筛子(范畴论)
絮凝作用
总悬浮物
悬浮物
总溶解固体
化学
化学需氧量
沉积作用
粒径
凝结
移动床生物膜反应器
过滤(数学)
聚合物
废水
色谱法
化学工程
环境工程
生物膜
环境科学
数学
有机化学
生物
心理学
古生物学
组合数学
沉积物
细菌
遗传学
统计
物理化学
精神科
工程类
作者
B. Rusten,S. S. Rathnaweera,E. Rismyhr,Ashish Kumar Sahu,Jonas Ntiako
摘要
Fine mesh rotating belt sieves (RBS) offer a very compact solution for removal of particles from wastewater. This paper shows examples from pilot-scale testing of primary treatment, chemically enhanced primary treatment (CEPT) and secondary solids separation of biofilm solids from moving bed biofilm reactors (MBBRs). Primary treatment using a 350 microns belt showed more than 40% removal of total suspended solids (TSS) and 30% removal of chemical oxygen demand (COD) at sieve rates as high as 160 m³/m²-h. Maximum sieve rate tested was 288 m³/m²-h and maximum particle load was 80 kg TSS/m²-h. When the filter mat on the belt increased from 10 to 55 g TSS/m², the removal efficiency for TSS increased from about 35 to 60%. CEPT is a simple and effective way of increasing the removal efficiency of RBS. Adding about 1 mg/L of cationic polymer and about 2 min of flocculation time, the removal of TSS typically increased from 40-50% without polymer to 60-70% with polymer. Using coagulation and flocculation ahead of the RBS, separation of biofilm solids was successful. Removal efficiencies of 90% TSS, 83% total P and 84% total COD were achieved with a 90 microns belt at a sieve rate of 41 m³/m²-h.
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