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Dewatering mechanism of gasification fine slag by coupled mechanical force fields and its potential guidance for efficient dewatering process

机译:耦合机械田地气化细渣的脱水机理及其高效脱水过程的潜在指导

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摘要

Gasification fine slag is one of the industrial wastes of the coal gasification, and the efficient dewatering is indispensable for further dispose. The enhanced dewatering process of gasification fine slag was achieved by innovative coupled mechanical dewatering force fields and dewatering mechanisms were explained in this study. The results showed that the dewatering process under pressure presented a three-stage process, the filtration and compaction stages of the dewatering process were accelerated at higher pressures. Vibration field improved the dewatering process linearly by filling the gaps among particles and accelerating particle compaction. Synergistic action of pressure and vibration frequency on dewatering was confirmed. The dewatering promotion effect of vibration frequency was obvious at high pressure. In dewatering process, the energy consumption of coupled mechanical dewatering is only 37.4% of that of evaporation dewatering, which presents the advantage of coupled mechanical dewatering process in energy consumption. In this paper, 13% moisture reduction of sample within 3 min via coupled mechanical dewatering force fields was studied, which will provide references for deep dewatering process and cleaner production of gasification fine slag in industry.
机译:气化精细渣是煤气化的工业废物之一,有效的脱水对于进一步处理是必不可少的。通过创新的耦合机械脱水力来实现气化细渣的增强脱水过程,并在本研究中解释了脱水机制。结果表明,脱水过程在压力下呈现了三阶段过程,在较高压力下脱水过程的过滤和压实阶段加速。振动场通过填充颗粒之间的间隙并加速颗粒压实来改善脱水过程。证实了压力和振动频率对脱水的协同作用。振动频率的脱水促进效果在高压下显而易见。在脱水过程中,耦合机械脱水的能量消耗仅为蒸发脱水的37.4%,这提出了耦合机械脱水过程的能量消耗的优势。本文研究了通过耦合机械脱水力领域3分钟内的13%样品的水分降低,这将为工业中深水过程和净化的气化细渣生产提供参考。

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