Ammonia-Oxidizing Archaea (AOA) Play with Ammonia-Oxidizing Bacteria (AOB) in Nitrogen Removal from Wastewater [0.03%]
氨氧化古菌(AOA)与氨氧化细菌(AOB)在污水脱氮中的博弈关系研究
Zhixuan Yin,Xuejun Bi,Chenlu Xu
Zhixuan Yin
An increase in the number of publications in recent years indicates that besides ammonia-oxidizing bacteria (AOB), ammonia-oxidizing archaea (AOA) may play an important role in nitrogen removal from wastewater, gaining wide attention in the...
Effects of Aged Oil Sludge on Soil Physicochemical Properties and Fungal Diversity Revealed by High-Throughput Sequencing Analysis [0.03%]
高通量测序分析老化油泥对土壤理化性质及真菌多样性的效应
Huihui Wang,Shaoping Kuang,Qiaolin Lang et al.
Huihui Wang et al.
The oilfield soil was contaminated for years by large quantities of aged oil sludge generated in the petroleum industry. In this study, physicochemical properties, contents of main pollutants, and fungal diversity of the aged oil sludge-con...
Mark James Krzmarzick,David Kyle Taylor,Xiang Fu et al.
Mark James Krzmarzick et al.
Bioremediation is the use of microorganisms for the degradation or removal of contaminants. Most bioremediation research has focused on processes performed by the domain Bacteria; however, Archaea are known to play important roles in many s...
Treatment of Landfill Leachate Using Activated Sludge Technology: A Review [0.03%]
应用活性污泥工艺处理垃圾渗滤液的研究进展综述
Kai Wang,Lusheng Li,Fengxun Tan et al.
Kai Wang et al.
Landfill leachate contains a large amount of organic matter and ammoniacal nitrogen. As such, it has become a complex and difficult issue within the water treatment industry. The activated sludge process has been found to be a good solution...
Enhancement of Organic Matter Removal in an Integrated Biofilm-Membrane Bioreactor Treating High-Salinity Wastewater [0.03%]
强化生物膜-膜生物反应器处理高盐废水有机物去除效能研究
Yan Yang,Zhiyu Shao,Jun Du et al.
Yan Yang et al.
High salinity can strongly inhibit microbial activity and decrease the sedimentation ability of activated sludge. The combination of biofilm and membrane bioreactor is a practical approach towards effective removal of pollutants and low fou...
Soil Microbial Community Structure and Diversity around the Aging Oil Sludge in Yellow River Delta as Determined by High-Throughput Sequencing [0.03%]
黄河三角洲老龄油泥污周边土壤微生物群落结构及多样性的高通量测序分析
Shaoping Kuang,Yaqing Su,Huihui Wang et al.
Shaoping Kuang et al.
Microorganisms are sensitive indicators of edaphic environmental variation. The Illumina MiSeq sequencing technology was used to analyze soil bacterial community diversity around an aging oil sludge in the Yellow River Delta. The alpha dive...
Comparative Genomic Analysis of Members of the Genera Methanosphaera and Methanobrevibacter Reveals Distinct Clades with Specific Potential Metabolic Functions [0.03%]
甲烷八叠球菌和甲基 breve 细菌属成员的比较基因组分析揭示了具有特定潜在代谢功能的不同的分支分类单元
Anja Poehlein,Dominik Schneider,Melissa Soh et al.
Anja Poehlein et al.
Methanobrevibacter and Methanosphaera species represent some of the most prevalent methanogenic archaea in the gastrointestinal tract of animals and humans and play an important role in this environment. The aim of this study was to identif...
Comparative Study
Archaea (Vancouver, B.C.). 2018 Aug 19:2018:7609847. DOI:10.1155/2018/7609847 2018
Autohydrogenotrophic Denitrification Using the Membrane Biofilm Reactor for Removing Nitrate from High Sulfate Concentration of Water [0.03%]
基于膜生物膜反应器的自氢型硝酸盐厌氧还原脱氮技术处理高硫酸盐浓度水体中的硝酸盐
Yanhao Zhang,Haohan Zhang,Zhibin Zhang et al.
Yanhao Zhang et al.
This study investigated the performance of an autohydrogenotrophic membrane biofilm reactor (MBfR) to remove nitrate from water with high sulfate concentrations. The results of simulated running showed that TN removal could be over than 98....
Bioaugmentation with Mixed Hydrogen-Producing Acetogen Cultures Enhances Methane Production in Molasses Wastewater Treatment [0.03%]
混合产氢乙酸盐菌的生物增效可增强糖蜜废水处理中的甲烷生产
Shuo Wang,Jianzheng Li,Guochen Zheng et al.
Shuo Wang et al.
Hydrogen-producing acetogens (HPA) have a transitional role in anaerobic wastewater treatment. Thus, bioaugmentation with HPA cultures can enhance the chemical oxygen demand (COD) removal efficiency and CH4 yield of anaerobic wastewater tre...
Hydrogenotrophic Methanogenesis and Autotrophic Growth of Methanosarcina thermophila [0.03%]
Methanosarcina thermophila的产甲烷和自养生长性能研究
Nina Lackner,Anna Hintersonnleitner,Andreas Otto Wagner et al.
Nina Lackner et al.
Although Methanosarcinales are versatile concerning their methanogenic substrates, the ability of Methanosarcina thermophila to use carbon dioxide (CO2) for catabolic and anabolic metabolism was not proven until now. Here, we show that M. t...