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Influence of hydraulic loading and air flowrate on urban wastewater nitrogen removal with a submerged fixed-film reactor

机译:水力负荷和空气流量对浸没式固定膜反应器去除城市污水氮的影响

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Nutrient disposal to sensitive areas, particularly nitrogen and phosphorus from wastewater treatment plants, provokes eutrophication reducing water quality. Fixed film technology is widely used for the removal of organic matter and nitrogen by the biological process of nitrification-denitrification. This paper studies a nitrification and post-denitrification lab-scale plant with a down-flow aerobic submerged filter for removal of organic matter and nitrification, followed by an anoxic upflow biofilter for denitrification. Recycled construction material (clay shists) was employed as support material and methanol was used as carbon source. After 2 weeks of acclimation in which nitrification reached steady-state conditions, different hydraulic loadings (0.35-1.59 m~3/m~2 h) and air flowrates (7.78-43.5 m~3/m~2h) were applied for 1 year. The highest hydraulic loading which complied with the EU regulation on nitrogen disposal was 0.71 m~3/m~2 h (1.6h). Hydraulic retention time (HRT), which corresponded to a nitrogen removal of 0.64 kg N/m~3 per day operating at an air flowrate of 25.6 m~3/m~2 h. Concerning to organic matter removal efficiency, the aerobic reactor accepted a maximum chemical oxygen demand (COD) volumetric loading of 16.0 kg COD/m~3 per day with a 75% COD removal efficiency. For all the tests carried out, suspended solids (SS) concentration in the outlet water was less than 35 mg/1.
机译:对敏感区域的营养处理,特别是废水处理厂的氮和磷的处理,引起了富营养化,降低了水质。固定膜技术被广泛用于通过硝化-反硝化的生物过程去除有机物和氮。本文研究了硝化和反硝化后实验室规模的设备,该设备具有下流式好氧潜水式过滤器,用于去除有机物和硝化作用,然后使用缺氧上流式生物滤池进行脱氮。回收的建筑材料(粘土片)用作支撑材料,甲醇用作碳源。在硝化达到稳态条件的适应期2周后,施加了不同的水力负荷(0.35-1.59 m〜3 / m〜2 h)和空气流量(7.78-43.5 m〜3 / m〜2h)1年。符合欧盟氮处理法规的最高水力负荷为0.71 m〜3 / m〜2 h(1.6h)。水力停留时间(HRT),对应于在25.6 m〜3 / m〜2 h的空气流量下每天脱氮0.64 kg N / m〜3。关于有机物去除效率,好氧反应器接受的最大化学需氧量(COD)体积负荷为每天16.0 kg COD / m〜3,COD去除效率为75%。对于所有进行的测试,出水中的悬浮固体(SS)浓度均小于35 mg / 1。

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