State Key Laboratory of Separation Membranes and Membrane Processes, Tianjin Polytechnic University, Tianjin, 300387, China.
School of Environmental and Chemical Engineering, Tianjin Polytechnic University, Tianjin, 300387, China.
Environ Sci Pollut Res Int. 2018 Sep;25(25):24639-24652. doi: 10.1007/s11356-018-2415-2. Epub 2018 Jun 18.
A low-cost device was developed to monitor the integrity of hollow fiber membrane by real-time online detecting and measuring air bubbles in the permeate flow. When a breakage occurs in the fiber membrane system, air bubbles will find their ways to enter the permeate flow. The monitoring device consists of two pairs of platinum probes attached to a pipe, along which the permeate flows. Membrane's breakage was identified by the voltage changes between the two pairs of probes when air bubbles in the permeate touch them. There was no addition of any other chemicals or materials into the system that would jeopardize final products of the membrane process. Experimental results showed that the voltage signal changes before and after a breach of membrane were obvious in the normal operation conditions. The smallest diameter of the bubbles that can be detected by the monitoring device was 50 μm, which was captured and identified with a high-speed camera. Furthermore, the sensitivity of device with two pairs of probes improved by 5~9% over that with one pair of probes. Finally, cost of the proposed device was roughly estimated only about 70 US dollars and the detection result was highly consistent with that obtained with the prevailing particle counters of several thousand US dollars.
开发了一种低成本的装置,通过实时在线检测和测量渗透流中的气泡来监测中空纤维膜的完整性。当纤维膜系统发生破裂时,气泡会进入渗透流。监测装置由两对铂探针附着在一根管道上组成,渗透流沿着该管道流动。当渗透流中的气泡接触到探针时,通过测量两对探针之间的电压变化来识别膜的破裂。系统中没有添加任何其他化学物质或材料,这些物质可能会危及膜过程的最终产品。实验结果表明,在正常运行条件下,膜破裂前后的电压信号变化明显。监测装置可以检测到的最小气泡直径为 50μm,并用高速摄像机进行捕捉和识别。此外,两对探针的装置灵敏度比一对探针的提高了 5%~9%。最后,该装置的成本估计约为 70 美元,检测结果与几千美元的现行粒子计数器的检测结果高度一致。