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Achieving Low Nutrient Effluent Quality at Lagoon Facilities using MBBR Technology: Low Temperature Performance and Bacterial Community Analysis

机译:使用MBBR技术实现泻湖设施的低营养污水质量:低温性能和细菌群落分析

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The challenges that currently restrict the widespread application of nutrient removal processes and technologies to low flow and rural wastewater treatment facilities such as lagoons include the availability of proven, economical and low operational intensity technologies to operate as upgrade units to supplement the current infrastructure of the passive treatment systems. In addition, many lagoon treatment facilities in temperate or cold climates lose the ability to nitrify and hence discharge effluent with elevated ammonia-nitrogen concentrations, for portions of fall, winter and spring. The study investigates the use of the moving bed biofilm reactor (MBBR) technology as a low operational intensity upgrade solution to lagoon facilities in temperate and cold climates to achieve year-round, cold temperature nitrification, to achieve total nitrogen removal via conventional nitrification/denitrification, and to achieve total phosphorus removal to levels below 0.1 mg-P/L through biomass assimilation. The study includes kinetic analyses attained at the pilot scale along with advanced microscopy and molecular methods to enhance the current fundamental understanding of nutrient removal biofilms in the MBBR technology applied as lagoon upgrade units. The study demonstrates the potential of the MBBR technology as an economical, low operational intensity, small land footprint upgrade technology to achieve significant nutrient removal at lagoons. The study demonstrates that during long winter exposures the system maintains significant nitrification kinetics, significant total nitrogen removal and significant assimilation of phosphorus, achieving high quality, low nutrient effluent at a lagoon facility operated in a temperate climate.
机译:目前限制营养消除过程和技术广泛应用于低流量和农村废水处理的挑战,如泻湖,包括经过验证,经济和低运营强度技术的可用性,以便为升级单位运营,以补充被动的当前基础设施治疗系统。此外,温带温带或寒冷气候的许多泻湖治疗设​​施失去了硝化的能力,从而含有升高的氨 - 氮浓度的排出流出物,适用于秋季,冬季和春季。该研究调查了移动床生物膜反应器(MBBR)技术的使用,作为一种低运行强度升级解决方案,在温带气温和寒气中的泻湖设施,实现全年寒冷的温度硝化,实现通过常规硝化/脱氮来实现全氮去除,并通过生物质同化达到低于0.1mg-p / l水平的总磷去除。该研究包括试点规模达到的动力学分析以及先进的显微镜和分子方法,以提高当前对作为泻湖技术中的MBBR技术中营养去除生物膜的基础知识。该研究证明了MBBR技术的潜力,作为经济,低运行强度,小土地足迹升级技术,以实现泻湖的显着营养消除。该研究表明,在长冬季暴露期间,该系统保持显着的硝化动力学,显着的总氮气去除,显着的氮气去除和显着同化磷,在温带气候运营的泻湖设施中实现高质量,低营养流出物。

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