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Zeolite Ion Exchange to Facilitate Anaerobic Membrane Bioreactor Wastewater Nitrogen Recovery and Reuse for Lettuce Fertigation in Vertical Hydroponic Systems

机译:沸石离子交换促进厌氧膜生物反应器废水氮的回收和再利用,用于垂直水培系统中的生菜施肥

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Ammonia-nitrogen recovered from synthetic anaerobic membrane bioreactor (AnMBR) permeate facilitated by natural zeolite (clinoptilolite) ion exchange was released during regeneration with tap water into a recirculating, vertical hydroponic system to demonstrate a potential method for nitrogen recovery and reuse from domestic wastewater. Exhausted clinoptilolite leached ammonium into the tap water, which was then used for the hydroponic fertigation of butter crunch lettuce (Lactuca sativa) in vertical hydroponic towers. Crop mass and pigment development of lettuce grown in the zeolite desorption solution were favorable compared to the control (consisting of diluted, synthetic AnMBR permeate). Nitrification occurred faster in the desorption solution compared to the control, resulting in an 11% and 19% increase in fresh and dry mass, respectively, and greater chlorophyll-a and chlorophyll-b development. A system is proposed for implementing vertical trickling hydroponic systems integrated with zeolite regeneration to realize a reusable nutrient recovery system. This work demonstrates the potential of the proposed nutrient recovery system to simultaneously attenuate AnMBR ammonia-nitrogen content, while providing a renewable source of nitrogen for use in soilless agriculture.
机译:从天然沸石(斜发沸石)离子交换促进的合成厌氧膜生物反应器(AnMBR)渗透物中回收的氨氮在再生过程中与自来水一起释放到垂直的循环水培系统中,以证明有可能从生活污水中回收和再利用氮。耗尽的斜发沸石将铵浸入自来水中,然后将其用于在垂直水培塔中对牛油忌廉莴苣(Lactuca sativa)进行水培施肥。与对照相比(由稀释的合成AnMBR渗透液组成),在沸石解吸溶液中生长的生菜的作物质量和色素发育良好。与对照相比,解吸溶液中的硝化作用发生得更快,导致新鲜和干燥质量分别增加11%和19%,并增加了叶绿素a和叶绿素b的形成。提出了一种实现与沸石再生相结合的垂直滴灌水培系统的系统,以实现可重复使用的养分回收系统。这项工作证明了拟议的养分回收系统同时减弱AnMBR氨氮含量的潜力,同时为无土农业提供了可再生的氮源。

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