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Phosphate modified magnetite@ferrihydrite as an magnetic adsorbent for Cd(Ⅱ) removal from water, soil, and sediment

机译:磷酸盐改性磁铁矿@ Ferrihydrite作为CD(Ⅱ)从水,土壤和沉积物中去除的磁性吸附剂

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摘要

This work successfully fabricated a novel magnetic adsorbent, i.e., phosphate modified magnetite@ferrihydrite (Mag@Fh-P), and explored its potential application for Cd(Ⅱ) removal from water, soil, and sediment. To synthesize the adsorbent, ferrihydrite-coated magnetite (Mag@Fh) was firstly developed with partially acid-dissolved natural magnetite particles, followed by in-situ synthesis of ferrihydrite on magnetite surface via alkali addition. Selection of natural magnetite as iron source for ferrihydrite synthesis and as magnetic core is believed to save the cost of adsorbent. Then, phosphate was loaded on Mag@Fh by impregnation-heating treatment to produce Mag@Fh-P. Batch adsorption experiments revealed that the Cd(Ⅱ) adsorption on Mag@Fh-P could reach equilibrium within 60 min, and the calculated adsorption capacity using Langmuir model was 64.1 mg/g, which was significantly higher than that on magnetite (0.44 mg/g) and Mag@Fh (23.9 mg/g). The results from X-ray photoelectron spectroscopy analysis and batch adsorption experiments confirmed that both ligand exchange and electrostatic attraction contributed to Cd(Ⅱ) adsorption. Besides, Mag@Fh-P can also be an efficient amendment for soil and sediment remediation. The spent Mag@Fh-P could be easily recovered via magnetic separation, accompanied by the significant decrease in total Cd(Ⅱ) concentration in soil/sediment. At an adsorbent dosage of 2 wt%, 0.82 and 0.74 mg/kg of total Cd(Ⅱ) in soil and sediment was removed, respectively. In all, the synthesized Mag@Fh-P as adsorbent has the merits of cost effectiveness, fast adsorption rate, high adsorption capacity, and easy separation, and thus it has promising application for the removal of heavy metal cations from water, soil, and sediment.
机译:该工作成功地制造了一种新型磁吸附剂,即磷酸盐改性磁铁矿@ Ferrihydrite(Mag @ FH-P),并探讨了其对水,土壤和沉积物的CD(Ⅱ)的潜在应用。为了合成吸附剂,首先用部分酸溶解的天然磁铁矿颗粒开发Ferrihydite涂覆的磁铁矿(MAG @ FH),然后通过碱添加原位合成磁铁矿表面上的Ferrihydrite。选择天然磁铁矿作为铁矿石合成的铁源,并且据信储存吸附剂的成本。然后,通过浸渍加热处理在MAG @ FH上装载磷酸盐以产生MAG @ FH-P。分批吸附实验显示,在60分钟内,MAG @ FH-P上的CD(Ⅱ)吸附可以达到平衡,并且使用Langmuir模型的计算吸附能力为64.1mg / g,显着高于磁铁矿(0.44mg / g)和mag @ fh(23.9 mg / g)。来自X射线光电子能谱分析和批量吸附实验的结果证实,配体交换和静电吸引均导致CD(Ⅱ)吸附。此外,MAG @FH-P还可以是土壤和沉积物修复的有效修正。通过磁性分离可以容易地回收PAG @ FH-P,伴随着土壤/沉积物中总CD(Ⅱ)浓度的显着降低。在吸附剂剂量下,分别除去2重量%,0.82和0.74mg / kg土壤和沉积物中的总Cd(Ⅱ)。总而言之,合成的MAG @ FH-P作为吸附剂具有成本效益,吸附速率,高吸附能力,易于分离的优点,因此它具有希望从水,土壤中取出重金属阳离子的申请沉淀。

著录项

  • 来源
    《Science of the total environment》 |2021年第10期|142846.1-142846.10|共10页
  • 作者单位

    State Key Laboratory for Pollution Control and Resource Reuse College of Environmental Science and Engineering Tongji University Shanghai 200090 China CAS Key Laboratory of Mineralogy and Metallogeny/Guangdong Provincial Key Laboratory of Mineral Physics and Material Guangzhou Institute of Geochemistry Chinese Academy of Sciences Guangzhou 510640 China;

    CAS Key Laboratory of Mineralogy and Metallogeny/Guangdong Provincial Key Laboratory of Mineral Physics and Material Guangzhou Institute of Geochemistry Chinese Academy of Sciences Guangzhou 510640 China University of Chinese Academy of Sciences Beijing 100049 China;

    CAS Key Laboratory of Mineralogy and Metallogeny/Guangdong Provincial Key Laboratory of Mineral Physics and Material Guangzhou Institute of Geochemistry Chinese Academy of Sciences Guangzhou 510640 China;

    State Key Laboratory for Pollution Control and Resource Reuse College of Environmental Science and Engineering Tongji University Shanghai 200090 China;

    State Key Laboratory for Pollution Control and Resource Reuse College of Environmental Science and Engineering Tongji University Shanghai 200090 China;

    CAS Key Laboratory of Mineralogy and Metallogeny/Guangdong Provincial Key Laboratory of Mineral Physics and Material Guangzhou Institute of Geochemistry Chinese Academy of Sciences Guangzhou 510640 China University of Chinese Academy of Sciences Beijing 100049 China;

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

    Magnetite; Ferrihydrite; Cadmium; Adsorption; Magnetic separation;

    机译:磁铁矿;Ferrihydite;镉;吸附;磁选;

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