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Treatment of anaerobically digested dairy manure in a two-stage biofiltration system

机译:两阶段生物过滤系统处理厌氧消化的牛粪

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High concentrations of ammonium and phosphate present a challenge to cost-effective treatment of anaerobically digested dairy manure. This study investigated the efficacy of a two-stage biofiltration system for passive treatment of digested dairy manure. The first stage pebble filters were batch loaded. When the slurry-like digested dairy manure was retained on pebble beds, soluble contaminants were removed before liquid infiltrated over 8-17 days. The pebble filters removed 70% of soluble chemical oxygen demand, 71% of soluble biochemical oxygen demand, 75% of ammonium, and 68% of orthophosphate. Nitrogen removal was attributed to the conventional nitrification - denitrification process and novel nitritation - anammox process. Aerobic ammonium oxidizing and anammox bacteria accounted for 25 and 23% of all bacteria, respectively, in the filtrate of the pebble filters. The longer it took for filtration, the greater the removal efficiency of soluble contaminants. The second stage sand filters had removal efficiencies of 17% for soluble chemical oxygen demand, 45% for soluble biochemical oxygen demand, 43% for ammonium, and 16% for orthophosphate during batch operations at a hydraulic retention time of 7 days. Aerobic ammonium oxidation and anammox were primarily responsible for nitrogen removal in the sand filters. Vegetation made an insignificant difference in treatment performance of the sand filters.
机译:高浓度的铵和磷酸盐对厌氧消化的乳牛粪的经济有效处理提出了挑战。这项研究调查了两阶段生物过滤系统被动处理消化后的牛粪肥料的功效。第一级卵石过滤器是分批装载的。当将淤浆状的消化后的乳肥保留在鹅卵石床上时,在液体渗透8-17天之前,将可溶性污染物去除。卵石过滤器去除了70%的可溶性化学需氧量,71%的可溶性生物化学需氧量,75%的铵和68%的正磷酸盐。脱氮归因于常规硝化-反硝化工艺和新型硝化-厌氧氨氧化工艺。在卵石过滤器的滤液中,好氧铵氧化菌和厌氧氨氧化菌分别占所有细菌的25%和23%。过滤时间越长,可溶性污染物的去除效率就越高。在7天的水力停留时间下,第二阶段的砂滤池在可操作的批处理过程中对可溶性化学需氧量的去除效率为17%,可溶性生化需氧量的去除率为45%,铵的去除率为43%,正磷酸盐的去除率为16%。好氧铵氧化和厌氧氨氧化是砂滤池中氮去除的主要原因。植被对砂滤池的处理性能影响不大。

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