Zhang Nan, Kawamoto Tohru, Watanabe Hiroshi, Jiang Yong, Zhang Zhenya, Lei Zhongfang, Parajuli Durga
Nanomaterials Research Institute, National Institute of Advanced Industrial Science and Technology (AIST), 1-1-1 Higashi, Tsukuba 305-8565, Japan.
Graduate School of Life and Environmental Sciences, University of Tsukuba, 1-1-1 Tennodai, Tsukuba 305-8572, Japan.
Materials (Basel). 2021 Jun 27;14(13):3592. doi: 10.3390/ma14133592.
Cobalt Hexacyanoferrate (CoHCF) was tested for the selective uptake of K from seawater and the electrochemical method was adopted for the desorption and regeneration of the material. Powder form CoHCF could adsorb about 6.5 mmol/g of K from the seawater. For the ease of the electrochemical desorption and regeneration, CoHCF thin film was coated onto the Indium Tin Oxide (ITO) glass to obtain a CoHCF electrode. K adsorption kinetics on CoHCF thin film was found to be well fitted with the intraparticle diffusion model, which was a two-step process. Five consecutive adsorption-desorption-regeneration cycles were carried out to know the gradual decrease in the adsorption capacity owing to changes in the redox states of two metals, Co and Fe, in the material. Fourier Transform Infrared Spectroscopy (FT-IR) and Ultraviolet-Visible (UV-Vis) measurement results corresponded to the color change of CoHCF thin film, indicating the valence change of transition metals and the exchange of alkali metal cations happened on the CoHCF at different operation stages. In order to elucidate the reaction mechanism, composition of the material was analysis in the following steps: adsorption, desorption, and regeneration. It was proved that the system based on CoHCF thin film modified electrode had the potential of recovering potassium from seawater.
对六氰合铁酸钴(CoHCF)进行了从海水中选择性摄取钾的测试,并采用电化学方法对该材料进行解吸和再生。粉末状的CoHCF可从海水中吸附约6.5 mmol/g的钾。为便于进行电化学解吸和再生,将CoHCF薄膜涂覆在氧化铟锡(ITO)玻璃上以获得CoHCF电极。发现钾在CoHCF薄膜上的吸附动力学与颗粒内扩散模型拟合良好,这是一个两步过程。进行了五个连续的吸附 - 解吸 - 再生循环,以了解由于材料中两种金属Co和Fe的氧化还原状态变化导致的吸附容量逐渐下降情况。傅里叶变换红外光谱(FT - IR)和紫外 - 可见(UV - Vis)测量结果与CoHCF薄膜的颜色变化相对应,表明在不同操作阶段,CoHCF上过渡金属的价态变化以及碱金属阳离子的交换发生了。为阐明反应机理,按吸附、解吸和再生的步骤对材料组成进行了分析。结果证明基于CoHCF薄膜修饰电极的系统具有从海水中回收钾的潜力。