Masim Frances Camille P, Tsai Cheng-Hsien, Lin Yi-Feng, Fu Ming-Lai, Liu Minghua, Kang Fei, Wang Ya-Fen
a Department of Environmental Engineering , Chung Yuan Christian University , Chung Li , Taiwan.
b Department of Chemical and Materials Engineering , National Kaohsiung University of Applied Sciences , Kaohsiung , Taiwan.
Environ Technol. 2019 Jan;40(2):226-238. doi: 10.1080/09593330.2017.1385646. Epub 2017 Nov 3.
The increasing number of bacteria-related problems and presence of trace amounts of phosphate in treated wastewater effluents have become a growing concern in environmental research. The use of antibacterial agents and phosphate adsorbents for the treatment of wastewater effluents is of great importance. In this study, the potential applications of a synthesized polyaniline (PANI)-zirconium dioxide (ZrO) composite as an antibacterial, phosphate adsorbent and anti-corrosion material were systematically investigated. The results of an antibacterial test reveal an effective area of inhibition of 14 and 18 mm for the Escherichia coli and Staphylococcus aureus bacterial strains, respectively. The antibacterial efficiency of the PANI-ZrO composite is twice that of commercial ZrO. In particular, the introduction of PANI increased the specific surface area and roughness of the composite material, which was beneficial to increase the contact area with bacterial and phosphate. The experimental results demonstrated that phosphate adsorption studies using 200 mg P/L phosphate solution showed a significant phosphate removal efficiency of 64.4%, and the maximum adsorption capacity of phosphate on the solid surface of PANI-ZrO is 32.4 mg P/g. Furthermore, PANI-ZrO coated on iron substrate was tested for anti-corrosion studies by a natural salt spray test (7.5% NaCl), which resulted in the formation of no rust. To the best of our knowledge, no works have been reported on the synergistic effects of the PANI-ZrO composite as an antibacterial, anti-corrosion, and phosphate adsorbent material. PANI-ZrO composite is expected to be a promising comprehensive treatment method for water filters in the aquaculture industry and for use in water purification applications.
与细菌相关的问题日益增多,且处理后的废水流出物中存在痕量磷酸盐,这已成为环境研究中日益关注的问题。使用抗菌剂和磷酸盐吸附剂处理废水流出物至关重要。在本研究中,系统地研究了合成的聚苯胺(PANI)-二氧化锆(ZrO)复合材料作为抗菌、磷酸盐吸附剂和防腐材料的潜在应用。抗菌测试结果表明,该复合材料对大肠杆菌和金黄色葡萄球菌菌株的有效抑制面积分别为14和18 mm。PANI-ZrO复合材料的抗菌效率是商用ZrO的两倍。特别是,PANI的引入增加了复合材料的比表面积和粗糙度,这有利于增加与细菌和磷酸盐的接触面积。实验结果表明,使用200 mg P/L磷酸盐溶液进行的磷酸盐吸附研究显示,磷酸盐去除效率显著,达到64.4%,PANI-ZrO固体表面对磷酸盐的最大吸附容量为32.4 mg P/g。此外,通过天然盐雾试验(7.5%NaCl)对涂覆在铁基材上的PANI-ZrO进行了防腐研究,结果未产生锈迹。据我们所知,尚未有关于PANI-ZrO复合材料作为抗菌、防腐和磷酸盐吸附材料的协同效应的报道。PANI-ZrO复合材料有望成为水产养殖业水过滤器以及水净化应用中有前景的综合处理方法。