Zhao Jie, Gao Jingqing, Liu Junzhao
College of Ecology and Environment, Zhengzhou University, Zhengzhou 450001, China.
Materials (Basel). 2020 Oct 23;13(21):4739. doi: 10.3390/ma13214739.
Iron-carbon substrates have attracted extensive attention in water treatment due to their excellent processing ability. The traditional iron-carbon substrate suffers from poor removal effects, separation of the cathode and anode, hardening, secondary pollution, etc. In this study, a new type of iron-carbon-loaded substrate (NICLS) was developed to solve the problems of traditional micro-electrolytic substrates. Through experimental research, a preparation method for the NICLS with Fe and C as the core, zeolite as the skeleton, and water-based polyurethane as the binder was proposed. The performance of the NICLS in phosphorus-containing wastewater was analyzed. The results are as follows: The optimal synthesis conditions of the NICLS are 1 g hydroxycellulose, wood activated carbon as the cathode, an activated carbon particle size of 200-60 mesh, and an Fe/C ratio of 1:1. Acidic conditions can promote the degradation of phosphorus by the NICLS. Through the characterization of the NICLS (scanning electron microscope (SEM), X-ray diffractometer (XRD), and energy-dispersive spectrometer (EDS), etc.), it is concluded that the mechanism of the NICLS phosphorus removal is a chemical reaction produced by micro-electrolysis. Using the NICLS to treat phosphorus-containing wastewater has the advantages of high efficiency and durability. Therefore, it can be considered that the NICLS is a promising material to remove phosphorus.
铁碳基材料因其优异的处理能力在水处理领域受到广泛关注。传统铁碳基材料存在去除效果差、阴阳极分离、硬化、二次污染等问题。本研究开发了一种新型的负载铁碳基材料(NICLS)来解决传统微电解材料的问题。通过实验研究,提出了一种以铁和碳为核心、沸石为骨架、水性聚氨酯为粘结剂的NICLS制备方法。分析了NICLS在含磷废水中的性能。结果如下:NICLS的最佳合成条件为1 g羟纤维素、木质活性炭为阴极、活性炭粒径为200-60目、铁碳比为1:1。酸性条件可促进NICLS对磷的降解。通过对NICLS的表征(扫描电子显微镜(SEM)、X射线衍射仪(XRD)和能谱仪(EDS)等),得出NICLS除磷的机理是微电解产生的化学反应。使用NICLS处理含磷废水具有高效、耐用的优点。因此,可以认为NICLS是一种很有前途的除磷材料。