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The circulating floating bed reactor: effect of particle size distribution of the carrier on ammonia conversion

机译:循环浮床反应器:载体粒径分布对氨转化率的影响

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Three Circulating Floating Bed Reactors (CFBR) R1, R2 and R3 with 20% v/v of a plastic carrier with different size distribution were operated to study the effect of the particles size of the carrier on biomass accumulation and nitrification performance. Operating conditions were similar in the three systems: ammonia concentrations around 50 mg-N-NH4+/L, ammonia loading rates up to 1.2 kg N-NH4+/m(3).d and temperatures between 14 and 27 degrees C. Accumulation of nitrite was observed until day 65th. This was result both of the inhibition of nitrite oxidation by free ammonia until day 20th and the insignificant accumulation of a biomass with low nitrite oxidising capacity between days 20 and 65th. Ammonia conversion rate and removal efficiency were higher in the reactor with lower particle size, R3 (nitrification rate of 1.1 kg N-NH4+/m(3).d and ammonia removal of 97% at 16 degrees C), than in R2 or R1 (nitrification rate of 1.0 kg N-NH4+/m(3).d and ammonia removal of 90% at 16 degrees C). The better efficiency in R3 was obtained as a result of the higher specific surface of the biofilm developed. Biomass activity was similar in the three reactors (2.2 and 1.12 g N/g protein.d at 30 and 15 degrees C, respectively). Both the biomass evolution with time and biomass retention in the systems was practically not influenced by the size of particle. Biomass concentration of 1.2 g protein/L was retained in the carrier and up to 20% of the newly produced biomass was retained in the CFBRs. [References: 17]
机译:操作了三个循环浮床反应器(CFBR)R1,R2和R3,其中20%v / v的塑料载体具有不同的粒径分布,以研究载体的粒径对生物量积累和硝化性能的影响。在这三个系统中,操作条件相似:氨浓度约为50 mg-N-NH4 + / L,氨负载率高达1.2 kg N-NH4 + / m(3).d,温度介于14到27摄氏度之间。亚硝酸盐的积累观察到第65天。这是直到20天之前游离氨抑制亚硝酸盐氧化的结果,也是20天到65天之间亚硝酸盐氧化能力低的生物量的微不足道的积累。与R2或R1相比,在具有较低粒度R3(硝化率为1.1 kg N-NH4 + / m(3).d和在16摄氏度下氨去除率为97%)的反应器中,氨转化率和去除效率更高。 (硝化速率为1.0 kg N-NH4 + / m(3).d,在16摄氏度下氨去除率为90%)。由于更高的生物膜比表面积,R3的效率更高。在三个反应器中的生物质活性相似(分别在30和15摄氏度时分别为2.2和1.12 g N / g蛋白质)。生物量随时间的演变以及系统中生物量的保留几乎不受颗粒大小的影响。生物质浓度为1.2 g / L的蛋白质保留在载体中,而高达20%的新产生的生物质保留在CFBR中。 [参考:17]

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