首页> 外文期刊>Water Research >Micro-profiles of activated sludge floc determined using microelectrodes
【24h】

Micro-profiles of activated sludge floc determined using microelectrodes

机译:使用微电极测定活性污泥絮凝物的微观特征

获取原文
获取原文并翻译 | 示例
           

摘要

The microbial activity within activated sludge floc is a key factor in the performance of the activated sludge process. In this study, the microenvironment of activated sludge floes from two wastewater treatment plants (Mill Creek Wastewater Treatment Plant and Muddy Creek Wastewater Treatment Plant, with aeration tank influent CODs of 60-120 and 15-35 mg/L, respectively) were studied by using microelectrodes. Due to microbial oxygen utilization, the aerobic region in the activated sludge floc was limited to the surface layer (0.1-0.2 mm) of the sludge aggregate at the Mill Creek plant. The presence of an anoxic zone inside the sludge floc under aerobic conditions was confirmed in this study. When the dissolved oxygen (DO) in the bulk liquid was higher than 4.0 mg/L, the anoxic zone inside the activated sludge floc disappeared, which is helpful for biodegradation. At the Muddy Creek plant, with its lower wastewater pollutant concentrations, the redox potential and DO inside the sludge aggregates were higher than those at the Mill Creek plant. The contaminant concentration in the bulk wastewater correlates with the oxygen utilization rate, which directly influences the oxygen penetration inside the activated sludge floc, and results in redox potential changes within the floc. The measured microprofiles revealed the continuous decrease of nitrate concentration inside the activated sludge floc, even though significant nitrification was observed in the bulk wastewater. The oxygen consumption and nitrification rate analyses reveal that the increase of ammonia flux under aerobic conditions correlates with nitrification. Due to the metabolic mechanisms of the microorganisms in activated sludge floc, which varies from one treatment plant to another, the oxygen flux inside the sludge floc changes accordingly.
机译:活性污泥絮中的微生物活性是活性污泥工艺性能的关键因素。在这项研究中,研究了两个废水处理厂(米尔河废水处理厂和泥泞河废水处理厂,曝气池进水COD分别为60-120和15-35 mg / L)的活性污泥微环境。使用微电极。由于微生物对氧气的利用,活性污泥絮凝物中的好氧区域被限制为Mill Creek工厂污泥聚集体的表面层(0.1-0.2毫米)。这项研究证实了在好氧条件下污泥絮体内部存在一个缺氧区域。当散装液体中的溶解氧(DO)高于4.0 mg / L时,活性污泥絮体内部的缺氧区域消失,这有助于生物降解。在Muddy Creek工厂,废水污染物的浓度较低,污泥聚集体内的氧化还原电势和DO高于Mill Creek工厂。散装废水中的污染物浓度与氧气利用率相关,这直接影响了活性污泥絮凝物内部的氧气渗透,并导致絮凝物内部的氧化还原电位变化。尽管在大量废水中观察到明显的硝化作用,但测得的微观轮廓显示出活性污泥絮凝物中硝酸盐浓度的持续降低。耗氧量和硝化速率分析表明,好氧条件下氨通量的增加与硝化作用有关。由于活性污泥絮状物中微生物的代谢机制(从一个处理厂到另一个处理厂会有所不同),因此污泥絮状物内的氧气通量会相应变化。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号