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Energy and cement quality optimization of a cement grinding circuit

机译:水泥研磨电路的能量和水泥质量优化

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摘要

This study aimed at optimizing both the energy efficiency and the quality of the end product by modifying the existing flowsheet of the cement grinding circuit. As a general application, mill filter stream is sent to the air classifier owing to its coarser size distribution than the desired product. However, the study proved that some further evaluations i.e., quality tests and chemical assays, could make it possible to treat this stream as a final product. Consequently, directing this stream to the final product silo could be considered. Within the study, sampling survey was undertaken initially that was followed by the modelling and simulation works. The calculations implied that the production rate increased by 4.45% that corresponded to energy saving of 4.26%. As the plant decided to change the flow sheet, another sampling campaign was arranged to validate the outputs of the simulation studies. In that case, the real data showed that the increase in production rate was 3.68% and 28-Days strength of the cement improved by 2.9%. As a result, the simulation outputs were found to be in agreement with the real data hence the efficiency of the cement production, both quality and energy, for a given circuit was improved. (C) 2018 The Society of Powder Technology Japan. Published by Elsevier B.V. and The Society of Powder Technology Japan. All rights reserved.
机译:本研究旨在通过修改水泥磨削电路的现有流程,优化能源效率和最终产品的质量。作为一般应用,由于其粗略尺寸分布而来,磨机滤波器流被发送到空气分级器,而不是所需的产品。然而,研究证明,一些进一步的评估,即质量试验和化学试验可以使其成为最终产品的这种流。因此,可以考虑将该流引导到最终产品筒仓。在该研究中,最初开展了采样调查,然后是建模和模拟作品。计算暗示,生产率增加了4.45%,与节能为4.26%。由于工厂决定改变流程表,另一个采样活动被安排验证模拟研究的输出。在这种情况下,实际数据显示,生产率的增加为3.68%,水泥的28天强度提高2.9%。结果,发现模拟输出与真实数据一致,因此改善了对给定电路的水泥生产的效率,质量和能量。 (c)2018年日本粉末科技学会。由elsevier b.v发表。和日本粉末科技会。版权所有。

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