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Struvite Precipitation Using Continuous Flow Reactor

机译:使用连续流量反应器脱渣沉淀

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Due to population rapid growth, fertilizer industries have to increase the production to ensure food security causing faster non-renewable resource depletion. However, organic wastewater (cow urine) commonly contains high amount in NH_4~+ and PO_4~(3-) is still underutilized and causing eutrophication and unpleasant odour problem. Struvite precipitation, a common technique using for nitrogen and phosphorus recovery from wastewater, is proposed to recover the organic and renewable nutrients sources. Struvite precipitation process for nutrients recovery/removal from waste sources is beneficial not only providing slow-releasing and high-quality fertilizer but also reducing soil and water pollution from rich-nutrients wastewater. This research aimed to utilize the cow urine wastes as the raw material for the struvite precipitation, to determine the influence of the PO_4~(3-): Mg~(2+) concentration, and input flowrate on a continuous reactor to the struvite formation. Struvite was made using continuous method with variation of the PO_4~(3-): Mg~(2+) concentrations ratio of 1:1; 1:2 and 1:4 and the inlet flowrate of 8.2 mL/s and 15.8 mL/s. The results of this study show that the increase ofMgCl_2 addition and the higher flow rate could increase the P removal efficiency of struvite in reactors. The optimum phosphate removal efficiency at the flow rate of 8.2 mL/s is obtained at 80 mins with the percentage of 54%, while at the flow rate of 15.8 mL/s, 43% ofP removal is obtained at 70 mins. The results from the kinetic study in the input flowrate was found that the higher the concentration ratio of PO_4~(3-) and Mg~(2+), the greater the value of the reaction rate constant. However, for molar ratio 1:1 of PO_4~(3-): Mg~(2+), the greater the input flow rate, the smaller value of the reaction rate constant was obtained. From this study, it is revealed that the molar ratio of PO_4~(3-): Mg~(2+) and aeration rate affect significantly the struvite precipitation.
机译:由于人口迅速增长,化肥行业必须增加生产,确保粮食安全造成更快的不可再生资源耗尽。然而,有机废水(母牛尿液)通常在NH_4〜+和PO_4〜(3-)中含有大量的量仍然未充分利用并引起富营养化和令人不快的气味问题。鸟粪石沉淀,使用从废水的氮和磷回收的常用技术,提出了以回收有机的和可再生的营养源。营养物质恢复/从废物来源恢复/去除的斯特鲁维沉淀过程不仅有利于提供缓慢释放和高质量的肥料,而且还减少了来自富含养分废水的土壤和水污染。本研究的目的是利用牛尿废物作为原料的鸟粪石沉淀,以确定PO_4〜的影响(3-):向形成鸟粪石上的连续反应器中的Mg〜(2+)浓度,以及输入流量。使用连续方法进行斯特鲁维,具有PO_4〜(3-):mg〜(2+)浓度比为1:1的变化; 1:2和1:4以及8.2ml / s和15.8ml / s的入口流量。该研究的结果表明,增加了MgCl_2的增加和较高的流速可以提高反应器中斯特勒维的P去除效率。在8.2毫升的流率的最佳磷酸盐去除效率S是在80分钟以54%的比例获得/,而在15.8毫升/秒的流速,在70分钟,获得43%的OFP去除。发现输入流量中动力学研究的结果发现,PO_4〜(3-)和Mg〜(2+)的浓度比越高,反应速率恒定的值越大。但是,对于摩尔比1:1的PO_4〜(3-):Mg〜(2+),输入流速越大,得到反应速率常数的较小值。从本研究开始,揭示了Po_4〜(3-):mg〜(2+)和通气率的摩尔比显着影响Struvite沉淀。

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