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工业废料制备陶粒及其在选择性吸附中的应用:性能与机理。

Green synthesis of ceramsite from industrial wastes and its application in selective adsorption: Performance and mechanism.

机构信息

School of Resources and Environmental Engineering, Hefei University of Technology, No. 193, Road Tunxi, Hefei, 230009, China.

School of Resources and Environmental Engineering, Hefei University of Technology, No. 193, Road Tunxi, Hefei, 230009, China.

出版信息

Environ Res. 2022 Nov;214(Pt 1):113786. doi: 10.1016/j.envres.2022.113786. Epub 2022 Jul 5.

Abstract

The increasing requirement and consumption of coal has resulted in a large accumulation of coal gangue. The reuse and recycling of coal gangue have become a high priority for sustainable development. A sustainable and efficient ceramsite adsorbent was prepared for copper ions adsorption by using coal gangue, coal fly ash, and copper slag as the main materials. The appropriate performance of the ceramsite could be obtained at a mixture of coal gangue, coal fly ash, and copper slag at a weight ratio of 3:4:1. The optimal sintering temperature and time were 1050 °C and 20 min, respectively. The main crystalline phases of ceramsite were quartz, mullite, and anorthite. Many micropores are connecting the interior on the surface of ceramsite under scanning electron microscope. The maximum copper ions adsorption capacity reached up to 20.6 mg/g at 303 K when pH and time were 5 and 1440 min, respectively. The adsorption kinetics and isotherm could be described by the pseudo-second-order model and Freundlich model, respectively. The adsorption mechanisms of Cu with ceramsite were attributed to Cu(OH) precipitation formed on the alkaline surface of ceramsite and complexation reactions occurred between the O-containing groups (including C-O, Fe-O, and Si-O) from ceramsite and Cu. The prepared ceramsite may be also applied to other heavy metal wastewater treatments.

摘要

煤炭需求和消耗的不断增加导致了大量煤矸石的积累。煤矸石的再利用和回收成为可持续发展的当务之急。以煤矸石、粉煤灰和铜渣为主要原料,制备了一种用于铜离子吸附的可持续、高效的陶粒吸附剂。在煤矸石、粉煤灰和铜渣的重量比为 3:4:1 的混合物中,可以获得适当性能的陶粒。最佳的烧结温度和时间分别为 1050°C 和 20min。陶粒的主要晶相为石英、莫来石和钙长石。扫描电子显微镜下,陶粒表面有许多相互连接的微孔。在 303K 时,pH 值和时间分别为 5 和 1440min 时,铜离子的最大吸附容量达到 20.6mg/g。吸附动力学和等温线分别可以用拟二级模型和 Freundlich 模型来描述。陶粒与 Cu 的吸附机理归因于在陶粒的碱性表面上形成的 Cu(OH)沉淀,以及来自陶粒的 O 含有基团(包括 C-O、Fe-O 和 Si-O)与 Cu 之间发生的络合反应。制备的陶粒也可能应用于其他重金属废水处理。

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