Effects of calcination variables on quicklime yield of Nkalagu limestone

Benson Chinweuba Udeh, Chidinma Lovelyn Ani, Monday Omotioma
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Abstract

Calcination of Nkalagu limestone for the production of agricultural quicklime is presented. It entails improving the quality of limestone through calcination process. Appropriate scientific instruments/techniques (x-ray diffractometer and scanning electron microscopy) were used for the characterization of the uncalcined and calcined limestone samples. Effects of calcination variables on the quicklime yield were examined. Central composite design of design expert software was used to optimize the calcination process. Analyses of the results revealed that calcite was the major limestone’s mineralogical composition. Quadratic model adequately described the relationship between quicklime yield and calcination factors of temperature, particle size and time. Quadratic model adequately described the relationship between quicklime yield and calcination factors of temperature, particle size and time. The optimum yield of 74.00% was obtained at optima operating conditions; temperature of 937.41 0C, particle size of 85.99µm and time of 3.7 hrs. Characteristics of the quicklime showed that the calcination improved the quality of the sample in terms of mineralogical properties. It is recommended that the generated model should be used to develop chemical plant/equipment for limestone calcination process.
煅烧参数对恩卡拉古石灰石生石灰产率的影响
介绍了利用恩卡拉古石灰石煅烧生产农用生石灰。它需要通过煅烧工艺来提高石灰石的质量。采用适当的科学仪器/技术(x射线衍射仪和扫描电镜)对未煅烧和煅烧石灰石样品进行表征。考察了煅烧参数对生石灰收率的影响。采用设计专家软件的中心复合设计对煅烧工艺进行优化。分析结果表明,方解石是石灰岩的主要矿物学成分。二次模型较好地描述了生石灰产率与煅烧温度、粒度和时间等因素的关系。二次模型较好地描述了生石灰产率与煅烧温度、粒度和时间等因素的关系。在最佳操作条件下,最佳得率为74.00%;温度为937.41℃,粒径为85.99µm,时间为3.7 h。生石灰的特征表明,煅烧改善了样品的矿物学性质。建议将生成的模型用于开发石灰石煅烧工艺的化工厂/设备。
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