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Experimental study on pressurized activated sludge process for high concentration pesticide wastewater

机译:加压活性污泥法处理高浓度农药废水的实验研究

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摘要

Pressurized biochemical process derived from traditional activated sludge processes is an innovative technology for wastewater treatment. The main advantage of the pressurized process is that the oxygen transfer barrier can be overcome by increasing the dissolved oxygen level. In this study, high concentration pesticide wastewater was treated by pressurized activated sludge process. It was found that the removal of chemical oxygen demand (COD) increased steadily with the increase of operating pressure, aeration time, and sludge concentration. When the operation pressure was 0.30 MPa and the aeration time was 6 hr, 85.0%-92.5% COD, corresponding to an effluent COD of 230-370 mg/L, was removed from an influent COD of 2500-5000 mg/L. The obtained outlet COD concentration was lower than 350-450 mg/L for the identical process operated under the atmospheric pressure. In addition, pressurized biochemical process could produce a higher COD volumetric loading rate at 5.8-7.6 kg COD/(m~3·day), compared with 2.0-2.8 kg COD/(m~3·day) using the same equipment at the atmospheric pressure. The COD concentration followed a modified Monod model with V_(max) 2.31 day~(-1) and K_s 487 mg/L.
机译:源自传统活性污泥工艺的加压生化工艺是一种用于废水处理的创新技术。加压过程的主要优点是可以通过增加溶解氧的含量来克服氧的传递障碍。在这项研究中,采用加压活性污泥法处理了高浓度农药废水。发现随着工作压力,曝气时间和污泥浓度的增加,化学需氧量(COD)的去除量稳定增加。当操作压力为0.30 MPa,通气时间为6小时时,从2500-5000 mg / L的进水COD中去除了85.0%-92.5%的COD,相当于230-370 mg / L的出水COD。对于在大气压下进行的相同过程,获得的出口COD浓度低于350-450 mg / L。此外,加压生化过程可以在5.8-7.6 kg COD /(m〜3·day)的条件下产生更高的COD体积负载率,而在相同的设备下使用2.0-2.8 kg COD /(m〜3·day)则更高。气压。 COD浓度遵循改良的Monod模型,V_(max)为2.31天〜(-1),K_s为487 mg / L。

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