首页> 外文期刊>Science of the total environment >Development and simulation of a struvite crystallization fluidized bed reactor with enhanced external recirculation for phosphorous and ammonium recovery
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Development and simulation of a struvite crystallization fluidized bed reactor with enhanced external recirculation for phosphorous and ammonium recovery

机译:基于磷和铵恢复增强外再循环的跨磨削流化床反应器的开发和仿真

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摘要

Recovering nitrogen and phosphorus from waste water in the form of struvite is an effective way to recycle resources. The insufficient purity of the resulting struvite and the large loss of nitrogen and phosphorus are the challenges at present. Therefore, it is urgent to develop innovative method in struvite crystallization process for efficient nitrogen and phosphorus recovery. This study proposed a crystallization method to reduce the loss of nitrogen and phosphorus by a struvite fluidized bed reactor (FBR) with optimized structure and operation conditions. The properties of struvite obtained under various conditions in the reactor were studied, and the internal operating conditions of the reactor were simulated with COMSOL Multiphysics to verify the effectiveness of the reactor optimization. This reactor achieved stable operation under the conditions of N/P = 1:1 and pH = 9.0. The purity of struvite obtained reached 98.5%, the conversion rate of ammonia nitrogen reached 97.2%, and struvite crystals could grow to 84 μm within 24 h. The simulation results showed that the Venturi tubes installed at multiple locations increased the turbulent energy to 4 × 10~(-4) m~2/s~2, which greatly improved the mass transfer efficiency. The trajectory of the crystal particles was consistent with the fluid flow field, which promoted the purification and growth of the crystal. In general, the new FBR with enhanced external recirculation would be a very feasible way to improve crystal growth and crystal purification of struvite, and it could enhance the recovery efficiency of nitrogen and phosphorus with reduced cost.
机译:从Struvite的形式回收来自废水的氮和磷是重新回收资源的有效途径。所得稳定的不足和氮和磷的大损失的不足是目前的挑战。因此,迫切需要在斯特鲁铁结晶过程中开发创新方法,以获得有效的氮和磷恢复。该研究提出了一种结晶方法,以通过优化的结构和操作条件降低斯特鲁瓦流化床反应器(FBR)的氮和磷损失。研究了在反应器中各种条件下获得的斯特鲁维特的性质,并用COMSOL多发性模拟反应器的内部操作条件,以验证反应器优化的有效性。该反应器在N / P = 1:1和pH = 9.0的条件下实现了稳定的操作。获得的纯度达到98.5%,氨氮的转化率达到97.2%,并且在24小时内施氮至84μm。仿真结果表明,安装在多个位置的文丘里管增加到4×10〜(-4)m〜2 / s〜2的湍流能量增加,大大提高了传质效率。晶体颗粒的轨迹与流体流场一致,促进晶体的纯化和生长。通常,具有增强的外部再循环的新型FBR是改善晶体生长和晶体纯化的非常可行的方式,可以提高氮气和磷的恢复效率降低。

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  • 来源
    《Science of the total environment》 |2021年第15期|144311.1-144311.10|共10页
  • 作者单位

    Key Lab of Water Pollution Control Technology of Hunan Province School of Metallurgy and Environment Central South University Changsha 410083 China Chinese National Engineering Research Center for Control & Treatment of Heavy Metal Pollution Changsha 410083 China;

    Key Lab of Water Pollution Control Technology of Hunan Province School of Metallurgy and Environment Central South University Changsha 410083 China Chinese National Engineering Research Center for Control & Treatment of Heavy Metal Pollution Changsha 410083 China;

    Key Lab of Water Pollution Control Technology of Hunan Province School of Metallurgy and Environment Central South University Changsha 410083 China Chinese National Engineering Research Center for Control & Treatment of Heavy Metal Pollution Changsha 410083 China;

    Key Lab of Water Pollution Control Technology of Hunan Province School of Metallurgy and Environment Central South University Changsha 410083 China Chinese National Engineering Research Center for Control & Treatment of Heavy Metal Pollution Changsha 410083 China;

    Key Lab of Water Pollution Control Technology of Hunan Province School of Metallurgy and Environment Central South University Changsha 410083 China Chinese National Engineering Research Center for Control & Treatment of Heavy Metal Pollution Changsha 410083 China;

    Key Lab of Water Pollution Control Technology of Hunan Province School of Metallurgy and Environment Central South University Changsha 410083 China Chinese National Engineering Research Center for Control & Treatment of Heavy Metal Pollution Changsha 410083 China Institute of Materials and Systems for Sustainability Nagoya University Nagoya Japan;

    Key Lab of Water Pollution Control Technology of Hunan Province School of Metallurgy and Environment Central South University Changsha 410083 China Chinese National Engineering Research Center for Control & Treatment of Heavy Metal Pollution Changsha 410083 China;

    The Jiangxi Provincial Collaborative Research Institute for Environmental Protection Industry Wannian 335500 China;

    Key Lab of Water Pollution Control Technology of Hunan Province School of Metallurgy and Environment Central South University Changsha 410083 China Chinese National Engineering Research Center for Control & Treatment of Heavy Metal Pollution Changsha 410083 China;

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

    Struvite; Fluidized bed reactor; Phosphorous recovery; Crystal growth; Computational fluid dynamics;

    机译:Struvite;流化床反应器;磷恢复;水晶生长;计算流体动力学;
  • 入库时间 2022-08-18 23:29:34

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