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Enhancing the removal of hazardous pollutants from coke-making wastewater by dosing activated carbon to a pilot-scale activated sludge process

机译:通过将活性炭加入到先导级活性污泥过程中,增强从焦炭废水中除去危险污染物

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摘要

Powdered activated carbon (PAC) was investigated for its ability to remove 6 polycyclic aromatic hydrocarbons (Σ6PAHs) (fluoranthene, benzo[b + J]fluoranthene, benzo[k]fluoranthene, benzo[a]pyrene, indeno[1,2,3-cd]pyrene, benzo[g,h,i]perylene), trace metals and colour from coke making wastewater when dosed to a pilot-plant activated sludge process (ASP). The ASP had a volume of 0.68 m3 and was operated to simulate the full-scale ASP treating coke wastewater from a steel works. Operational conditions included a flow rate of 0.78 m3/day, a hydraulic retention time of 21 hours, a sludge retention time of 38 days and a temperature of 27°C. The ASP was operated for a control period before PAC was dosed directly into the aeration cell at a dose of 400 mg/L. Powdered activated carbon addition resulted in a 20% increase in removal efficiency of the Σ6PAHs. Removal efficiency of trace metals was variable, but increased for nickel, chromium and cadmium by 22.6%, 20.5% and 12.4%, respectively. Improvement in colour removal efficiency was marginal at 5%. PAC addition allowed the improvement of treatment efficiencies in the ASP process at relatively low capital and operational costs, which may assist in reaching tighter effluent emission limits set for the industry.
机译:研究了粉末状活性炭(PAC),用于去除6个多环芳烃(σ6PAH)(荧蒽,苯并[B + J]氟,苯并[K]氟化苯,苯并[A]芘,Indeno [1,2,3 -Cd]芘,苯并[g,h,i]丙烯),痕量金属和颜色从焦炭制作废水时给药时给药时(ASP)。 ASP的体积为0.68立方米,并经过弹性,以模拟从钢厂处理焦炭废水。操作条件包括0.78m3 /天的流速,液压保留时间为21小时,污泥保留时间为38天和27℃的温度。在将PAC直接加入曝气电池的剂量为400mg / L的剂量之前操作ASP。粉末状活性炭加成导致Σ6Pah的去除效率增加了20%。痕量金属的去除效率是可变的,但对于镍,铬和镉的增加分别增加22.6%,20.5%和12.4%。颜色去除效率的提高率下降5%。 PAC添加允许在相对较低的资金和运营成本中提高ASP过程中的治疗效率,这可能有助于达到为该行业设定的更严格的流出排放限制。

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