首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Efficient bio-deodorization of thioanisole by a novel bacterium Brevibacillus borstelensis GIGAN1 immobilized onto different parking materials in twin biotrickling filter
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Efficient bio-deodorization of thioanisole by a novel bacterium Brevibacillus borstelensis GIGAN1 immobilized onto different parking materials in twin biotrickling filter

机译:双生滴滤池中固定在不同停车位上的新型细菌短波氏短杆菌GIGAN1对硫代苯甲醚进行高效生物脱臭

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摘要

Biological treatment of odorous gas is an alternative to conventional physicochemical processes. A newly-isolated and identified Brevibacillus borstelensis GIGAN1 was seeded on active carbon (AC) and ceramic particle (CP) in a twin biotrickling filter (BTF) to comparatively probe the removal performance of gaseous thioanisole, respectively. At empty bed residence time (EBRT) of 66 s, 100% of thioanisole (<= 3 g L-1) could be removed on AC; while 100% of thioanisole could only be achieved for <= 1.2 mg L-1 on CP. Further increase thioanisole concentration to 3 mg L-1, higher elimination capacity was obtained on AC (162.51 g m(-3) h(-1)) than CP (139.93 g m(-3) h(-1)). Further, longer EBRT was also beneficial to thioanisole removal. Additionally, the biomass accumulation did not lead to the column clogging. The biodeodorization mechanism of thioanisloe were also tentatively proposed. Overall, an unprecedented performance could be achieved by the novel GIGAN1 in BTF for thioanisole biodegradation. (c) 2015 Elsevier Ltd. All rights reserved.
机译:臭气的生物处理是常规物理化学过程的替代方法。在双生物滴滤器(BTF)中,将一种新近分离并鉴定出的博氏短杆菌(Brevibacillus borstelensis)GIGAN1接种在活性炭(AC)和陶瓷颗粒(CP)上,以比较地探测气态硫代苯甲醚的去除性能。在空床停留时间(EBRT)为66 s时,可以通过AC去除100%的硫代苯甲醚(<= 3 g L-1);而CP上<= 1.2 mg L-1只能达到100%的硫代苯甲醚。进一步将硫代苯甲醚的浓度增加至3 mg L-1,在AC(162.51 g m(-3)h(-1))上获得的消除能力比CP(139.93 g m(-3)h(-1))高。此外,更长的EBRT也有利于硫代苯甲醚的去除。另外,生物质的积累不会导致色谱柱堵塞。还初步提出了硫代茴香醚的生物除臭机理。总体而言,新型BTF中的GIGAN1可用于硫代苯甲醚生物降解,从而实现前所未有的性能。 (c)2015 Elsevier Ltd.保留所有权利。

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