Chen Shu-Ting, Wickramasinghe Sumith Ranil, Qian Xianghong
Department of Chemical Engineering, University of Arkansas, Fayetteville, AR 72701, USA.
Department of Biomedical Engineering, University of Arkansas, Fayetteville, AR 72701, USA.
Membranes (Basel). 2021 Jun 11;11(6):440. doi: 10.3390/membranes11060440.
Mixed-matrix electrospun membranes were developed to investigate ammonium removal from low ammonium concentration wastewaters for the first time. Particles derived from the inexpensive zeolite 13X were successfully incorporated into polyethersulfone (PES) matrices. The fabricated mixed-matrix electrospun membranes demonstrate high ammonium removal capacity reaching over 55 mg/g, more than 2.5 times higher than the previously fabricated mixed-matrix membranes via non-solvent induced phase inversion. Moreover, the membranes fabricated exhibit high permeability and ease of regeneration. Over 90% of total ammonium nitrogen (TAN) can be removed from low TAN wastewaters such as aquaculture wastewaters. In addition to zeolite 13X, other zeolite particles including zeolite Y, zeolite 3A and 4A were also incorporated into the membrane matrix. The inexpensive zeolite 13X show the highest ammonium exchange capacity. Particle type, loading and the level of its dispersion all affect TAN removal capacity.
首次开发了混合基质电纺膜,用于研究从低铵浓度废水中去除铵。源自廉价的13X沸石的颗粒成功地掺入聚醚砜(PES)基质中。制备的混合基质电纺膜显示出高铵去除能力,超过55 mg/g,比之前通过非溶剂诱导相转化制备的混合基质膜高出2.5倍以上。此外,制备的膜具有高渗透性和易于再生的特点。超过90%的总铵氮(TAN)可以从低TAN废水(如养殖废水)中去除。除了13X沸石外,其他沸石颗粒,包括Y沸石、3A和4A沸石也被掺入膜基质中。廉价的13X沸石显示出最高的铵交换容量。颗粒类型、负载量及其分散程度都会影响TAN去除能力。