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Performance Comparison between Polyvinylidene Fluoride and Polytetrafluoroethylene Hollow Fiber Membranes for Direct Contact Membrane Distillation

机译:聚偏氟乙烯和聚四氟乙烯中空纤维膜在直接接触膜蒸馏中的性能比较

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摘要

Increasing water demand coupled with projected climate change puts the Southwestern United States at the highest risk of water sustainability by 2050. Membrane distillation offers a unique opportunity to utilize the substantial, but largely untapped geothermal brackish groundwater for desalination to lessen the stress. Two types of hydrophobic, microporous hollow fiber membranes (HFMs), including polytetrafluoroethylene (PTFE) and polyvinylidene fluoride (PVDF), were evaluated for their effectiveness in direct contact membrane distillation (DCMD). Water flux and salt rejection were measured as a function of module packing density and length in lab-scale systems. The PVDF HFMs generally exhibited higher water flux than the PTFE HFMs possibly due to thinner membrane wall and higher porosity. As the packing density or module length increased, water flux declined. The water production rate per module, however, increased due to the larger membrane surface area. A pilot-scale DCMD system was deployed to the 2nd largest geothermally-heated greenhouse in the United States for field testing over a duration of about 22 days. The results demonstrated the robustness of the DCMD system in the face of environmental fluctuation at the facility.
机译:到2050年,不断增长的需水量和预计的气候变化将使美国西南部面临水可持续发展的最高风险。膜蒸馏为利用大量但尚未开发的地热微咸地下水脱盐提供了独特的机会,以减轻压力。评估了两种类型的疏水性微孔中空纤维膜(HFM),包括聚四氟乙烯(PTFE)和聚偏二氟乙烯(PVDF)在直接接触膜蒸馏(DCMD)中的有效性。在实验室规模的系统中,测量了水通量和脱盐率与模块装填密度和长度的关系。 PVDF HFM通常显示出比PTFE HFM高的水通量,这可能是由于膜壁更薄且孔隙率更高。随着填充密度或组件长度的增加,水通量下降。但是,由于更大的膜表面积,每个模块的产水率增加了。在美国第二大地热加热温室中部署了中试规模的DCMD系统,进行了大约22天的现场测试。结果表明,面对工厂环境变化,DCMD系统的耐用性。

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