Department of Chemical and Biomolecular Engineering, Johns Hopkins University, Baltimore, MD 21218, United States.
Department of Chemical and Biomolecular Engineering, Johns Hopkins University, Baltimore, MD 21218, United States.
Chemosphere. 2018 May;198:501-509. doi: 10.1016/j.chemosphere.2018.01.126. Epub 2018 Feb 3.
The demand of reactive nitrogen (N), such as ammonium (NH) and nitrate (NO), continues to increase for fertilizer applications as the population grows, but the Haber Bosch (HB) process currently employed for industrial N fixation is challenged by low efficiency and high energy consumption. Here we report on the investigation of ZSM-5 as a superior sorbent for the recovery of ammonium from aqueous solutions. Fast capture and release of ammonium (NH) have been achieved with >90% overall efficiency of recovery using synthetic solutions of NHCl and NaCl, respectively. The ZSM-5 sorbent has also been found to be recyclable and sustain high recovery efficiencies after multiple capture-release cycles. The capture of N has been further studied systematically in dependence of the dose of sorbent and reaction temperature, based on which the mechanism, thermodynamics and kinetics of ion exchange are discussed. Compared to other ion-exchange materials, the ZSM-5 sorbent exhibits superior selectivity for capturing ammonium in the presence of competing cations (NH » Ca > Mg > K > Na) and demonstrates high efficiency of ammonium recovery from real wastewater streams.
对肥料应用中活性氮(N)的需求(如铵(NH)和硝酸盐(NO))随着人口的增长而持续增加,但目前用于工业固氮的哈伯-博世(HB)工艺面临着效率低和能耗高的挑战。在这里,我们报告了 ZSM-5 作为从水溶液中回收铵的优异吸附剂的研究。使用 NHCl 和 NaCl 的合成溶液,分别实现了超过 90%的总回收效率,实现了铵(NH)的快速捕获和释放。还发现 ZSM-5 吸附剂是可回收的,并且在多次捕获-释放循环后仍能保持高回收效率。进一步系统地研究了吸附剂剂量和反应温度对 N 捕获的影响,在此基础上讨论了离子交换的机理、热力学和动力学。与其他离子交换材料相比,ZSM-5 吸附剂在存在竞争阳离子(NH > Ca > Mg > K > Na)时对捕获铵具有优异的选择性,并从实际废水流中表现出高的铵回收效率。