首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >The effects of performance and cleaning cycles of new tubular ceramic microfiltration membrane fouled with a model yeast suspension
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The effects of performance and cleaning cycles of new tubular ceramic microfiltration membrane fouled with a model yeast suspension

机译:新型酵母样悬浮液污染新型管状陶瓷微滤膜的性能和清洗周期的影响

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The efficiency of crossflow microfiltration processes is limited by membrane fouling and concentration polarization leading to permeate flux decline during operation. The experiments that were carried out in the laboratory were conducted to determine and investigate the performance, behaviour and the fouling susceptibility of new ceramic tubular microfiltration membranes during the crossflow filtration of yeast suspensions. The tubular membranes of nominal pore size 0.5 microns were fouled over a varied range of concentration, temperatures, pH, crossflow velocities and system pressures. The typical filtration conditions were at a temperature of 25°C, a system pressure of 1.5 bar and a concentration of 0.03 g/L yeast suspension. These parameters varied during subsequent investigations. After each experiment, the membrane and the rig were cleaned using a three stage cleaning process and was reused in order to replicate industrial filtration conditions. The effects of repeated fouling and cleaning cycles upon membrane flux over time and cleaning efficiency are investigated and their influence over time is also documented. For every experiment, the flux data was recorded over a 50 min period and the membrane was changed after the PWF declined considerably due to excessive fouling over time. Chemical cleaning consisted of a sequential application of a 1% caustic solution through the rig followed by a 2% hypochlorite solution and a 2% nitric solution, all at 50°C. The permeate flux was shown to decrease with filtration time during the development of the fouling layer. Once the fouling layer was developed and established, there appeared to be a leveling of permeate flux. The experimental results are presented in the report and the flux values at different conditions are presented.
机译:错流微滤工艺的效率受到膜污染和浓差极化的限制,导致运行过程中渗透通量下降。进行了在实验室中进行的实验,以确定和研究在酵母悬浮液的错流过滤过程中新型陶瓷管状微滤膜的性能,行为和结垢敏感性。在浓度,温度,pH,错流速度和系统压力的各种变化范围内,公称孔径为0.5微米的管状膜被污染。典型的过滤条件是在25°C的温度,1.5 bar的系统压力和0.03 g / L的酵母悬浮液浓度下。这些参数在随后的研究中有所不同。每次实验后,均使用三阶段清洁工艺清洁膜和装置,然后重复使用以重复工业过滤条件。研究了重复的结垢和清洗循环对膜通量和清洗效率的影响,并记录了它们随时间的影响。对于每个实验,在50分钟的时间内记录通量数据,在PWF因长时间结垢而大大降低后,更换膜。化学清洗包括依次在设备上施加1%的苛性溶液和2%的次氯酸盐溶液和2%的硝酸溶液,所有溶液均在50°C下进行。在结垢层形成过程中,渗透通量随过滤时间的增加而降低。一旦形成并建立了污垢层,似乎渗透物流平。报告中给出了实验结果,并给出了不同条件下的通量值。

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