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Comparative Study of Denitrifying-MBBRs with Different Polyethylene Carriers for Advanced Nitrogen Removal of Real Reverse Osmosis Concentrate

机译:不同聚乙烯载体对不同聚乙烯载体进行脱氮的比较研究,用于高氮去除实际反渗透浓缩物

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摘要

Nitrogen (N) remains a great challenge in wastewater treatment while attempts to remove N has continuously been a research point for decades. In this study, the long-term performance of four identical-shape denitrification MBBRs (moving bed biofilm reactors) with four different configurations of cylindrical polyethylene as carriers (Φ25 × 12, Φ25 × 4, Φ15 × 15, and Φ10 × 7 mm) for advanced N removal of real reverse osmosis concentrate was investigated in great detail. The N of the real concentrate can be effectively removed by denitrification MBBRs when the pH, temperature, hydraulic retention time (HRT), C/N ratio, and filling rate are 7.50–8.10, 24~26 °C, 12 hours, 6.6, and 50%, respectively. The results showed that the MBBR with the Φ15 × 15 poly-carrier had the best removal efficiency on NO3-–N (78.0 ± 15.8%), NO2-–N (43.79 ± 9.30%), NH4+–N (55.56 ± 22.28%), and TN (68.9 ± 12.4%). The highest biomass of 2.13 mg/g-carrier was in the Φ15 × 15 poly-carrier was compared with the other three carriers, while the genes of the Φ15 × 15 poly-carrier reactor were also the most abundant. Proteobacteria was the most abundant phylum in the system followed by Bacteroidetes and then Firmicutes. The entire experiment with various parameter examination supported that Φ15 × 15 poly-carrier MBBR was a promising system for N removal in high strength concentrate. Despite the lab-scale trial, the successful treatment of high strength real reverse osmosis concentrate demonstrated the reality of the treated effluent as possible reclaimed water, thus providing a good showcase of N-rich reverse osmosis concentrate purification in practical application.
机译:氮(N)保持在废水处理中一个巨大的挑战,同时试图除去N-已经连续几十年来的研究点。在这项研究中,四个相同的形状脱氮MBBRs(移动床生物膜反应器)与圆柱形聚乙烯的四种不同的配置作为载体的长期性能(Φ25×12,Φ25×4,Φ15×15,和Φ10×7毫米)为先进的N的去除真实反渗透浓缩物的非常详细进行了研究。真正的浓缩物的N可以通过反硝化MBBRs能够有效地除去当pH,温度,水力停留时间(HRT),C / N比,并且填充率是7.50-8.10,24〜26℃下,12小时,6.6,和50%,分别。结果表明,该MBBR与Φ15×15的聚载波对NO3最佳去除率 - N(78.0±15.8%),NO 2 - N(43.79±9.30%),NH 4 + -N(55.56±22.28% )和TN(68.9±12.4%)。 2.13毫克/克 - 载体的最高生物量在Φ15×15的聚载波与其它三个载波进行比较,而Φ15×15的聚载体反应器的基因也最丰富的。变形杆菌是在系统中最丰富的门,随后拟杆菌,然后厚壁菌门。与各种参数检查整个实验支持了Φ15×15的聚载波MBBR是为N的去除在高强度浓缩物的有前途的系统。尽管实验室规模的试验中,高强度真实反渗透浓缩物的成功的治疗表现出的处理后的污水尽可能再生水的现实,因此在实际应用中,提供N-富反渗透浓缩物的纯化的一个很好的展示。

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