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Enhanced Removal of Aqueous Phosphorus by Zr–Fe-, Mn–Fe-, and Mn–Zr–Fe-Modified Natural Zeolites: Comparison Studies and Adsorption Mechanism

机译:通过Zr-Fe-,Mn-Fe和Mn-Zr-Fe改性的天然沸石增强除去含水水性水溶液:比较研究和吸附机制

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摘要

Novel adsorbents [Zr-Fe-, Mn-Fe-, and Mn-Zr-Fe-modified natural zeolites (MNZs)] were prepared by a green synthetic method and used for aqueous phosphorus removal. The MNZs were characterized by scanning electron microscopy, Brunauer-Emmett-Teller (BET), X-ray powder diffraction, X-ray photoelectron spectroscopy, Fourier-transform infrared spectrometer, and magnetic property. The results showed that the BET-specific surface areas of the synthesized novel adsorbents (92.599-279.660 m(2)/g) were much higher compared with natural zeolites (17.494 m(2)/g). Strong magnetism was observed for the synthesized novel adsorbents. At 35 mg/L phosphorus and 308 K, the equilibrium adsorption amounts of Mn-Fe-, Zr-Fe-, and Mn-Zr-Fe-modified zeolites were 11.8, 8.8, and 20.9 mg/g, respectively, which were 3.7, 2.8, and 6.5 times that of natural zeolites (3.2 mg/g). The pseudo-second-order kinetics model (R-2 0.98) and Langmuir model (R-2 0.96) were more suitable to describe the adsorption process. The intraparticle diffusion rates of the modified zeolites were in the order of Mn-Zr-Fe-, Mn-Fe-, and Zr-Fe-modified zeolites, respectively. Adsorption of phosphorus onto the modified zeolites was an endothermic process (Delta H-0 97 kJ/mol). Acidic conditions contributed to the adsorption of phosphorus. The adsorption capacity of the synthesized novel adsorbents decreased with increasing coexisting ionic strength, and Cl(-)and HCO(3)(-)had the minimum and maximum impact on the adsorption of phosphorus, respectively. The ligand exchange and electrostatic attraction played key roles in the adsorption of phosphorus onto the modified zeolites. Excellent regeneration ability for the modified zeolites was observed. The synthesized novel adsorbents have great potential applications in removing phosphorus from eutrophic water.
机译:通过绿色合成方法制备新型吸附剂[Zr-Fe-,Mn-Fe-和Mn-Zr-Fe改性的天然沸石(MNZS)]并用于去除磷酸水溶液。通过扫描电子显微镜,Brunauer-Emmett-Teller(Bet),X射线粉末衍射,X射线光电子能谱,傅里叶变换红外光谱仪和磁性,表征MNZ。结果表明,与天然沸石相比,合成新型吸附剂的BET特异性表面积(92.599-279.660μm(2)/ g)高得多(17.494m(2)/ g)。对于合成的新型吸附剂,观察到强磁性。在35mg / l磷和308k中,分别为3.8,8.8和20.9mg / g的Mn-Fe-,Zr-Fe-和Mn-Zr-Fe改性沸石的平衡吸附量为3.7 ,2.8和6.5倍天然沸石(3.2mg / g)。伪二阶动力学模型(R-2> 0.98)和Langmuir模型(R-2> 0.96)更适合描述吸附过程。分别改性沸石的椎间内扩散速率分别为Mn-Zr-Fe,Mn-Fe-和Zr-Fe改性沸石的顺序。将磷的吸附在改性沸石上是吸热过程(Delta H-0> 97kJ / mol)。酸性条件有助于磷的吸附。合成的新型吸附剂的吸附能力随着共存离子强度的增加而降低,Cl( - )和HCO(3)(3)( - )分别对磷吸附的最小和最大影响。配体交换和静电吸引力在磷的吸附中发挥了关键作用,在改性沸石上。观察到改性沸石的优异再生能力。合成的新型吸附剂具有巨大的潜在应用,用于去除来自富营养化水的磷。

著录项

  • 来源
    《Environmental Engineering Science》 |2020年第8期|572-584|共13页
  • 作者单位

    Hefei Univ Technol Sch Civil & Hydraul Engn Dept Municipal Engn Hefei Peoples R China|Anhui Prov Engn Lab Rural Water Environm & Resour Hefei Peoples R China;

    Hefei Univ Technol Sch Civil & Hydraul Engn Dept Municipal Engn Hefei Peoples R China|Sixth Design Inst Ltd Shanghai Municipal Engn Design Gen Inst Hefei Peoples R China;

    Anhui Acad Environm Sci & Res Hefei 230001 Peoples R China;

    Anhui Acad Environm Sci & Res Hefei 230001 Peoples R China;

    Hefei Univ Technol Sch Civil & Hydraul Engn Dept Municipal Engn Hefei Peoples R China;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    adsorption isotherm and thermodynamics; adsorption kinetics; adsorption mechanism; modified natural zeolites; phosphorus;

    机译:吸附等温线和热力学;吸附动力学;吸附机制;改性天然沸石;磷;
  • 入库时间 2022-08-18 21:49:30

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