...
首页> 外文期刊>The Science of the Total Environment >Integrated interrogation of causes of membrane fouling in a pilot-scale anoxic-oxic membrane bioreactor treating oil refinery wastewater
【24h】

Integrated interrogation of causes of membrane fouling in a pilot-scale anoxic-oxic membrane bioreactor treating oil refinery wastewater

机译:中试规模的缺氧-氧化膜生物反应器处理炼油废水中膜污染原因的综合询问

获取原文
获取原文并翻译 | 示例
           

摘要

Studies on membrane fouling during treatment of oil refinery wastewater (ORW) via membrane bioreactor (MBR) are currently lacking, and associated fouling challenges are largely undocumented. Using advanced chemical and Illumina sequencing approach, we investigated the complex bio-physiochemical interactions responsible for foulant-membrane interactions during treatment of ORW. After nearly 2 months of the MBR operation, COD removal reached maximal of 97.15 ± 1.85%, while oil and grease removal was maintained at 96.6 ± 2.6%, during the treatment duration. Most of the less or non-biodegradable oil moieties (>0.5 μm) progressively accumulated on the membrane as the influent oil concentration increased. Presence of relatively higher unsaturated extracellular polymers (100.6 mg/g VSS) like fulvic acid and aromatic-like compounds at high volumetric loading (~18.7 kg COD/m3/d), enhanced the adsorption of chemical elements (Fe = 88.9, Al = 63.4, and Ce = 0.56 mg/g dry-sludge, respectively). Moreover, shift in microbial community structure to hydrocarbon-utilizing and metals-tolerating genera, asComamonasandRhodanobacter, respectively, uncovers major membrane colonizers in ORW treatment via MBR.
机译:目前尚缺乏对通过膜生物反应器(MBR)处理炼油废水(ORW)期间膜污染的研究,并且相关的污染挑战在很大程度上没有记载。使用先进的化学和Illumina测序方法,我们研究了ORW治疗过程中造成污垢-膜相互作用的复杂生物物理化学相互作用。经过近2个月的MBR手术后,在治疗期间,COD去除率最高达到97.15±1.8%,而油脂去除率则保持在96.6±2.6%。随着进水油浓度的增加,大多数较少或不可生物降解的油部分(>0.5μm)逐渐积聚在膜上。在高体积负荷(〜18.7 kg COD / m3 / d)下,存在较高含量的不饱和胞外聚合物(100.6 mg / g VSS),如黄腐酸和类似芳香的化合物,增强了化学元素的吸附(Fe = 88.9,Al = 63.4和Ce = 0.56 mg / g干污泥。此外,微生物群落结构的转变分别为Comamonas和Rhodanobacter属碳氢化合物利用和金属耐受类,通过MBR在ORW处理中发现了主要的膜定居者。

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