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Intermittent trickling bed filter for the removal of methyl ethyl ketone and methyl isobutyl ketone

机译:间歇滴滤床过滤器,用于去除甲基乙基酮和甲基异丁基酮

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摘要

Biodegradations of methyl ethyl ketone and methyl isobutyl ketone were performed in intermittent biotrickling filter beds (ITBF) operated at two different trickling periods: 12 h/day (ITBF-12) and 30 min/day (ITBF-0.5). Ralstonia sp. MG1 was able to degrade both ketones as evidenced by growth kinetic experiments. Results show that trickling period is an important parameter to achieve high removal performance and to maintain the robustness of Ralstonia sp. MG1. Overall, ITBF-12 outperformed ITBF-0.5 regardless of the target compound. ITBF-12 had high performance recovery at various inlet gas concentrations. The higher carbon dioxide production rates in ITBF-12 suggest higher microbial activity than in ITBF-0.5. Additionally, lower concentrations of absorbed volatile organic compound (VOC) in trickling solutions of ITBF-12 systems also indicate VOC removal through biodegradation. Pressure drop levels in ITBF-12 were relatively higher than in ITBF-0.5 systems, which can be attributed to the decrease in packed bed porosity as Ralstonia sp. MG1 grew well in ITBF-12. Nonetheless, the obtained pressure drop levels did not have any adverse effect on the performance of ITBF-12. Biokinetic constants were also obtained which indicated that ITBF-12 performed better than ITBF-0.5 and other conventional biotrickling filter systems.
机译:甲基乙基酮和甲基异丁基酮的生物降解是在以下两个不同的滴滤时间(12小时/天(ITBF-12)和30分钟/天(ITBF-0.5))下运行的间歇生物滴滤床(ITBF)中进行的。 Ralstonia sp。生长动力学实验证明,MG1能够降解两种酮。结果表明,滴流期是实现高去除性能并保持Ralstonia sp。健壮性的重要参数。 MG1。总体而言,无论目标化合物是什么,ITBF-12均优于ITBF-0.5。 ITBF-12在各种进气浓度下均具有高性能的回收率。 ITBF-12中较高的二氧化碳产生速率表明其微生物活性高于ITBF-0.5中的微生物活性。此外,ITBF-12系统的滴滤溶液中吸收的挥发性有机化合物(VOC)浓度较低,也表明通过生物降解去除了VOC。 ITBF-12中的压降水平相对高于ITBF-0.5系统中的压降水平,这可以归因于填充床孔隙度的降低(如Ralstonia sp。)。 MG1在ITBF-12中成长良好。但是,获得的压降水平对ITBF-12的性能没有任何不利影响。还获得了生物动力学常数,其表明ITBF-12的性能优于ITBF-0.5和其他常规生物滴滤系统。

著录项

  • 来源
    《Bioprocess and Biosystems Engineering》 |2012年第4期|p.579-590|共12页
  • 作者单位

    Energy and Environment Fusion Technology Center (E2FTC),Department of Environmental and Biotechnology,Myongji University, 116 Myongjiro, Namdong, Cheoin-gu,Gyeonggi-do 449-728, Republic of Korea;

    Energy and Environment Fusion Technology Center (E2FTC),Department of Environmental and Biotechnology,Myongji University, 116 Myongjiro, Namdong, Cheoin-gu,Gyeonggi-do 449-728, Republic of Korea;

    Energy and Environment Fusion Technology Center (E2FTC),Department of Environmental and Biotechnology,Myongji University, 116 Myongjiro, Namdong, Cheoin-gu,Gyeonggi-do 449-728, Republic of Korea;

    Ilshin Environmental Engineering Co., Ltd,Seoul, Republic of Korea;

    Energy and Environment Fusion Technology Center (E2FTC),Department of Environmental and Biotechnology,Myongji University, 116 Myongjiro, Namdong, Cheoin-gu,Gyeonggi-do 449-728, Republic of Korea;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    biotrickling filters; ralstonia sp; intermittent trickling; methyl ethyl ketone; methyl isobutyl ketone;

    机译:生物滴滤池;拟南芥属;间歇滴滤;甲基乙基酮;甲基异丁基酮;

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