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超声与酶辅助对酿酒厂废水进行生物降解

Ultrasound and enzyme assisted biodegradation of distillery wastewater.

作者信息

Sangave Preeti C, Pandit Aniruddha B

机构信息

Chemical Engineering Division, University Institute of Chemical Technology, Matunga, Mumbai 400019, India.

出版信息

J Environ Manage. 2006 Jul;80(1):36-46. doi: 10.1016/j.jenvman.2005.08.010. Epub 2005 Dec 9.

Abstract

Irradiation with ultrasound (US) and use of an enzyme (E) as pretreatment techniques were carried out to treat a complex effluent (distillery wastewater). These two techniques have been used alone as well as in combination and the efficacy of these techniques was tested by subjecting the effluent to subsequent aerobic biological oxidation (AO). When used alone, US exposure for 30 min and 2 h yielded the best COD reduction during the aerobic oxidation step (US+AO). For the enzyme when used alone, a pH value of 4.8 (corresponding to the optimum pH of the enzyme), a dose of 50 U and a pretreatment time of 24 h yielded better COD removal efficiency as compared to untreated effluent (aerobic oxidation alone). When used in combination, ultrasound followed by enzymatic pretreatment (US+E+AO) yielded the best COD removal efficiencies during aerobic oxidation as compared to the other combinations tested for the treatment of the distillery wastewater. A 4-fold increase in the initial oxidation rate was observed over the untreated batch for the integrated technique (US+E+AO). On the basis of the variation in the values of the biokinetic parameters it can be concluded that the type of pretreatment scheme affects the subsequent rate of the aerobic oxidation significantly.

摘要

采用超声波(US)辐照和使用一种酶(E)作为预处理技术来处理一种复杂废水(酿酒厂废水)。这两种技术已单独使用以及联合使用,并且通过使废水进行后续好氧生物氧化(AO)来测试这些技术的效果。单独使用时,在好氧氧化步骤(US+AO)中,超声辐照30分钟和2小时产生了最佳的化学需氧量(COD)降低效果。对于单独使用的酶,pH值为4.8(对应于酶的最佳pH值)、剂量为50 U且预处理时间为24小时时,与未处理的废水(仅好氧氧化)相比,产生了更好的COD去除效率。联合使用时,与测试的用于处理酿酒厂废水的其他组合相比,先进行超声处理然后进行酶预处理(US+E+AO)在好氧氧化过程中产生了最佳的COD去除效率。对于综合技术(US+E+AO),观察到初始氧化速率比未处理批次提高了4倍。基于生物动力学参数值的变化可以得出结论,预处理方案的类型会显著影响后续好氧氧化的速率。

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