首页> 外文期刊>The Korean journal of chemical engineering >Polyhydroxybutyrate production accompanied by the effective reduction of chemical oxygen demand (COD) and biological oxygen demand (BOD) from industrial effluent
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Polyhydroxybutyrate production accompanied by the effective reduction of chemical oxygen demand (COD) and biological oxygen demand (BOD) from industrial effluent

机译:聚羟基丁酸酯的生产伴随有效减少工业废水中化学需氧量(COD)和生物需氧量(BOD)

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Industrial effluents are major pollution-causing agents for our environment. Our study focuses on utilizing effluents from different industries for efficient production of Polyhydroxybutyrate (PHB). Presence of PHB was identified by Sudan Black staining method. The PHB production parameters for Pseudomonas aeruginosa MTCC 4673 were studied critically, and it was found that glucose with 8.5 mg/L (0.0550 g PHB/g substrate) PHB concentration yielded the highest among the carbon sources used. Peptone with 8.9 mg/L (0.0524 g PHB/g substrate) of PHB concentration, an incubation period of 48 h and at a pH of 7 yielded the optimum results. These studies were compared with those of Alcaligens latus MTCC 2311. Dairy effluents (DE) and tannery effluents (TE) were considered for the best possible substrate, for the production of PHB in an optimized media. The results indicated that the dairy effluents gave a higher yield of PHB. Amongst various dilution levels studied from 10-100% (v/v), 50% (v/v) concentration of the dairy effluent showed maximum PHB productivity of 0.0582 g PHB/g substrate. A comparison of the chemical oxygen demand (COD) and biological oxygen demand (BOD) from the results, showed a significant removal percentage of 78.97% BOD and 53.482% COD, which highlighted the importance of utilizing effluents for PHB production, in order to reduce the risk of toxic effluent discharge. FT-IR analysis was carried out to confirm the presence of PHB.
机译:工业废水是造成环境污染的主要因素。我们的研究重点在于利用不同行业的废水有效生产聚羟基丁酸酯(PHB)。 PHB的存在通过苏丹黑染色法鉴定。严格研究了铜绿假单胞菌MTCC 4673的PHB生产参数,发现在所用碳源中,浓度为8.5 mg / L(0.0550 g PHB / g底物)的PHB葡萄糖产生最高。 PHB浓度为8.9 mg / L(0.0524 g PHB / g底物)的蛋白one,孵育时间为48小时,pH为7时可获得最佳结果。将这些研究与Alcaligens latus MTCC 2311的研究进行了比较。对于优化培养基中的PHB生产,乳制品废水(DE)和制革厂废水(TE)被认为是最佳的基质。结果表明,乳制品废水产生的PHB较高。在10-100%(v / v)的各种稀释水平中,乳制品废水的50%(v / v)浓度显示最大PHB生产率为0.0582 g PHB / g底物。结果中化学需氧量(COD)和生物需氧量(BOD)的比较显示,BOD的有效去除率为78.97%,COD的去除率为53.482%,这突出了利用废水生产PHB的重要性,以减少有毒废水排放的风险。进行FT-IR分析以确认PHB的存在。

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