Department of Environmental Engineering, Pusan National University 2, Busandaehak-ro 63beon-gil, Geumjeong-gu, Busan, 46241, Republic of Korea.
Department of Environmental Engineering, Pusan National University 2, Busandaehak-ro 63beon-gil, Geumjeong-gu, Busan, 46241, Republic of Korea.
J Environ Manage. 2021 Apr 1;283:111990. doi: 10.1016/j.jenvman.2021.111990. Epub 2021 Jan 26.
Although the radionuclide Co is widely used, its presence in various effluents demands its removal to preclude environmental pollution and detrimental effects on human health. This study investigated the batch adsorption performance of a potential cobalt adsorbent, dicalcium phosphate dihydrate (DCPD), in immobilizing Co from water. The influences of solution pH, contact time, initial concentration, and competing cations were examined and discussed. Stable cobalt uptake was observed at pH 4-8. The sorption kinetics showed a multi-stage uptake profile, implying that several mechanisms are involved in the adsorption process. Microscopy and structural analysis revealed that DCPD decomposes to its anhydrous form during adsorption, which explains the multistep curve over the entire adsorption period. However, the non-apatitic transformation is not exclusive to cobalt uptake. Intraparticle diffusion also contributed to the overall removal kinetics of Co from water. Considering the Sips isotherm model, the maximum Co adsorption capacity of DCPD was 441 mg g. Cobalt uptake selectivity dropped in the presence of Ca ions, from 1.21 × 10 to 207 mL g, indicating DCPD would be more applicable in treating soft Co-contaminated waters. Structural analysis, elemental mapping, and qualitative analysis of solid residues confirmed that ion exchange is involved in the removal of cobalt from aqueous solutions.
虽然放射性核素 Co 被广泛应用,但它在各种废水中的存在要求将其去除,以防止环境污染和对人类健康造成不利影响。本研究调查了二水磷酸氢钙(DCPD)作为一种潜在钴吸附剂,在固定水中 Co 方面的批量吸附性能。考察并讨论了溶液 pH、接触时间、初始浓度和竞争阳离子的影响。在 pH 4-8 时观察到稳定的钴吸收。吸附动力学表明存在多阶段吸收曲线,这意味着吸附过程涉及几种机制。显微镜和结构分析表明,DCPD 在吸附过程中分解为无水形式,这解释了整个吸附期内多步曲线的原因。然而,非磷灰石转化并非专用于钴的吸收。内扩散也有助于从水中去除 Co 的整体去除动力学。根据 Sips 等温模型,DCPD 的最大 Co 吸附容量为 441 mg g。在 Ca 离子存在的情况下,钴的吸附选择性从 1.21×10降至 207 mL g,表明 DCPD 在处理软 Co 污染水方面更具适用性。结构分析、元素映射和固体残渣的定性分析证实,离子交换参与了从水溶液中去除钴。