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Influence of regeneration variables during backwashing treatment into gas-phase after liquid filtration

机译:在液体过滤后反洗处理过程中再生变量对气相的影响

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摘要

In industrial solid/liquid separation, the removal of fine particles occurs in a wide array of industrial production applications and can be found in nearly every process plant. Especially the cake filtration is emphasized as advantageous principle for separation of suspension with a low solids content (0.01-1 v/v %). To maintain the separation performance, it is required to replace or regenerate the used filter cloth. The latter one can occur through backwashing treatment into liquid or gas phase whereby the gas discharge required an upstream drying process. The main task of that regeneration procedure is a most complete filter cake discharge to reduce the flow resistance of the filter for the subsequent filtration step. Recommendations for advantaged process variables doesn't exist and should be evaluate during this investigation. Investigations regarding to the regeneration procedure has shown, that the cake discharge into gas phase has significant differences to the discharge into liquid phase. Whereas the discharge into gas phase is created through an impulse, the liquid discharge can be interpreted as a slide on the filter cloth surface. Moreover, the backwashing variables are highly different (influence of backwashing pressure, filter cake thickness) between the different backwashing environments as a result of the characteristic surface forces. In this work, main attention is given to the particle system (particle size and filter cake thickness), the different weave types, assembly of the filter cloth and, of course, the backwashing pressure. The difference between a discharge in gas phase and liquid phase is described and its effect on the quality of the regeneration.
机译:在工业固体/液体分离中,在各种工业生产应用中,发生细颗粒的去除,并且可以在几乎每个过程植物中找到。特别是滤饼过滤被强调是有利的原理,用于将悬浮液与低固体含量分离(0.01-1 v / v%)。为了保持分离性能,需要更换或再生二手滤布。后者可以通过反洗处理进入液体或气相,从而气体放电所需的上游干燥过程。该再生步骤的主要任务是最完整的滤饼放电,以减少随后过滤步骤的过滤器的流动阻力。有利的过程变量的建议不存在,并且应该在这次调查期间进行评估。关于再生步骤的研究表明,滤饼排放到气相中与放电液相具有显着差异。虽然通过脉冲产生气相的放电,但是液体放电可以被解释为滤布表面上的载玻片。此外,由于特征表面力的结果,反洗变量在不同的反洗环境之间的反冲洗压力的高度不同(反洗压力,滤饼厚度)之间的影响。在这项工作中,主要注意粒子系统(粒度和滤饼厚度),不同的编织类型,滤布组装,当然,洗涤压力。描述了气相和液相放电之间的差异,其对再生质量的影响。

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