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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >Concentration of ginseng extracts aqueous solution by vacuum membrane distillation 2. Theory analysis of critical operating conditions and experimental confirmation
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Concentration of ginseng extracts aqueous solution by vacuum membrane distillation 2. Theory analysis of critical operating conditions and experimental confirmation

机译:通过真空膜蒸馏浓缩人参提取液的水溶液2.关键操作条件的理论分析和实验确认

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摘要

Membrane fouling mechanism in the vacuum membrane distillation (VMD) was studied both theoretically and experimentally by using ginseng crude extract aqueous solution as a model concentrate system. The concept of critical fouling operating conditions in VMD within which fouling is difficult to occur was introduced for the first time. By analyzing the forces acting on solute particles (microaggregates of biomacromolecules in the ginseng crude extracts solutions), three mathematical relations, namely the expressions of critical operating conditions, to distinguish between solutes depositing on membranes and those suspending in solutions, were derived. Then the effects of operating conditions including the cross-flow velocity, the feed temperature, and the vacuum degree on membrane flux were experimentally evaluated. The experimental results indicated that even under constant operating conditions, the membrane distillation flux could not maintain a stable level when one of following occurred: (1) the vacuum degree increased to its critical value, (2) the feed temperature increased to its critical value, or (3) the feed cross-flow velocity decreased to its critical value. The flux instability suggests that the critical flux had been exceeded and membrane fouling was taking place. These results confirmed the existence of critical fouling operating conditions in the VMD process.
机译:以人参粗提取物水溶液为模型浓缩液,从理论和实验两方面研究了真空膜蒸馏(VMD)中的膜污染机理。首次引入了VMD中难以发生结垢的关键结垢运行条件的概念。通过分析作用于溶质颗粒(人参粗提液中的生物大分子的微聚集体)的力,得出了三种数学关系,即临界操作条件的表达,以区分沉积在膜上的溶质和悬浮在溶液中的溶质。然后,通过实验评估了横流速度,进料温度和真空度等操作条件对膜通量的影响。实验结果表明,即使在恒定的操作条件下,当发生以下情况之一时,膜蒸馏通量也不能保持稳定的水平:(1)真空度提高到其临界值,(2)进料温度升高到其临界值,或(3)进料错流速度降至其临界值。通量不稳定性表明已超过临界通量,并且发生了膜污染。这些结果证实了在VMD工艺中存在严重的结垢操作条件。

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