Ahmed Zubair, Song Jihyeon
3 Biotech. 2011 Sep;1(2):111-116. doi: 10.1007/s13205-011-0015-7. Epub 2011 Jul 14.
A pure yeast strain Candida tropicalis was immobilized on the matrix of powdered activated carbon, sodium alginate, and polyethylene glycol (PSP beads). The immobilized beads were used as fluidized material in a bioreactor to remove toluene from gaseous stream. Applied toluene loadings were 15.4 and 29.8 g/m(3) h in Step 1 and Step 2, respectively, and toluene removal was found above 95% during the entire operation. A continuous pH decline was observed and pH of the suspension was just above 6 in Step 2 but no adverse effects on treatment efficiency were observed. The CO(2) yield values were found to be 0.57 and 0.62 g-[Formula: see text] in Step 1 and Step 2, respectively. These values indicate that a major portion of toluene-carbon was channeled to yeast respiration even at higher toluene loading. In conclusion, immobilized C. tropicalis can be used as a fluidized material for enhanced degradation of gaseous toluene.
将一株热带假丝酵母纯菌株固定在粉末状活性炭、海藻酸钠和聚乙二醇(PSP 珠)的基质上。固定化珠用作生物反应器中的流化材料,以从气流中去除甲苯。在第一步和第二步中,施加的甲苯负荷分别为 15.4 和 29.8 g/m³·h,并且在整个操作过程中发现甲苯去除率高于 95%。观察到 pH 持续下降,第二步中悬浮液的 pH 略高于 6,但未观察到对处理效率有不利影响。第一步和第二步中 CO₂ 产率值分别为 0.57 和 0.62 g-[公式:见原文]。这些值表明,即使在较高甲苯负荷下,甲苯碳的大部分也被引导至酵母呼吸作用。总之,固定化热带假丝酵母可用作流化材料以增强气态甲苯的降解。