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Morphology and Elemental Composition of Product Obtained from Struvite Fluidized Bed Reactor

机译:鸟粪石流化床反应器产物的形态和元素组成

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Phosphorus scarcity is no longer a distant future, therefore the idea of phosphoru recovery is currently widely adopted and developed. Technologies based on the struvite precipitation are consider to address the future P challenges in the optimum way. This paper presents the results of the pilot scale implementation of fluidized bed reactor for struvite precipitation at the wastewater treatment plant. The test was carried out to assess the applicability of the technology in terms of robustness and final product quality, operating at low pH level (7,5-7,8). Obtained struvite pellets were characterized by X-ray diffraction (XRD) and scanning electron microscopy (SEM) with an energy dispersive spectrometer (EDS). The presence of foreign ions and particulate impurities in the feed source, affected the uniform growth of the crystal structure, resulting in highly porous structure of the pellets. Despite the varying physiochemical conditions, typical for wastewater, obtained pellets were determined with 95% struvite purity.
机译:磷的稀缺不再是遥不可及的未来,因此,磷回收的想法目前已被广泛采用和发展。考虑到以鸟粪石沉淀为基础的技术以最佳方式应对未来的磷挑战。本文介绍了废水处理厂中鸟粪石沉淀流化床反应器中试规模实施的结果。进行该测试以评估该技术在低pH值(7,5-7,8)下的耐用性和最终产品质量方面的适用性。通过X射线衍射(XRD)和具有能量色散谱仪(EDS)的扫描电子显微镜(SEM)表征获得的鸟粪石丸粒。进料源中外来离子和颗粒杂质的存在影响了晶体结构的均匀生长,从而导致了颗粒的高度多孔结构。尽管有不同的理化条件(通常用于废水),但所获得的沉淀物的鸟粪石纯度为95%。

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