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Distinguishing between carbonate and non-carbonate precipitates from the carbonation of calcium-containing organic acid leachates

机译:区分含钙有机酸浸出液的碳酸盐形成的碳酸盐和非碳酸盐沉淀物

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摘要

Two organic acids were trialled for the extraction of calcium from steelmaking blast furnace slag for the purpose of precipitated calcium carbonate (PCC) production: succinic and acetic acids. While the leaching performance of succinic acid was superior, carbonation of its leachate did not result in the production of PCC, but rather the precipitation of calcium succinate, and only after the use of pH buffering agents (sodium hydroxide or bicarbonate). In contrast, carbonation of the acetic acid leachate resulted in the production of PCC, also with the aid of buffering agents. This discrepancy highlights the need for a combination of chemical, mineralogical and morphological analytical techniques for the accurate characterization of carbonation precipitates for future publications in this field. Additional effects observed in this study were the low atom-efficiency of the acids for calcium leaching, at ~20–30% of the stoichiometric value, the low extraction selectivity but high carbonation selectivity between calcium and magnesium, and the contamination of the formed PCC’s with small amounts of co-leached aluminium and silicon. Further work is warranted on the purification of this PCC synthesis route.
机译:为了沉淀生产碳酸钙(PCC)的目的,尝试了两种有机酸从炼钢高炉矿渣中提取钙:琥珀酸和乙酸。尽管琥珀酸的浸出性能优异,但其沥出物的碳酸化并未导致PCC的产生,而是导致了琥珀酸钙的沉淀,并且仅在使用了pH缓冲剂(氢氧化钠或碳酸氢钠)之后才产生。相反,乙酸浸出液的碳酸化也借助于缓冲剂导致了PCC的产生。这种差异突出表明,需要对化学,矿物学和形态分析技术进行组合,以准确表征碳酸化沉淀物,以供该领域将来的出版物使用。在这项研究中观察到的其他影响是:酸浸出酸的原子效率低,约为化学计量值的20%至30%;钙和镁之间的萃取选择性低但碳酸化选择性高,以及形成的PCC的污染与少量共浸出的铝和硅。有必要进一步纯化此PCC合成路线。

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