛇纹石生产氢氧化镁Mg(OH)_2的新途径。所得的Mg(OH)_2对母体蛇纹石的CO_2反应性更高。如此处报道的生产Mg(OH)_2的工艺路线涉及使用阶段性的Mg萃取过程,该过程使用蛇纹石和硫酸铵(AS)盐的中等高温固/固反应,然后使用氨水沉淀Mg(OH)_2 。在400-550°C下的测试显示出令人满意的结果。还确定了该工艺的萃取阶段(镁萃取)和沉淀阶段(有价值产品的生产)的最佳反应条件范围。有价值的固体产物是指含铁的化合物(深棕色固体,表现出FeOOH的特性)和Mg(OH)_2(白色沉淀物),均在25%(v / v)氨水的pH 8水溶液中沉淀。 -9和11-12。在某些情况下,从蛇纹石中提取的所有Mg在添加非常少量的氨溶液的情况下都转化为Mg(OH)_2镁。除了相对便宜的AS盐试剂之外,回收和使用该方法的副产品(氨气,FeOOH和AS盐)的前景也很明显。

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