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Raw oyster shells as carrier for nitrifying biofilm in aerated biofilter

机译:作为硝化生物膜的储藏箱的原料牡蛎壳在膨胀的生物膜

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Oyster shell wastes resulted from the mariculture presents an imperative disposal problem in the coastal region. In this study, the nitrification efficiency on an aerated biofilter with raw oyster shells (ROS) as the sole buffer agent and the biomass carrier was evaluated. The capability of alkalinity supplied by ROS was found to be about 1050 mg/L, enabling a loading ammonia concentration up to 147 mg/L being removed. A substantial NH_4~+-N removal of 65% could be achieved even at the loading concentration as high as 240 mg·L~(-1). About 100% nitrification was maintained as the influent NH_4~+-N concentration kept below 120 mg/L. The nitrification kinetics of biofilm with ROS fit well to Monod kinetics equation. The saturation constant K_m was 625 mg/L for the nitrifier with ROS, about one order of magnitude higher than that for compared plastic ball (PLB) carrier system.
机译:牡蛎壳废物由海水养殖引发沿海地区的势在必行的处置问题。在该研究中,评价用原料牡蛎壳(ROS)作为唯一缓冲剂和生物质载体的硝化效率。 ROS提供的碱度的能力被发现为约1050mg / L,使得氨浓度高达147mg / L的浓度。即使在高达240mg·l〜(-1)的加载浓度下,也可以实现65%的实质性NH_4〜+ -N去除。将约100%硝化保持为温进入的NH_4〜+ -N浓度保持在120mg / L以下。生物膜硝化动力学与ROS合适井至Monod动力学方程。饱和常数K_M为硝化器的亚硝化,具有ROS,大约一个数量级高于比较的塑料球(PLB)载体系统。

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