Department of Chemical Engineering and Environmental Technology. Escuela de Ingenierías Industriales. Sede Dr. Mergelina. University of Valladolid. C/ Dr. Mergelina, s/n, 47011, Valladolid, Spain.
Sci Total Environ. 2017 Jul 15;590-591:352-360. doi: 10.1016/j.scitotenv.2017.01.161. Epub 2017 Mar 8.
The succession of bacterial and fungal populations was assessed in an activated sludge (AS) diffusion bioreactor treating a synthetic malodorous emission containing HS, toluene, butanone and alpha-pinene. Microbial community characteristics (bacterial and fungal diversity, richness, evenness and composition) and bioreactor function relationships were evaluated at different empty bed residence times (EBRTs) and after process fluctuations and operational failures (robustness test). For HS, butanone and toluene, the bioreactor showed a stable and efficient abatement performance regardless of the EBRT and fluctuations applied, while low alpha-pinene removals were observed. While no clear positive or negative relationship between community characteristics and bioreactor functions was observed, ecological parameters such as evenness and community dynamics seemed to be of importance for maintaining reactor stability. The optimal degree of evenness of the inoculum likely contributed to the high robustness of the system towards the fluctuations imposed. Actinobacteria, Proteobacteria and Fungi (Hypocreales, Chaeatothyriales) were the most abundant groups retrieved from the AS system with a putative key role in the degradation of butanone and toluene. Typical HS and alpha-pinene degraders were not retrieved from the system. The inoculation of P. fluorescens, a known alpha-pinene degrader, to the system did not result in the enhancement of the degradation of this compound. This strain was likely outcompeted by the microorganisms already adapted to the AS environment.
采用序批式扩散生物膜反应器处理含有 H2S、甲苯、丁酮和α-蒎烯的模拟恶臭排放物,评估了细菌和真菌种群的演替。在不同空床停留时间(EBRT)下,以及在工艺波动和操作故障(稳健性测试)后,评估了微生物群落特征(细菌和真菌多样性、丰富度、均匀度和组成)与生物反应器功能的关系。对于 H2S、丁酮和甲苯,生物反应器表现出稳定且高效的去除性能,而对于α-蒎烯,去除率较低。尽管群落特征与生物反应器功能之间没有明显的正相关或负相关关系,但均匀度等生态参数和群落动态似乎对维持反应器稳定性很重要。接种物的最佳均匀度可能有助于提高系统对施加波动的稳健性。从 AS 系统中分离到的最丰富的菌群是放线菌、变形菌和真菌(Hypocreales、Chaetothyriales),它们在丁酮和甲苯的降解中起着重要作用。系统中未分离到典型的 H2S 和α-蒎烯降解菌。向系统中接种荧光假单胞菌,一种已知的α-蒎烯降解菌,并没有提高该化合物的降解效果。这种菌株可能被已经适应 AS 环境的微生物所竞争淘汰。