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EFFECT OF FORMATION AGE ON THE MANUFACTURING PROCESS OF ARAGONITE PRECIPITATED CALCIUM CARBONATE

机译:形成年龄对文石沉淀碳酸钙制备工艺的影响

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Korea has about 68 hundreds million tons of limestone's reserves. Still, high-Ca~(2+) limestone containing more than 52% calcium oxide makes up for about 12% only; hence the need for securing and effectively developing limestone. The best solution is to manufacture precipitated calcium carbonate (PCC). The synthesis of PCC using high-Ca~(2+) limestone has several advantages including the efficient development of resources and easing the import dependence on PCC. The first step is the selection of suitable limestone for the synthesis of PCC. In this study, formation age was decided as the primary key point, with its effect on calcination, hydration, and synthesis of aragonite investigated. Results showed that the yield of aragonite increased when newer limestone was used. On the other hand, neither the activity and bulk density of quicklime nor the particle size of aragonite was affected by the formation age, although special values were registered following each formation age. Moreover, the bulk density of quicklime and particle size of aragonite tended to increase with decreasing activity. This result is different from that of the other experiment. Therefore, a suitable method for measuring the activity of quicklime for use in the manufacture of PCC must be established.
机译:韩国拥有约6.8亿吨石灰石储量。仍然,含52%以上氧化钙的高Ca〜(2+)石灰石仅占约12%。因此,需要确保并有效开发石灰石。最好的解决方案是制造沉淀碳酸钙(PCC)。使用高Ca〜(2+)石灰石合成PCC具有许多优势,包括有效开发资源和减轻对PCC的进口依赖。第一步是选择适合合成PCC的石灰石。在这项研究中,以形成年龄为主要重点,研究了其对煅烧,水合和文石合成的影响。结果表明,使用较新的石灰石可提高文石的收率。另一方面,生石灰的活性和堆积密度以及文石的粒径都不受形成年龄的影响,尽管在每个形成年龄之后都记录了特殊的值。而且,生石灰的堆积密度和文石的粒径倾向于随着活性的降低而增加。该结果与其他实验的结果不同。因此,必须建立一种合适的方法来测量用于制造PCC的生石灰的活性。

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