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Porous vaterite and cubic calcite aggregated calcium carbonate obtained from steamed ammonia liquid waste for Cu~(2+) heavy metal ions removal by adsorption process

机译:多孔Vaterite和立方方料从蒸氨液废料获得Cu〜(2+)重金属离子的蒸氨液废弃物,通过吸附过程去除

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摘要

Removal of copper ions (Cu2+) from wastewater has garnered significant interest due to the growing environmental concerns. In order to address such issues, porous vaterite and cubic calcite aggregated CaCO3 is successfully prepared from steamed ammonia liquid waste (CaCl2) and (NH4)(2)CO3 (Ca2+/CO32- (M) ratio = 5) via a simple precipitation method conducted at room temperature. The physicochemical properties of CaCO3 are studied using conventional material characterization techniques. Furthermore, the possible formation mechanism of the as-obtained CaCO3 is also discussed in this work. The effects of the CaCO3 quantity, pH, temperature, reaction duration, and initial Cu2+ solution concentration on the Cu2+ adsorption by CaCO3 are also investigated. A high Cu2+ removal rate, i.e., as high as 99%, is achieved with the use of CaCO3 (1000 mg.L-1). After the adsorption process, the residual Cu2+ concentration is less than 0.5 mg/L (from an initial Cu2+ concentration of 500 mg.L-1), which meets the discharge standard for industrial waste. The adsorption kinetics of the process can be expressed by a pseudo-second-order model, with a R-2 of 0.9992. Langmuir adsorption model can be used to express the equilibrium adsorption of the as-prepared CaCO3, with a R-2 of 0.9967. The obtained sediment after adsorption process is characterized with XRD, XPS, SEM, SEM-EDS, TEM, TEM-SEAD, EDS, and EDAX elemental mapping. Based on the collective results, Cu2+ removal mechanism by the aggregated CaCO3 in aqueous solution is based on two simultaneous process, i.e., adsorption and ion exchange chemical precipitation.
机译:除废水中除去铜离子(Cu2 +)由于环境问题日益增长,铜离子(Cu2 +)已经获得了显着的兴趣。为了解决这些问题,通过简单的沉淀法从蒸氨液废(CaCl 2)和(NH 4)(2)CO 3(CA2 + / CO32-(M)的比例= 5)成功制备多孔Vaterite和立方方料聚集CaCO 3在室温下进行。使用常规材料表征技术研究了CaCO3的物理化学性质。此外,在这项工作中还讨论了所得CaCO3的可能形成机制。还研究了CaCO3量,pH,温度,反应持续时间和CACO 3在CACO 3上吸附的初始Cu2 +溶液浓度的影响。使用CaCO 3(1000mg.L-1)实现高Cu 2 +去除率,即高达99%。在吸附过程之后,残留的Cu 2 +浓度小于0.5mg / L(来自初始Cu2 +浓度为500mg.L-1),其符合工业废物的排放标准。该方法的吸附动力学可以由伪二阶模型表示,R-2为0.9992。 Langmuir吸附模型可用于表达AS制备的CACO3的平衡吸附,R-2为0.9967。吸附过程后获得的沉积物具有XRD,XPS,SEM,SEM EDS,TEM,TEM-SEAD,EDS和EDAX元素映射。基于集体效果,水溶液中聚集CaCO 3的Cu2 +去除机理基于两个同时加工,即吸附和离子交换化学沉淀。

著录项

  • 来源
    《Applied Surface Science》 |2021年第15期|147958.1-147958.13|共13页
  • 作者单位

    Xian Univ Architecture & Technol Coll Mat Sci & Engn Xian 710055 Peoples R China;

    Western Min Grp Co Ltd Xining 810001 Peoples R China;

    Xian Univ Architecture & Technol Sch Resources Engn Xian 710055 Peoples R China;

    Xian Univ Architecture & Technol Coll Mat Sci & Engn Xian 710055 Peoples R China|Xian Univ Architecture & Technol Sch Resources Engn Xian 710055 Peoples R China|Western Min Grp Co Ltd Xining 810001 Peoples R China|Jiangxi Univ Sci & Technol Sch Resources & Environm Engn Ganzhou 341000 Peoples R China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Calcium carbonate; Porous vaterite; Cu2+ ions; Adsorption; Removal mechanism;

    机译:碳酸钙;多孔Vaterite;Cu2 +离子;吸附;去除机制;

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