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首页> 外文期刊>Journal of CO2 Utilization >Phase evolution during accelerated CO2 mineralization of brucite under concentrated CO2 and simulated flue gas conditions
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Phase evolution during accelerated CO2 mineralization of brucite under concentrated CO2 and simulated flue gas conditions

机译:浓缩二氧化碳和模拟烟道气条件下布鲁耐力加速CO2矿化期间的相位演化

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Experimental work on the carbonation of brucite has been carried out in the temperature and pressure ranges of 50-120 degrees C and 1-10 bar respectively, using concentrated CO2 and simulated flue gas. At 120 degrees C hydromagnesite and trace amounts of magnesite were identified. Highly to semi-ordered dypingite like-phases and nesquehonite, coexisting with a possibly amorphous carbonate phase, were identified at 50 degrees C. The dehydration temperatures and chemical composition of these amorphous phases are very close to those of crystalline, stoichiometric nesquehonite. This probably amorphous phase nourishes the late formation of dypingite. This latter mineral gradually undergoes a cell shrinkage due to the partial loss of molecular waters, becoming structurally more ordered as the carbonation reaction proceeds. It remains unclear whether nesquehonite formed directly from brucite or from the crystallization of an amorphous precursor. However, nesquehonite is precursor of dypingite and/or the possibly amorphous phase. Only crystalline carbonate phases were observed at 120 degrees C. Concentrated CO2 experiments yielded the highest amounts (up to 37 wt.%) of CO2 sequestered at 10 bar and 16 h of reaction, reaching an almost complete carbonation of brucite (>98 %). On the other hand, flue gas experiments results showed higher amounts of CO2 sequestered per unit of CO2 partial pressure than with concentrated CO2.
机译:使用浓缩的CO 2和模拟烟道气体分别在50-120℃和1-10巴的温度和压力范围内进行了实验性研究。在120摄氏度下,鉴定了含水质岩石和痕量的菱镁矿。高度为半订购的二甘石类和Nesquehonite,与可能是无定形碳酸酯相的共存,在50℃下鉴定出这些无定形阶段的脱水温度和化学组成非常接近结晶,化学计量的NesqueHonite。这可能是无定形相滋养二甘石的后期形成。由于分子水的部分损失,后一种矿物逐渐经历细胞收缩,随着碳酸化反应进行的,在结构上变得更加有序。它仍然不清楚是否直接由布鲁氏素形成或从非晶前体的结晶形成的Nesquehonite。然而,NesqueHonite是二甘石的前体和/或可能是无定形相的前体。在120℃下观察结晶碳酸酯相。浓缩的CO 2实验在10巴的10巴和16小时下鉴定最多(最多37重量%)的CO 2,达到近几乎完全的Brucite碳酸盐(> 98%) 。另一方面,烟道气实验结果表明,每单位二氧化碳部分压力含量较高的CO 2,而不是浓缩CO 2。

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