Abraham T Emilia, Senan Resmi C, Shaffiqu T S, Roy Jegan J, Poulose T P, Thomas P P
Biochemical Processing Section, Process Engineering Division, Regional Research Laboratory (CSIR), Thiruvananthapuram 695 019, India.
Biotechnol Prog. 2003 Jul-Aug;19(4):1372-6. doi: 10.1021/bp034062f.
The degradation of an azo dye mixture by an aerobic bacterial consortium was studied in a rotating biological reactor. Laterite pebbles of particle size 850 microm to 1.44 mm were fixed on gramophone records using an epoxy resin on which the developed consortium was immobilized. Rate of degradation, BOD, biomass determination, enzymes involved, and fish bioassay were studied. The RBC has a high efficiency for dye degradation even at high dye concentrations (100 microg/mL) and high flow rate (36 L/h) at alkaline pH and salinity conditions normally encountered in the textile effluents. Bioassays (LD-50) using Thilapia fish in treated effluent showed that the percentage mortality was zero over a period of 96 h, whereas the mortality was 100% in untreated dye water within 26 h. Fish bioassay confirms that the effluent from RBC can be discharged safely to the environment.
在旋转生物反应器中研究了需氧细菌聚生体对偶氮染料混合物的降解情况。将粒径为850微米至1.44毫米的红土卵石用环氧树脂固定在唱片上,在其上固定已培养的聚生体。研究了降解速率、生化需氧量、生物量测定、相关酶以及鱼类生物测定。在纺织废水通常遇到的碱性pH值和盐度条件下,即使在高染料浓度(100微克/毫升)和高流速(36升/小时)时,旋转生物接触器对染料降解也具有高效率。使用罗非鱼对处理后的废水进行生物测定(半数致死剂量)显示,在96小时内死亡率百分比为零,而未处理的染料水中在26小时内死亡率为100%。鱼类生物测定证实,旋转生物接触器的废水可以安全排放到环境中。