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Steady- and transient-state operation of a two-stage bioreactor for the treatment of a gaseous mixture of hydrogen sulphide, methanol and α-pinene

机译:两级生物反应器的稳态和瞬态操作,用于处理硫化氢,甲醇和α-pine烯的气态混合物

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摘要

A two-stage bioreactor, comprising a biotrickling filter (BTF) as the first stage and a biofilter (BF) as the second stage, operated under steady- and transient-state conditions, was tested to remove gas-phase hydrogen sulphide, methanol and α-pinene.RESULTS: Hydrogen sulphide and methanol were removed in the first stage, while α-pinene, was removed predominantly in the second-stage fungal BF. The effect of the liquid trickling rate was evaluated in the BTF, while concentration-dependent synergistic and antagonistic interactions in both reactors were assessed by varying the concentration of one pollutant, and by maintaining 100% removal of other pollutants. Increasing the liquid trickling rate decreased methanol removal significantly, from > 93% to 40%. Increasing the concentration of hydrogen sulphide from low to high loading rates did not affect the removal of volatile organic compounds (VOCs), however, the reverse occurred. Under all the conditions tested, α-pinene removal in the second-stage biofilter still remained higher than 80%.CONCLUSIONS: The results show the maximum elimination capacities achievable for this complex ternary mixture, under a wide range of operating conditions.
机译:测试了两阶段生物反应器,该反应器在稳态和瞬态条件下运行,包括第一阶段的生物滴滤池(BTF)和第二阶段的生物滤池(BF),以去除气相硫化氢,甲醇和结果:第一阶段去除了硫化氢和甲醇,而第二阶段真菌高炉则主要去除了α-pine烯。在BTF中评估了液体滴入速率的影响,同时通过改变一种污染物的浓度并保持100%去除其他污染物来评估两个反应器中浓度依赖性的协同和拮抗作用。液体滴流速率的增加会显着降低甲醇的去除率,从> 93%降至40%。将硫化氢的浓度从低负荷率提高到高负荷率不会影响挥发性有机化合物(VOC)的去除,但是相反的情况发生了。在所有测试条件下,第二级生物滤池中的α-pine烯去除率仍保持高于80%。结论:结果表明,在多种操作条件下,该复杂的三元混合物可实现的最大消除能力。

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