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通过镁金属腐蚀实现猪废水中磷酸盐的结晶与沉淀。

Crystallization and precipitation of phosphate from swine wastewater by magnesium metal corrosion.

作者信息

Huang Haiming, Liu Jiahui, Jiang Yang

机构信息

Hebei Key Laboratory of Applied Chemistry, School of Environmental and Chemical Engineering, Yanshan University, Qinhuangdao 066004, PR China.

出版信息

Sci Rep. 2015 Nov 12;5:16601. doi: 10.1038/srep16601.

Abstract

This paper presents a unique approach for magnesium dosage in struvite precipitation by Mg metal corrosion. The experimental results showed that using an air bubbling column filled with Mg metal and graphite pellets for the magnesium dosage was the optimal operation mode, which could significantly accelerate the corrosion of the Mg metal pellets due to the presence of graphite granules. The reaction mechanism experiments revealed that the solution pH could be used as the indicator for struvite crystallization by the process. Increases in the Mg metal dosage, mass ratio of graphite and magnesium metal (G:M) and airflow rate could rapidly increase the solution pH. When all three conditions were at 10 g L(-1), 1:1 and 1 L min(-1), respectively, the phosphate recovery efficiency reached 97.5%. To achieve a high level of automation for the phosphate recovery process, a continuous-flow reactor immersed with the graphite-magnesium air bubbling column was designed to harvest the phosphate from actual swine wastewater. Under conditions of intermittently supplementing small amounts of Mg metal pellets, approximately 95% of the phosphate could be stably recovered as struvite of 95.8% (±0.5) purity. An economic analysis indicated that the process proposed was technically simple and economically feasible.

摘要

本文提出了一种通过镁金属腐蚀进行鸟粪石沉淀时镁投加量的独特方法。实验结果表明,使用填充有镁金属和石墨颗粒的鼓泡柱进行镁投加是最佳操作模式,由于石墨颗粒的存在,这可以显著加速镁金属颗粒的腐蚀。反应机理实验表明,溶液pH值可作为该过程中鸟粪石结晶的指标。增加镁金属投加量、石墨与镁金属的质量比(G:M)以及气流速率可迅速提高溶液pH值。当这三个条件分别为10 g L(-1)、1:1和1 L min(-1)时,磷回收效率达到97.5%。为实现磷回收过程的高度自动化,设计了一种浸没有石墨-镁鼓泡柱的连续流反应器,用于从实际猪废水中回收磷。在间歇补充少量镁金属颗粒的条件下,约95%的磷可稳定回收为纯度为95.8%(±0.5)的鸟粪石。经济分析表明,所提出的工艺技术简单且经济可行。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bc03/4642316/56498130bca3/srep16601-f1.jpg

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