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Synergistic effects of aluminum/iron oxides and clay minerals on nutrient removal and recovery in water filtration media

机译:铝/氧化铁和粘土矿物对水过滤介质营养去除和恢复的协同作用

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The eutrophication of water bodies due to excessive amounts of nutrients is an ongoing issue that coincides with the depletion of the commercial and affordable phosphorus reserves that are required for food production. This paper presents the investigation of Advanced Green Environmental Media (AGEM) for nutrient removal and recovery, in stormwater runoff or agricultural discharge, via a laboratory-scale fixed-bed column study. The water filtration media mix of AGEM was compared to existing Iron-filings Based Green Environmental Media (IFGEM) for performance assessment. Synergistic effects among iron, aluminum, and clay resulted in different capacities for removal and recovery of ammonia, nitrate, and phosphate simultaneously in IFGEM and AGEM due to their different sorption functionalities. Research findings indicate that AGEM and IFGEM removed 52% and 42% of the nitrate load, respectively. While both filtration media exhibited elevated phosphate removal than before, 98% and 96% of the total phosphate load can be removed by IFGEM and AGEM, respectively. The discovery that the AGEM mix exhibited synergy among clay, iron, and aluminum particles with higher application potential on a longterm basis is the first of its kind in water filtration media. In this process, optimal phosphate removal was achieved by utilizing ammonia, a byproduct of nitrate reduction, which precipitated to form ammonium-phosphate salt. Finally, the synergistic effects of iron, aluminum, and clay for promoting urban farming, stormwater treatment, and hydrogen gas production simultaneously was confirmed in an urban foodenergy-water nexus. (C) 2020 Published by Elsevier Ltd.
机译:由于过量的营养素导致的水体的富营养化是一种持续的问题,它与食品生产所需的商业和实惠的磷储量的消耗一致。本文通过实验室规模的固定床专栏研究,提出了对营养径流或农业排放的先进绿色环境媒体(AGEM)的调查。与绩效评估的现有的基于铁源的绿色环境介质(IFGEM)进行比较,对酯的水过滤培养基混合物进行比较。铁,铝和粘土之间的协同效应导致IFGEM和Agem在IFGEM和Agem中移除和培养的不同容量,因为它们不同的吸附功能。研究结果表明,Agem和IFGEM分别除去52%和42%的硝酸盐载荷。虽然过滤培养基表现出磷酸盐升高,但分别可以通过IFGEM和Agem除去98%和96%的总磷酸盐载荷。发现AGEM混合在粘土,铁和铝颗粒之间表现出协同作用,在Longterm的基础上具有较高的应用潜力的施用潜力是其水过滤介质中的第一个。在该过程中,通过利用氨,硝酸盐还原的副产物来实现最佳的磷酸盐去除,这沉淀为形成磷酸盐盐。最后,在城市食品 - 水Nexus中确认了钢铁,铝和粘土来促进城市养殖,雨水处理和氢气生产的协同效应。 (c)2020由elestvier有限公司发布

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