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Nitrogen removal performance of anaerobic ammonia oxidation co-culture immobilized in different gel carriers

机译:固定在不同凝胶载体上的厌氧氨氧化共培养物的脱氮性能

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Four materials were prepared as carriers for immobilizing anaerobic ammonium-oxidizing sludge. Nitrogen removal performance by these immobilized gel bead groups was evaluated. The removal ratios of ammonium and nitrite by CMC anammox-immobilized beads were 100% and 95.3% in 48 hours, respectively. The removal efficiencies of ammonium and nitrite by SA, PVA-SA and PVA anammox-immobilized beads were lower than the CMC beads. Subsequently, the physical properties of the beads were studied. PVA-SA was found to be the best support material among the four by comparing the case of the immobilization procedure, nitrogen removal efficiencies, and the costs of materials. PVA-SA gel entrapment was optimized by an orthogonal experiment. The SEM micrographs displayed that the surface structure of PVA-SA immobilized beads is loose and finely porous, which facilitates diffusion of the nitrogen. The SEM micrographs also clearly showed that anammox bacteria existed in the gel beads. All results clearly demonstrate that immobilizing anammox sludge in gel carriers is feasible and exhibit good performance. This research provided a new route to maintain sufficient amount of anammox sludge in a practical anammox reactor.
机译:准备了四种材料作为固定化厌氧铵氧化污泥的载体。评价了这些固定的凝胶珠团的脱氮性能。在48小时内,CMC厌氧氨氧化固定化珠去除铵和亚硝酸盐的比率分别为100%和95.3%。 SA,PVA-SA和PVA厌氧氨纶固定的珠去除铵和亚硝酸盐的效率低于CMC珠。随后,研究了珠子的物理性质。通过比较固定程序,脱氮效率和材料成本,发现PVA-SA是四种材料中最好的载体材料。通过正交实验优化了PVA-SA凝胶的包封。 SEM照片显示,固定有PVA-SA的珠粒的表面结构疏松且微孔,这有利于氮的扩散。 SEM显微照片还清楚地表明,凝胶珠中存在厌氧细菌。所有结果清楚地表明,将厌氧氨氧化污泥固定在凝胶载体中是可行的,并表现出良好的性能。该研究提供了在实际的厌氧氨氧化反应器中保持足够量的厌氧氨氧化污泥的新途径。

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