| Literature DB >> 28324513 |
Virender Kumar1, Vijay Kumar1, Tek Chand Bhalla2.
Abstract
The discharge of cyanide-containing effluents into the environment contaminates water bodies and soil. Effective methods of treatment which can detoxify cyanide are the need of the hour. The aim of the present study is to develop a bioreactor for complete degradation of cyanide using immobilized cells of Serratia marcescens RL2b. Alginate-entrapped cells of S. marcescens RL2b were used for complete degradation of cyanide in a packed bed reactor (PBR). Cells grown in minimal salt medium (pH 6.0) were harvested after 20 h and exhibited 0.4 U mg-1 dcw activity and 99 % cyanide degradation in 10 h. These resting cells were entrapped using 3 % alginate beads and packed in a column reactor (20 × 1.7 cm). Simulated cyanide (12 mmol l-1)-containing wastewater was loaded and fractions were collected after different time intervals at various flow rates. Complete degradation of 12 m mmol l-1 (780 mg l-1) cyanide in 10 h was observed at a flow rate of 1.5 ml h-1. The degradation of cyanide in PBR showed direct dependence on retention time. The retention time of cyanide in the reactor was 9.27 h. The PBR can degrade 1.2 g of cyanide completely in 1 day.Entities:
Keywords: Cyanide; Packed bed reactor; Retention time; Serratia marcescens RL2b
Year: 2014 PMID: 28324513 PMCID: PMC4569630 DOI: 10.1007/s13205-014-0261-6
Source DB: PubMed Journal: 3 Biotech ISSN: 2190-5738 Impact factor: 2.406
Fig. 1Percent cyanide degradation vs harvesting time for preparation of resting cells of S. marcescens RL2b. All points are the means of triplicate reactions, and error bar indicates the standard deviation
Fig. 2a Schematic diagram of packed bed bioreactor for cyanide degradation by alginate-immobilized S. marcescens RL2b cells. b Packed bed reactor in operation
Fig. 3Effect of flow rate on cyanide degradation in packed bed bioreactor by alginate-immobilized S. marcescens RL2b cells. All points are the means of triplicate reactions, and error bar indicates the standard deviation