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Potential of nanofiltration and low pressure reverse osmosis in the removal of phosphorus for aquaculture

机译:纳滤和低压反渗透在水产养殖除磷中的潜力

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Aquaculture activities in developing countries have raised deep concern about nutrient pollution, especially excess phosphorus in wastewater, which leads to eutrophication. NF, NF90, NF450 and XLE membranes were studied to forecast the potential of nanofiltration and low pressure reverse osmosis in the removal of phosphorus from aquaculture wastewater. Cross-sectional morphology, water contact angle, water permeability and zeta potential of these membranes were first examined. Membrane with higher porosity and greater hydrophilicity showed better permeability. Membrane samples also commonly exhibited high zeta potential value in the polyphosphate-rich solution. All the selected membranes removed more than 90% of polyphosphate from the concentrated feed (75 mg/L) at 12 bar. The separation performance of XLE membrane was well maintained at 94.6% even at low pressure. At low feed concentration, more than 70.0% of phosphorus rejection was achieved using XLE membrane. The formation of intermolecular bonds between polyphosphate and the acquired membranes probably had improved the removal of polyphosphate at high feed concentration. XLE membrane was further tested and its rejection of polyphosphate reduced with the decline of pH and the addition of ammonium nitrate.
机译:发展中国家的水产养殖活动引起了对营养物污染的深切关注,特别是废水中过量的磷,导致富营养化。对NF,NF90,NF450和XLE膜进行了研究,以预测纳滤和低压反渗透在水产养殖废水中去除磷的潜力。首先检查这些膜的横截面形态,水接触角,水渗透性和ζ电势。具有更高孔隙率和更大亲水性的膜表现出更好的渗透性。膜样品通常在富含多磷酸盐的溶液中也显示出较高的ζ电位值。所有选定的膜均在12 bar下从浓缩进料(75 mg / L)中去除了90%以上的多磷酸盐。即使在低压下,XLE膜的分离性能也保持在94.6%。在低进料浓度下,使用XLE膜可实现超过70.0%的磷截留率。在高进料浓度下,多磷酸盐和获得的膜之间的分子间键的形成可能改善了多磷酸盐的去除。对XLE膜进行了进一步测试,随着pH的降低和硝酸铵的添加,其对多磷酸盐的排斥率降低了。

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