首页> 外文会议>International Congress on Membranes and Membrane Processes (ICOM 2002) Vol.6 (Desalination Vol.149) Jul 7-12, 2002 Toulouse, France >Ultrafiltration of petrochemical industrial wastewater using immobilised manganese peroxidase and laccase: application in the defouling of polysulphone membranes
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Ultrafiltration of petrochemical industrial wastewater using immobilised manganese peroxidase and laccase: application in the defouling of polysulphone membranes

机译:固定化过氧化物锰和漆酶超滤石化工业废水:在聚砜膜除臭中的应用

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摘要

The application of laccase and manganese-dependant peroxidase (MnP) from Trametes verslcolor to facilitate removal of aromatic hydrocarbons from a petrochemical industrial effluent was investigated. The enzymes were immobilised onto polysulphone ultrafiltration membranes thus facilitating enzyme-substrate contact and the activity and duration of activity was determined with respect to the enzymatic degradation of the aromatics within the effluent. The phenomenon of fouling typically associated with the operation of ultrafiltration systems was reduced by the action of the immobilised enzyme layer. To determine the different 'defouling' potential of MnP NaF and NaN, were applied to the system as inhibitors of laccase. Differing 'defouling' efficiencies were then compared with standard inhibition kinetics associated with the non-immobilised enzyme suites. The system was also applied to an industrial petrochemical-based effluent and compared with the synthetic make-up effluent in terms of 'defouling' efficiency. The presence of high concentrations of fluoride at the membrane interface during the ultrafiltration of the petrochemical-based effluent contributed significantly to the inhibition of the immobilised enzyme suite and thus manifested as a significant decrease in 'defouling' potential in comparison with the system being operated using the synthetic make-up effluent.
机译:研究了Trametes verslcolor漆酶和锰依赖性过氧化物酶(MnP)在促进石化工业废水中芳烃去除中的应用。将酶固定在聚砜超滤膜上,从而促进酶与底物的接触,并根据废水中芳烃的酶促降解来确定活性和活性持续时间。通常与超滤系统操作相关的结垢现象通过固定化酶层的作用得以减少。为了确定MnP NaF和NaN的不同“除垢”潜力,将其用作漆酶抑制剂。然后将不同的“除污”效率与与非固定化酶组相关的标准抑制动力学进行了比较。该系统还应用于工业石油化工废水,并在“除污”效率方面与合成补给废水进行了比较。在石化基废水的超滤过程中,膜界面处高浓度的氟化物的存在显着促进了固定化酶的抑制,因此与使用该系统运行的系统相比,“除污”潜力显着降低。合成化妆品废水。

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