期刊文献+
共找到2篇文章
< 1 >
每页显示 20 50 100
The biofilm characteristics and enhanced performance of a marine microbial-electrolysis-cell-based biosensor under positive anodic potential
1
作者 CAO Yuanyuan ZHANG Chaoqun +2 位作者 LIU Xiang CHENG Liang YANG Yang 《土木与环境工程学报(中英文)》 CSCD 北大核心 2024年第6期221-230,共10页
Microbial fuel cells have already been used as biosensors to monitor assimilable organic carbon(AOC).However,their signal production from AOC is known to be completely suppressed by dissoved oxygen(DO).In this study,t... Microbial fuel cells have already been used as biosensors to monitor assimilable organic carbon(AOC).However,their signal production from AOC is known to be completely suppressed by dissoved oxygen(DO).In this study,two identical microbial electrolysis cell(MEC)based biosensors were inoculated with marine sediment and operated at two different anodic potentials,namely-300 mV and+250 mV relative to Ag/AgCl.The MEC biosensor operated under positive anodic potential conditions had electrochemically active microbial communities on the anode,including members of the Shewanellaceae,Pseudoalteromonadaceae,and Clostridiaceae families.However,the strictly anaerobic members of the Desulfuromonadaceae,Desulfobulbaceae and Desulfobacteraceae families were found only in the negative anodic potential MEC biosensor.The positive anodic potential MEC biosensor showed several other advantages as well,such as faster start-up,significantly higher maximum current production,fivefold improvement in the AOC detection limit,and tolerance of low dissolved oxygen,compared to those obtained from the negative anodic potential MEC biosensor.The developed positive anodic potential MEC biosensor can thus be used as a real-time and inexpensive detector of AOC concentrations in high saline and low DO seawater. 展开更多
关键词 BIOSENSOR microbial fuel cell anodic potential marine biofilm assimilable organic carbon
下载PDF
YB菌株生化需氧量的测定及对河豚毒素毒性的响应 被引量:1
2
作者 陈婧 杨卓 《安徽农业科学》 CAS 2012年第9期5484-5486,共3页
[目的]了解自有YB菌株在BOD生物传感器及河豚毒素毒性传感器中的作用。[方法]以YB菌株作为响应菌株,采用夹层膜法制作固定化微生物膜,组装成微生物传感器并测试其性能。[结果]YB菌株在33℃,pH为7.2的条件下对BOD响应良好,在此条件下静... [目的]了解自有YB菌株在BOD生物传感器及河豚毒素毒性传感器中的作用。[方法]以YB菌株作为响应菌株,采用夹层膜法制作固定化微生物膜,组装成微生物传感器并测试其性能。[结果]YB菌株在33℃,pH为7.2的条件下对BOD响应良好,在此条件下静态法测得传感器标准曲线为y=0.061 2x-0.001 3,线性相关系数为0.995;动态法测得传感器标准曲线为y=0.072 2x-0.031 9,线性相关系数为0.996。同时,YB菌株对河豚毒素基本没有响应。[结论]自有YB菌株可以作为BOD微生物传感器的敏感菌,但不能作为河豚毒素毒性传感器测试菌株。 展开更多
关键词 生化需氧量 微生物生物传感器 YB菌株 河豚毒素
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部