Chen Chih-Yu, Wang Guey-Horng, Tsai Cheng-Ta, Tsai Teh-Hua, Chung Ying-Chien
Department of Tourism and Leisure, Hsing Wu University, Taipei, Taiwan.
Research Center of Natural Cosmeceuticals Engineering, Xiamen Medical College, Xiamen, China.
J Environ Sci Health A Tox Hazard Subst Environ Eng. 2020;55(3):256-265. doi: 10.1080/10934529.2019.1684120. Epub 2019 Oct 29.
Toluene is highly toxic and mutagenic, and it is generally used as an industrial solvent. Thus, toluene removal from air is necessary. To solve the problem of reducing high toluene concentrations with a short gas retention time (GRT), a quorum-sensing molecule [N-(3-oxododecanoyl)-L-homoserine lactone] (OHL) was added to a biotrickling filter (BTF). In this study, a BTF was used to treat synthetic and natural waste gases containing toluene. An extensive analysis was performed to understand the removal efficiency, removal characteristics, and bacterial community of the BTF. The addition of 20 μM OHL to the BTF significantly improved toluene removal, and more than 99.2% toluene removal was achieved at a GRT of 0.5 min when natural waste gas containing toluene (590-1020 ppm or 2.21-3.83 g m) was introduced. The maximum inlet load for toluene was 337.9 g m h. Moreover, the BTF exhibited satisfactory adaptability to shock loading and shutdown operations. Pseudomonadaceae (33.0%) and Comamonadaceae (26.3%) were predominant bacteria in the system after a 98-day operation. These bacteria were responsible for toluene degradation. The optimal moisture content and low pressure drop for system operations demonstrated that the BTF was energy and cost efficient. Therefore, processing through a BTF with OHL is a favorable technique for toluene treatment.
甲苯具有高毒性和致突变性,通常用作工业溶剂。因此,从空气中去除甲苯是必要的。为了解决在短气体停留时间(GRT)下降低高甲苯浓度的问题,将一种群体感应分子[N-(3-氧代十二烷酰基)-L-高丝氨酸内酯](OHL)添加到生物滴滤塔(BTF)中。在本研究中,使用生物滴滤塔处理含甲苯的合成废气和天然废气。进行了广泛分析以了解生物滴滤塔的去除效率、去除特性和细菌群落。向生物滴滤塔中添加20μM的OHL可显著提高甲苯去除率,当引入含甲苯(590-1020ppm或2.21-3.83g/m)的天然废气时,在0.5分钟的气体停留时间下甲苯去除率超过99.2%。甲苯的最大进口负荷为337.9g/m²·h。此外,生物滴滤塔对冲击负荷和停车操作表现出令人满意的适应性。运行98天后,假单胞菌科(33.0%)和丛毛单胞菌科(26.3%)是系统中的优势菌。这些细菌负责甲苯的降解。系统运行的最佳水分含量和低压降表明生物滴滤塔具有能源和成本效益。因此,通过添加OHL的生物滴滤塔进行处理是一种有利的甲苯处理技术。