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首页> 外文期刊>Separation and Purification Technology >Impact of operating conditions on permeate flux and process economics for cross flow ceramic membrane ultrafiltration of surface water
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Impact of operating conditions on permeate flux and process economics for cross flow ceramic membrane ultrafiltration of surface water

机译:横流陶瓷膜超滤处理水对渗透通量的影响及工艺经济性

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Ceramic materials for microfiltration and ultrafiltration have a number of potential advantages over polymeric materials including chemical and thermal stability, physical strength, and a longer operational life. In this study the effects of tubular ceramic membrane hydrodynamic conditions (cross flow velocity and transmembrane pressure), in-line coagulation, and backwash flow rate on permeate flux using one type of 0.01 urn ceramic membrane with two different channel configurations were investigated. Factorial experimental design was used to construct a controlled set of experiments in which the effect of varying the operating parameters was measured. Flux decline and moving average flux were the derived response variables. Response surface methodology was then used to evaluate the experimental design results to find the operating conditions that resulted in either the least amount of flux decline or the highest moving average flux. A life cycle cost analysis determined that a plant designed and operated to achieve minimum flux decline resulted in a higher total plant cost than a plant designed and operated at more aggressive filtration conditions, which produced the higher moving average flux and more flux decline. This is due to the high material cost for a ceramic membrane.
机译:与聚合物材料相比,用于微滤和超滤的陶瓷材料具有许多潜在的优势,包括化学和热稳定性,物理强度以及更长的使用寿命。在这项研究中,研究了管状陶瓷膜流体动力学条件(横流速度和跨膜压力),在线凝结和反冲洗流速对使用两种不同通道结构的0.01陶瓷膜的渗透通量的影响。使用阶乘实验设计来构建一组受控的实验,其中测量了更​​改操作参数的效果。通量下降和移动平均通量是导出的响应变量。然后,使用响应面方法对实验设计结果进行评估,以找到导致磁通量下降最少或移动平均磁通量最高的运行条件。生命周期成本分析确定,设计和运行以实现最小通量下降的工厂导致的总工厂成本高于在更苛刻的过滤条件下设计和运行的工厂,后者产生更高的移动平均通量和更大的通量下降。这是由于陶瓷膜的高材料成本。

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