首页> 外文期刊>Environmental Science & Technology >In Situ Creation of Oxygen Vacancies in Porous Bimetallic La/Zr Sorbent for Aqueous Phosphate: Hierarchical Pores Control Mass Transport and Vacancy Sites Determine Interaction
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In Situ Creation of Oxygen Vacancies in Porous Bimetallic La/Zr Sorbent for Aqueous Phosphate: Hierarchical Pores Control Mass Transport and Vacancy Sites Determine Interaction

机译:磷酸盐在多孔双金属La / Zr吸收剂中的氧空位的原位产生:层级孔控制质量传输和空位决定相互作用

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摘要

Porous materials constructed from hierarchical pores are beneficial for the mass transport during the aqueous adsorption process. To achieve high performance, it is important to create adequate numbers of active centers to anchor the target ions in the solution. Synchronous construction of powerful bonding sites in the surface area amplification process should be a promising path for developing outstanding sorbents. By in situ evaporation of reductive soft organic templates, we successfully confined oxygen vacancies (V_o) in porous La/Zr bimetallic oxides. For aqueous phosphate contaminants, the as-produced porous sorbent exhibited superior removal performance, with equilibrium adsorption capacities almost ~2 times higher those that of the V_o-free counterpart. Based on mass transfer model analysis, pore structure has the potential to buffer external influence on mass transfer. Under an adverse condition (pH 9.0), the mass transfer was ~2.5 times higher than that in the pore-free one (0.10 min~(-1) vs 0.04 min~(-1)), ensuring the possibility of diffusing phosphate in further contact with these active sites. According to results of orbital interaction analysis and X-ray spectroscopy measurements, V_o-dominated active sites not only enhanced attractive orbital bonding interaction toward phosphate but also converted repulsive interaction into attractive reaction, thereby eliminating this kinetics barrier and promoting the rate of phosphate chemisorption reaction.
机译:由分层的孔构成的多孔材料对于在水吸附过程中的质量传输是有利的。为了获得高性能,重要的是要创建足够数量的活性中心以将目标离子固定在溶液中。在表面积放大过程中同步构建强力键合位点应该是开发出色吸附剂的有前途的途径。通过原位蒸发还原性软有机模板,我们成功地将氧空位(V_o)限制在多孔La / Zr双金属氧化物中。对于磷酸盐水溶液污染物,所生产的多孔吸附剂表现出卓越的去除性能,其平衡吸附能力几乎是不含V_o的吸附剂的约2倍。根据传质模型分析,孔结构具有缓冲外界对传质影响的潜力。在不利条件下(pH 9.0),传质比无孔传质的传质高约2.5倍(0.10 min〜(-1)对0.04 min〜(-1)),从而确保了磷酸盐在水中扩散的可能性。与这些活动站点的进一步联系。根据轨道相互作用分析和X射线光谱测量的结果,V_o为主的活性位点不仅增强了与磷酸盐的有吸引力的轨道键合相互作用,而且还将排斥相互作用转化为有吸引力的反应,从而消除了这种动力学障碍并提高了磷酸盐化学吸附反应的速率。

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  • 来源
    《Environmental Science & Technology》 |2020年第1期|437-445|共9页
  • 作者

  • 作者单位

    Center for Water and Ecology State Key Joint Laboratory of Environment Simulation and Pollution Control School of Environment Tsinghua University Beijing 100084 China;

    Center for Water and Ecology State Key Joint Laboratory of Environment Simulation and Pollution Control School of Environment Tsinghua University Beijing 100084 China Key Laboratory of Drinking Water Science and Technology Research Centre for Eco- Environmental Sciences Chinese Academy of Sciences Beijing 100085 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);美国《化学文摘》(CA);
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  • 正文语种 eng
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