>Fluidized granulation is one of the common methods used in wastewater treatment and resource recovery with harvesting millimeter-scale l'/> Application of image processing on struvite recovery from swine wastewater by using the fluidized bed
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Application of image processing on struvite recovery from swine wastewater by using the fluidized bed

机译:使用流化床,图像处理在猪废水中从猪废水中的应用

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摘要

>Fluidized granulation is one of the common methods used in wastewater treatment and resource recovery with harvesting millimeter-scale large particles. Presently, effective methods are lacking to measure the fluidized granules ranging from micro- to millimeter scales, with the consequence of ineffectively controlling and optimizing the granulation process. In this work, recovering struvite (MgNH4PO4·6H2O) from swine wastewater by using a fluidized bed was taken as an example. Image processing was applied to analyze the properties of different types of struvite granules, including morphology, particle size distribution, number density and mass concentration. Four stages of the struvite crystal evolution were therefore defined: aggregation, aggregate compaction, cluster-agglomerating and coating growth. These stages could occur simultaneously or sequentially. Up-flow rates of 30–80 mm/s in the fluidized bed sustained 600–876 g/L granular solids. Results revealed that the coating-growth granules were formed with compact aggregates or cluster-agglomerating granules as the nuclei. The growth rates for the different types of particles, including population growth, mass increase and particle size enlargement, were determined. In final, a schematic illustration for struvite granulation process is also presented.]]>
机译:<![CDATA [<摘要XMLNS:XLINK =“http://www.w3.org/1999/xlink”> >流化肉芽是废水处理和资源回收中使用的常用方法之一,采收毫米尺度大颗粒。目前,缺乏有效的方法,测量从微量到毫米尺度的流化颗粒,结果是无效地控制和优化造粒过程。在这项工作中,通过使用流化床回收来自猪废水的斯特鲁维石(MgNH 4 Po 2 ·6h 2 o)是一个例子。应用图像处理以分析不同类型的斯基矾颗粒的性质,包括形态,粒度分布,数密度​​和质量浓度。因此,定义了四个稳定岩晶体进化的阶段:聚集,聚集压实,聚类聚集和涂层生长。这些阶段可以同时或顺序发生。流化床中30-80mm / s的上流率持续600-876g / l粒状固体。结果表明,涂​​层生长颗粒形成为浓缩的聚集体或簇凝聚颗粒作为核。确定不同类型的颗粒的生长速率,包括人口生长,质量增加和粒度扩大。在最终时,还提出了斯特鲁维特造粒过程的示意图。 ]]>

著录项

  • 来源
    《Water Science and Technology》 |2018年第2期|共8页
  • 作者单位

    Key Laboratory of Urban Pollutant Conversion Institute of Urban Environment Chinese Academy of Sciences No. 1799 Jimei Road Xiamen City Fujian 361021 China;

    Key Laboratory of Urban Pollutant Conversion Institute of Urban Environment Chinese Academy of Sciences No. 1799 Jimei Road Xiamen City Fujian 361021 China;

    Key Laboratory of Urban Pollutant Conversion Institute of Urban Environment Chinese Academy of Sciences No. 1799 Jimei Road Xiamen City Fujian 361021 China;

    Key Laboratory of Urban Pollutant Conversion Institute of Urban Environment Chinese Academy of Sciences No. 1799 Jimei Road Xiamen City Fujian 361021 China;

    Key Laboratory of Urban Pollutant Conversion Institute of Urban Environment Chinese Academy of Sciences No. 1799 Jimei Road Xiamen City Fujian 361021 China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 水资源调2查与水利规划;
  • 关键词

    fluidized bed; granulation; phosphorus recovery; struvite; wastewater;

    机译:流化床;造粒;磷恢复;Struvite;废水;

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