Institute of Agricultural Environmental Science, Hankyong National University, Anseong, 17579, Republic of Korea.
Dept. of Bioresources and Rural System Engineering, Hankyong National University, Anseong, 17579, Republic of Korea.
Chemosphere. 2024 Sep;364:143204. doi: 10.1016/j.chemosphere.2024.143204. Epub 2024 Aug 30.
This study explored the innovative application of wood bottom ash (WBA) as an adsorbent for arsenic (As) removal from wastewater, focusing on the adsorption mechanism and optimisation of the operational conditions. Comprehensive spectroscopic analyses, including FE-SEM/EDS, BET, XRF, XRD, FT-IR, and XPS, were performed to examine the elemental and mineralogical changes in WBA before and after As adsorption. The study assessed the adsorption kinetics and isotherms, revealing that As adsorption reached equilibrium within 48 h, with a maximum capacity of 121.13 mg/g. The adsorption process followed a pseudo-second-order kinetic model and aligned well with the Langmuir isotherm, indicating that the process is governed by chemisorption and occurs as monolayer adsorption. The primary removal mechanism was the surface precipitation of amorphous calcium arsenate. Response surface methodology was employed to analyse and optimise the factors influencing As removal, including solution pH, ionic strength, adsorbent dose and reaction time. The optimal conditions for maximum As removal were pH 7.11, 8.37 mM ionic strength, 9.08 g/L WBA dose, and 2.58 h reaction time. This study offers novel insights into the efficient and cost-effective use of WBA for As removal, highlighting its potential as a sustainable solution for wastewater treatment in developing countries.
本研究探索了将木底灰(WBA)用作从废水中去除砷(As)的吸附剂的创新应用,重点研究了吸附机制和操作条件的优化。采用 FE-SEM/EDS、BET、XRF、XRD、FT-IR 和 XPS 等综合光谱分析方法,研究了吸附前后 WBA 的元素和矿物变化。评估了吸附动力学和等温线,结果表明,As 的吸附在 48 小时内达到平衡,最大容量为 121.13mg/g。吸附过程遵循拟二级动力学模型,与 Langmuir 等温线拟合良好,表明该过程受化学吸附控制,呈单层吸附。主要的去除机制是无定形砷酸钙的表面沉淀。采用响应面法分析和优化了影响 As 去除的因素,包括溶液 pH 值、离子强度、吸附剂用量和反应时间。最大去除 As 的最佳条件为 pH 值 7.11、离子强度 8.37mM、WBA 剂量 9.08g/L 和反应时间 2.58 小时。本研究为高效、经济地利用 WBA 去除 As 提供了新的见解,突出了其作为发展中国家废水处理可持续解决方案的潜力。