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Impulse responses of a monoethylamine-fed fluidized bed reactor

机译:单乙胺加料流化床反应器的脉冲响应

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The responses of a steady-state, continuous-flow, completely-mixed fluidized bed reactor (FBR) to a range of monoethylamine (MEA) impulses are analyzed in terms of its combined carbon oxidation and nitrification efficiencies. Immobilized cells are cultivated at a mean cell residence time (MCRT) that exceeds 75 days. Responses due to bacterial activities and physical flows are separately estimated using a methodology based on mass balance calculations. MEA inhibition becomes evident when respective critical impulse loadings are exceeded, i.e., 0.12 mg TOC/mg VS for carbon oxidation and 0.021 mg TOC/mg VS for nitrification (TOC: total organic carbon, VS: volatile solids). Nitrifying cells are shown to be more susceptible to MEA impulses than their heterotrophic counterparts. However, the presence of nitrification activities under the conditions tested demonstrates the advantages of cell immobilization that offer greater flexibility when challenged with suddenly increased MEA loads over a short period of time. Mass balance calculations on nitrogen species confirms that 0.583 mg NH_4~+-N is produced per mg MEA-C removed when the assimilatory nitrogen requirements for cell synthesis are negligible.
机译:结合碳氧化和硝化效率,分析了稳态,连续流动,完全混合的流化床反应器(FBR)对一系列单乙胺(MEA)脉冲的响应。固定的细胞以超过75天的平均细胞停留时间(MCRT)培养。使用基于质量平衡计算的方法分别估算由于细菌活动和物理流量引起的响应。当超过各自的临界脉冲负载时,即对碳氧化而言,0.12 mg TOC / mg VS和对于硝化而言,0.021 mg TOC / mg VS(超过TOC:总有机碳,VS:挥发性固体)时,MEA抑制变得明显。已显示硝化细胞比异养细胞更容易受到MEA脉冲的影响。然而,在所测试的条件下硝化活性的存在证明了细胞固定的优势,当在短时间内突然增加的MEA负荷挑战时,它具有更大的灵活性。关于氮物质的质量平衡计算证实,当细胞合成所需的同化氮需求可忽略不计时,每去除毫克MEA-C,就会产生0.583毫克NH_4〜+ -N。

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