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Removal of hexane in biofillters packed with perlite and a peat-perlite mixture

机译:去除装有珍珠岩和泥炭-珍珠岩混合物的生物填料中的己烷

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摘要

Removal of hexane from air-hexane mixtures in biofilters packed with different solid media under nitrogen supplementation was performed for 70 days. Two columns containing perlite and a mixture of peat and perlite were used. The solid media were supplemented with nitrogen source up to 1 kg/m(3) per week for high nutrient supplementation and 0.2 kg/m(3) per month for low nutrient supplementation. A high rate of hexane removal: 95 g/m(3) h was achieved under high nutrient supplementation, high air flow rate and high hexane concentration. However, the percentage of hexane removal decreased with increasing air flow rate and hexane inlet concentration. For high nutrient supplementation the type of solid medium did not significantly affect the biodegradation capacity. With low nutrient supplementation, the highest removal rate was achieved in the column containing the peat-perlite mixture. The column containing perlite had a significantly lower pressure drop (20 Pa/m) than the 2400-2930 Pa/m observed for the column containing the mixture. Perlite offers an opportunity of running a biofiltration process at a lower and stable pressure drop if the nutrient supplementation is managed properly.
机译:在充氮的情况下,在装有不同固体介质的生物滤池中,从空气-己烷混合物中去除己烷进行了70天。使用了两个含有珍珠岩以及泥炭和珍珠岩混合物的柱。固体培养基中的氮素补充量高达每周1 kg / m(3)(用于高养分补充),每月0.2 kg / m(3)素用于低营养物。在高营养补充,高空气流速和高己烷浓度下,实现了较高的己烷去除率:95 g / m(3)h。但是,己烷去除率随空气流速和己烷入口浓度的增加而降低。对于高营养补充剂,固体培养基的类型不会显着影响生物降解能力。在低养分补充的情况下,在含有泥炭-珍珠岩混合物的色谱柱中实现了最高去除率。含有珍珠岩的色谱柱的压降(20 Pa / m)明显低于含有混合物的色谱柱的2400-2930 Pa / m。如果正确管理营养补充剂,珍珠岩提供了在较低且稳定的压降下运行生物过滤过程的机会。

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