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Phosphorus removal efficiency from wastewater under different loading conditions using sand biofilters augmented with biochar

机译:用砂生物过滤器在不同装载条件下废水的磷去除效率使用Biochar加强

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摘要

Treated wastewater is a valuable resource, particularly in countries facing water shortage such as Jordan. Nevertheless, excess nutrients, especially phosphorus, may have detrimental impacts on receiving waterbodies. Treated wastewater in Jordan often exceeds the recommended levels set by the Jordanian Standards for wastewater reuse and discharge. Therefore, it is important to reduce phosphorus loads to acceptable levels before discharge. Biofiltration is a low-cost technology that has shown good potential for wastewater treatment. The performance of biofilters largely depends on the media used. In this study, local sand and sand augmented with biochar prepared from the olive oil processing waste (SBC) were used as filter media for phosphorus removal from clarified secondary treated wastewater. The two media types were tested under different hydraulic and phosphorus loading conditions to simulate shock, flooding, and inundation conditions. The results showed that sand media was more effective in removing phosphorus (90.8 +/- 2.6%) than sand amended with biochar (83.3 +/- 3.2%). Both media showed resilience under extreme loading conditions. Although phosphorus removal efficiency was negatively affected following the extreme loading events, the observed effects were temporary. The simulated inundation event further showed that the media was able to retain the adsorbed phosphorus. Furthermore, the phosphorus concentration in the effluent remained within the prescribed discharge guidelines at all times.
机译:经过处理的废水是一个有价值的资源,特别是在面临少年的国家,如约旦。然而,过量的营养素,尤其是磷,可能对接受水性有害影响。约旦的经过处理的废水通常超过约旦污水再利用和排放的建议水平。因此,在放电之前将磷载荷减少到可接受的水平是重要的。生物滤光是一种低成本技术,表明废水处理的良好潜力。生物过滤器的性能在很大程度上取决于所用介质。在本研究中,使用由橄榄油加工废物(SBC)制备的生物炭加入的局部沙子和沙子作为过滤介质,用于从澄清的二次处理废水中去除磷。在不同的液压和磷负载条件下测试了两种媒体类型,以模拟冲击,洪水和淹没条件。结果表明,除了用生物炭修正的砂(83.3 +/- 3.2%),砂介质更有效地除去磷(90.8 +/- 2.6%)。两种媒体都在极端装载条件下显示出弹性。虽然在极端装载事件后磷去除效率受到负面影响,但观察到的效果是暂时的。模拟的淹没事件进一步表明介质能够保留吸附的磷。此外,流出物中的磷浓度始终在规定的排放指南内。

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