Key Laboratory of Soil Environment and Pollution Remediation, Institute of Soil Science, Chinese Academy of Science, Nanjing 210008, China E-mail:
School of Earth and Environment, Anhui University of Science and Technology, Huainan 232001, China.
Water Sci Technol. 2017 Apr;2017(1):115-125. doi: 10.2166/wst.2018.095.
Ash produced by biomass power plants has great potential for the removal of heavy metal ions from aqueous solution. The pollution of toxic heavy metals to water is a worldwide environmental problem. Discharges containing copper, in particular, are strictly controlled because the excessive copper can cause serious harm to the environment and human health. This work aims to investigate the adsorption characteristics of copper ions in aqueous solution by biomass ash and the modified products, and to evaluate their potential application in water pollution control. The biomass ash was modified with a mesoporous siliceous material and functionalized with 3-aminopropyltriethoxysilane. The surface properties of the biomass ash and the new matrix were studied to evaluate their adsorption property for Cu ions at different pHs, initial metal concentrations and the thermodynamic and kinetic were studied. The chemical and morphological properties of this modified material are analyzed; the specific surface area of the modified biomass ash was nine times that of the initial ash. Both of the two materials showed a strong affinity for Cu, and the Langmuir model could best represent the adsorption characteristics of Cu on the two kinds of materials. The adsorption capacity of copper on the material increased with the increase of pH and pH 6 was the optimum pH. Thermodynamic analysis results showed that the adsorption of Cu was spontaneous and endothermic in nature. The adsorptions of Cu onto the modified biomass ash followed pseudo-second-order kinetics.
生物质电厂灰分去除水溶液中重金属离子的潜力巨大。有毒重金属对水的污染是一个全球性的环境问题。特别是含铜废水的排放受到严格控制,因为过量的铜会对环境和人类健康造成严重危害。本工作旨在研究生物质灰分及其改性产物对水溶液中铜离子的吸附特性,评估其在水污染控制中的潜在应用。采用介孔硅材料对生物质灰分进行改性,并通过 3-氨丙基三乙氧基硅烷对其进行功能化。研究了生物质灰分和新基质的表面性质,以评估它们在不同 pH 值、初始金属浓度下对 Cu 离子的吸附性能,并研究了热力学和动力学。对该改性材料的化学和形态特性进行了分析;改性生物质灰分的比表面积是原始灰分的九倍。两种材料对 Cu 都表现出很强的亲和力,Langmuir 模型能够很好地描述 Cu 在这两种材料上的吸附特性。铜在材料上的吸附容量随 pH 值的增加而增加,pH 值为 6 时为最佳 pH 值。热力学分析结果表明,Cu 的吸附是自发和吸热的。Cu 对改性生物质灰分的吸附符合准二级动力学。