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Characteristics of nitrate removal in a bio-ceramsite reactor by aerobic denitrification

机译:好氧反硝化去除生物陶粒反应器中硝酸盐的特性

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A newly aerobic denitrifying bacterial strain, Pseudomonas sp. X31, which was isolated from activated sludge, was added to a newly developed aerobic denitrification bio-ceramsite reactor as an inoculum to treat nitrate-polluted water and the denitrification activities of this system under different air-water ratio, hydraulic loading, and C/N (carbonitrogen ratio) conditions were investigated. It demonstrated excellent capability for denitrification in the bio-ceramsite reactor at air-water ratios that varied from 6.5:1 to 8:1. The optimal hydraulic loading for the bio-ceramsite reactor was 0.75 m/h with the optimum denitrification efficiency of 95.18%. The optimal C/N was 4.5:1 with a maximum nitrate removal efficiency of 98.48%. COD could be completely removed under the most appropriate condition (air-water ratio 6.5:1-8:1, hydraulic loading 0.75 m/h, and C/N 4.5:1). The quantity of the biomass in the reactor decreased along with flow, which was in accordance with the variety of the available substrate concentrations in the water. However, the biofilm activity was not proportional to the biomass in the bio-ceramsite reactor, but increased with the quantity of the biomass up to a peak value and then decreased.
机译:一种新的需氧反硝化细菌菌株,Pseudomonas sp.。从活性污泥中分离出的X31被添加到新开发的好氧反硝化生物陶粒反应器中作为接种物,以处理硝酸盐污染的水以及该系统在不同的气水比,水力负荷和C /研究了N(碳/氮比)条件。在6.5:1到8:1的气水比下,它在生物陶粒反应器中具有出色的反硝化能力。生物陶粒反应器的最佳水力负荷为0.75 m / h,最佳反硝化效率为95.18%。最佳C / N为4.5:1,最大硝酸盐去除率为98.48%。在最合适的条件下(空水比6.5:1-8:1,水力负荷0.75 m / h,C / N 4.5:1)可以完全去除COD。反应器中生物质的数量随流量而减少,这与水中可用底物浓度的变化有关。然而,生物膜活性与生物陶粒反应器中的生物量不成比例,而是随着生物量的增加而增加,直至达到峰值,然后下降。

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