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Performance and mechanism of synchronous nitrate and phosphorus removal in constructed pyrite-based mixotrophic denitrification system from secondary effluent

机译:二次污水构建黄铁矿基纺织脱氮系统同步硝酸盐和磷去除的性能及机理

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The performance and process of the constructed pyrite-based mixotrophic denitrification (POMD) system using pyrite and residual organic matters as the co-electron donors were investigated for simultaneous removal of N and P from secondary effluent. After the batch experiments, 61.80 +/- 3.26% of phosphate and 99.99 +/- 0.01% of nitrate were removed, and the obtained nitrate removal rate constant can reach 2.09 days(-1)in POMD system, which was significantly superior to that reported (0.95 day(-1)) in pyrite-based autotrophic denitrification (PAD) system. PO43--P removal was mainly achieved via chemical precipitation as FePO(4)with iron, and it was irrelevant with the initial nitrate and ammonium concentrations. High-throughput 16S rRNA gene sequencing analysis showed the coexistence of heterotrophic and autotrophic denitrifiers in the mixotrophic environment. The denitrification process could be divided into two stages according to the carbon balance and calculation of sulfate accumulation: (a) nitrate was mainly reduced heterotrophically during 12-36 h and (b) nitrate was reduced autotrophically after 36 h. The calculated proportion of heterotrophic denitrification was 58.17 +/- 3.78%, which was promoted by a higher ammonium concentration. These findings are likely to be useful in understanding the mixotrophic denitrification process and developing a cost-effective technology to simultaneously remove N and P from secondary effluent.
机译:使用黄铁矿和残留有机物作为共电子供体构建的硫铁矿混合营养脱氮(POMD)系统的性能和处理进行了研究用于同时去除氮和磷从二级出水。间歇实验后,磷酸盐的61.80 +/- 3.26%和硝酸的99.99±0.01%除去,将得到的硝酸盐去除速率常数可以达到2.09天(-1)POMD系统,这是显著优于在硫铁矿自养脱氮(PAD)系统报告(0.95天(-1))。 PO43 - P去除主要通过化学沉淀与铁取得的的FePO(4),它是不相关的与初始硝酸盐和铵的浓度。高通量16S rRNA基因测序分析表明,异养和自养反硝化菌共存的混合营养环境。反硝化过程可以根据碳平衡和硫酸盐的累积计算来分为两个阶段:(1)硝酸盐主要异养生12-36小时,(b)中的硝酸期间减少为36小时后自养生降低。异养脱氮的计算比例为58.17 +/- 3.78%,这是由高浓度的铵促进。这些发现很可能在理解混合营养反硝化过程和显影具有成本效益的技术来同时从二次流出物中除去的N和P是有用的。

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