首页> 外文期刊>Journal of Environmental Science and Health. A, Toxic/Hazardous Substances & Environmental Engineering >Determining the feasibility of phosphorus recovery as struvite from filter press centrate in a secondary wastewater treatment plant
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Determining the feasibility of phosphorus recovery as struvite from filter press centrate in a secondary wastewater treatment plant

机译:确定在二级废水处理厂中从压滤机浓缩物中回收鸟粪石中磷的可行性

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In this study, the workability of a pilot-scale, fluidized reactor was examined to determine effectiveness in removing, and recovering, phosphorus as struvite, from centrate at Lulu Island Wastewater Treatment Plant (LIWWTP), Richmond, British Columbia. The crystallization process was run continuously over a period of 5 months in two runs (Run 1 for 4 months and Run 2 for a month). In addition to efficient recovery of phosphorus as struvite, the study also investigated factors that affect the growth of struvite. Chemical analyses were conducted on the harvested struvite to determine its purity. Results showed that the reactor was capable of removing over 90% of phosphate and 4% of ammonia-nitrogen, with greater than 85% of the phosphate removed being recovered as harvestable struvite crystals. It was possible to achieve over 90% P-removal at a pH of 7.5; this is contrary to the information found in literature, which recommends that a higher pH (8.2-9.0) is required. Factors that affected phosphate removal were the operating pH, the reactor supersaturation ratio (SSR), the N:P and Mg:P molar ratios. Analysis of the harvested product showed that the crystals were composed of nearly pure struvite (96% by weight), with small amounts of calcium and traces of other metals. High resolution SEM pictures were taken of the inside of the crystals to determine the influence of Mg:P molar ratio on the compactness of the crystals.
机译:在这项研究中,检查了中试规模的流化反应器的可操作性,以确定从不列颠哥伦比亚省里士满的露露岛废水处理厂(LIWWTP)的浓缩物中去除和回收鸟粪石中磷的有效性。结晶过程分两个运行连续进行了5个月,其中运行1持续4个月,运行2持续一个月。除了有效回收鸟粪石中的磷外,该研究还调查了影响鸟粪石生长的因素。对收获的鸟粪石进行化学分析以确定其纯度。结果表明,该反应器能够去除90%以上的磷酸盐和4%的氨氮,其中超过85%的磷酸盐被回收为可收获的鸟粪石晶体。在7.5的pH值下,有可能实现90%以上的P去除率。这与文献中的信息相反,文献中的信息建议需要更高的pH(8.2-9.0)。影响磷酸盐去除的因素是操作pH,反应器过饱和比(SSR),N:P和Mg:P摩尔比。对收获产品的分析表明,晶体由几乎纯的鸟粪石(占重量的96%),少量的钙和痕量其他金属组成。拍摄了晶体内部的高分辨率SEM照片,以确定Mg:P摩尔比对晶体致密性的影响。

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