Laurenzis A, Heits H, Wübker S, Heinze U, Friedrich C, Werner U
Lehrstuhl für Mechanische Verfahrenstechnik, Fachbereich Chemietechnik, Universität Dortmund, D-44221 Dortmund, Germany.
Biotechnol Bioeng. 1998 Feb 20;57(4):497-503.
A new reactor for biological waste gas treatment was developed to eliminate continuous solvents from waste gases. A trickle-bed reactor was chosen with discontinuous movement of the packed bed and intermittent percolation. The reactor was operated with toluene as the solvent and an optimum average biomass concentration of between 5 and 30 kg dry cell weight per cubic meter packed bed (m3pb). This biomass concentration resulted in a high volumetric degradation rate. Reduction of surplus biomass by stirring and trickling caused a prolonged service life and prevented clogging of the trickle bed and a pressure drop increase. The pressure drop after biomass reduction was almost identical to the theoretical pressure drop as calculated for the irregular packed bed without biomass. The reduction in biomass and intermittent percolation of mineral medium resulted in high volumetric degradation rates of about 100 g of toluene m-3pb h-1 at a load of 150 g of toluene m-3pb h-1. Such a removal rate with a trickle-bed reactor was not reported before.
开发了一种用于生物废气处理的新型反应器,以消除废气中的连续溶剂。选择了一种滴流床反应器,其填充床具有不连续运动和间歇渗滤。该反应器以甲苯作为溶剂运行,最佳平均生物量浓度为每立方米填充床(m3pb)5至30千克干细胞重量。这种生物量浓度导致了较高的体积降解率。通过搅拌和滴流减少多余生物量可延长使用寿命,并防止滴流床堵塞和压力降增加。生物量减少后的压力降几乎与无生物量的不规则填充床计算出的理论压力降相同。生物量的减少和矿物介质的间歇渗滤在150克甲苯m-3pb h-1的负荷下导致约100克甲苯m-3pb h-1的高体积降解率。以前没有报道过滴流床反应器有这样的去除率。