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首页> 外文期刊>ACS applied materials & interfaces >Macrovoid-Inhibited PVDF Hollow Fiber Membranes via Spinning Process Delay for Direct Contact Membrane Distillation
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Macrovoid-Inhibited PVDF Hollow Fiber Membranes via Spinning Process Delay for Direct Contact Membrane Distillation

机译:通过纺丝过程延迟进行直接接触膜蒸馏的宏观抑制的PVDF中空纤维膜

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A polyvinylidene fluoride (PVDF) hollow fiber membrane was fabricated through water-induced dope crystallization by allowing a facile spinning process delay (SPD) in the nonsolvent-induced phase separation (NIPS) process for direct contact membrane distillation (DCMD). The SPD was achieved by the addition of a small amount of water to the PVDF dope solution that was held in a closed container for a particular time. The crystalline property of the PVDF dope solution was investigated by differential scanning calorimetry. The obtained PVDF hollow fiber membranes were characterized with different techniques, including field emission scanning electron microscopy, X-ray diffraction, and the mechanical strength. Both the formation mechanism and properties were studied for the membranes with different SPD times. The results showed that macrovoid-inhibited PVDF membranes were obtained from 12 days of the SPD via the crystallization-dominated membrane formation process. The obtained membrane 4D-12 exhibited desirable membrane structure and properties for DCMD, which includes an improved liquid entry pressure of 2.25 bar, a surface water contact angle of 129 degrees, a maximum pore size of 0.40 mu m, and a mean pore size of 0.34 mu m. The membrane 4D-12 possessed a twofold increase in both energy efficiency and permeate water flux in DCMD and stable permeate water flux and salt rejection through 224 h of continuous desalination operation. Compared to the commonly used approach by adding chemicals to the external coagulant, the SPD method provided a low-cost and environmentally friendly alternative to pursuing the macrovoid-free PVDF membranes for DCMD.
机译:通过在非溶剂诱导的相分离(NIPS)方法中通过用于直接接触膜蒸馏(DCMD),通过水诱导的掺杂结晶制造聚偏二氟乙烯(PVDF)中空纤维膜通过水诱导的掺杂结晶制造。通过将少量水加入PVDF掺杂溶液以进行特定时间的封闭容器中的PVDF掺杂溶液来实现SPD。通过差示扫描量热法研究了PVDF掺杂溶液的结晶性能。得到的PVDF中空纤维膜以不同的技术表征,包括场发射扫描电子显微镜,X射线衍射和机械强度。对具有不同SPD次的膜进行了形成机制和性质。结果表明,通过结晶型膜形成方法从SPD的12天获得宏观抑制的PVDF膜。所获得的膜4d-12表现出理想的膜结构和用于DCMD的性质,其包括改进的2.25巴的液体进入压力,表面水接触角129度,最大孔径为0.40μm,以及平均孔径0.34亩。膜4D-12在DCMD中的能量效率和渗透物水通量的两种增加和稳定的渗透水通量和盐排斥通过224小时的连续脱盐操作。与常用的方法相比,通过向外部凝结剂添加化学品,SPD方法提供了低成本和环保的替代方案,以追求DCMD的免巨晕的PVDF膜。

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