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Assessment of nylon 6, 6 nanofibre membrane for microalgae harvesting

机译:评估尼龙6,6纳米纤维膜进行微藻收获

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Pressure driven membrane processes have been proven suitable for the separation of microorganisms in many of biotechnical applications. In this paper, we report the preparation and characterization of a novel nylon 6, 6 nanofibers membranes and applied it for filtration of Chlorella vulgaris broth. Its performance is compared with a phase inverted polyvinylidene fluoride (PVDF) membrane, an established membrane material for this application. The tests on the filterability of both membranes and their harvesting efficiency were conducted. Results show that nanofiber membrane is more hydrophilic (contact angle of zero), and has 45% higher surface pore size and 20% surface pore population that contribute significantly into its higher clean water permeability (of 1018 and 493 l/m~2hbar for nanofiber and PVDF membranes respectively). Filterability results show that nanofiber membrane has superior advantages over the phase inverted one: 2-5 times higher in productivity while maintaining similar rejection of 92%. Those results were consistent for three independent filterability tests. This finding confirms the potential application of nanofiber membrane. However, further development with respect to improving its mechanical strength and its ability to be assembled into a membrane module should be critical to serve its promise in this particular application.
机译:已经证明了压力驱动的膜方法适用于在许多生物技术应用中分离微生物。在本文中,我们报告了一种新型尼龙6,6纳米纤维膜的制备和表征,并施加其用于过滤小球藻肉汤。将其性能与相位倒聚偏二氟乙烯(PVDF)膜进行比较,该应用是该应用的已建立的膜材料。对两种膜的过滤性及其收获效率的测试进行了测试。结果表明,纳米纤维膜是更亲水的(零接触角),并且具有较高的45%的表面的孔径和20%的表面孔隙人口,对于纳米纤维显著贡献到其更高的洁净水渗透性(1018 493升/米〜2hbar和PVDF膜分别)。过滤性结果表明,纳米纤维膜在相倒的相中具有优异的优点:生产率高2-5倍,同时保持相似的抑制92%。这些结果对于三种独立的过滤性测试是一致的。该发现证实了纳米纤维膜的潜在应用。然而,关于改善其机械强度的进一步发展及其组装成膜组件的能力应该是在该特定应用中服务其承诺的关键。

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