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In Situ Nanoscale Imaging of Struvite Formation during the Dissolution of Natural Brucite: Implications for Phosphorus Recovery from Wastewaters

机译:天然水镁石溶解过程中鸟粪石形成的原位纳米成像:从废水中回收磷的意义

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摘要

As phosphorus (P) resources are diminishing, the recovery of this essential nutrient from wastewaters becomes an increasingly interesting option. P-recovery through the controlled crystallization of struvite (MgNH_4PO_4·6H_2O), a potential slow-release fertilizer, is highly attractive, but costly if large amounts of Mg have to be added. In this context, natural Mg-minerals like brucite (Mg(OH)_2) could provide more cost-effective Mg-sources compared to high-grade Mg-compounds such as MgCl_2. Here we used in situ atomic force microscopy (AFM) to study the interactions of ammonium phosphate solutions with brucite (001) cleavage surfaces. Brucite dissolution was strongly enhanced in the presence of H_2PO_4~- ions, most likely due to the formation of negatively charged surface complexes. Simultaneously with brucite dissolution, we directly observed the formation of a new phase that was identified as struvite by Raman spectroscopy. Our results suggest that brucite dissolution and struvite precipitation were coupled at the mineral-fluid interface within a thin fluid boundary layer. An interpretation is proposed where the heterogeneous nucleation and growth of struvite occurs via a particle-mediated process involving the formation of primary nanopartides, followed by their continuous aggregation, fusion and possible transformation to crystalline struvite. These observations have implications for the feasibility of using brucite in phosphorus recovery processes.
机译:随着磷(P)资源的减少,从废水中回收这种必需营养素成为越来越有趣的选择。通过鸟粪石(MgNH_4PO_4·6H_2O)(一种潜在的缓释肥料)的受控结晶进行P的回收具有很高的吸引力,但如果必须添加大量的Mg,则成本很高。在这种情况下,与高级镁化合物(例如MgCl_2)相比,天然镁矿物(例如水镁石(Mg(OH)_2))可以提供更具成本效益的镁源。在这里,我们使用原位原子力显微镜(AFM)来研究磷酸铵溶液与水镁石(001)裂解表面的相互作用。在H_2PO_4_离子存在下,水镁石的溶解作用得到了极大的增强,这很可能是由于带负电荷的表面复合物的形成。在水镁石溶解的同时,我们直接观察到新相的形成,该相被拉曼光谱法鉴定为鸟粪石。我们的结果表明,水镁石溶解和鸟粪石沉淀在薄流体边界层内的矿物-流体界面处耦合。提出了一种解释,其中鸟粪石的异质形核和生长是通过颗粒介导的过程发生的,该过程涉及形成初级纳米粒子,然后它们不断聚集,融合并可能转变为结晶鸟粪石。这些观察结果对在磷回收过程中使用水镁石的可行性产生了影响。

著录项

  • 来源
    《Environmental Science & Technology》 |2016年第23期|13032-13041|共10页
  • 作者单位

    German Research Centre for Geosciences (GFZ), Interface Geochemistry, 14473 Potsdam, Germany;

    Institut fuer Mineralogie, University of Muenster, 48149 Muenster, Germany,The Institute for Geoscience Research (TIGeR), Department of Chemistry, Curtin University, Perth 6845, Australia;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-17 13:59:11

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