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Fast Kinetics of Fe2+ Oxidation in Packed-Bed Reactors

机译:填充床反应器中Fe2 +氧化的快速动力学

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Thiobacillus ferrooxidans was used in fixed-film bioreactors to oxidize ferrous sulfate to ferric sulfate. Glass beads, ion-exchange resin, and activated-carbon particles were tested as support matrix materials. Activated carbon was tested in both a packed-bed bioreactor and a fluidized-bed bioreactor; the other matrix materials were used in packed-bed reactors. Activated carbon displayed the most suitable characteristics for use as a support matrix of T. ferrooxidans fixed-film formation. The reactors were operated within a pH range of 1.35 to 1.5, which effectively reduced the amount of ferric iron precipitation and eliminated diffusion control of mass transfer due to precipitation. The activated-carbon packed-bed reactor displayed the most favorable biomass holdup and kinetic performance related to ferrous sulfate oxidation. The fastest kinetic performance achieved with the activated-carbon packed-bed bioreactor was 78 g of Fe2+ oxidized per liter per h (1,400 mmol of Fe2+ oxidized per liter per h) at a true dilution rate of 40/h, which represents a hydraulic retention time of 1.5 min.
机译:铁氧化硫杆菌被用于固定膜生物反应器中,以将硫酸亚铁氧化为硫酸铁。测试了玻璃珠,离子交换树脂和活性炭颗粒作为支撑基质材料。在填充床生物反应器和流化床生物反应器中都对活性炭进行了测试。其他基质材料用于填充床反应器。活性炭显示出最适合用作三氧化二铁固定膜形成支撑基质的特性。反应器在1.35至1.5的pH范围内运行,可有效减少三价铁的沉淀量并消除由于沉淀引起的传质扩散控制。活性炭填充床反应器显示出与硫酸亚铁氧化有关的最有利的生物质滞留率和动力学性能。活性炭填充床生物反应器实现的最快动力学性能是,在真实稀释率为40 / h的条件下,每升每小时氧化78 g Fe2 +(每升每小时氧化1,400 mmol Fe2 +),这表示水力保留时间为1.5分钟。

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