期刊文献+
共找到12篇文章
< 1 >
每页显示 20 50 100
微生物燃料电池回收氨氮合成微生物蛋白研究
1
作者 李孝越 王悦 +5 位作者 贾佩 李雅洁 陈佳琪 金丽军 王雯 杨紫怡 《中国环境科学》 EI CAS CSCD 北大核心 2023年第3期1152-1159,共8页
基于微生物燃料电池(MFC)对有机废水中的氨氮进行回收,回收效率可达41.3%,同时产生95.5J的电能;在MFC体系中,氨氮迁移规律符合Levenberg-Marquardt方程(R^(2)>0.95).进一步将回收的氨氮协同CO_(2)通过氢氧化细菌合成微生物蛋白,固碳... 基于微生物燃料电池(MFC)对有机废水中的氨氮进行回收,回收效率可达41.3%,同时产生95.5J的电能;在MFC体系中,氨氮迁移规律符合Levenberg-Marquardt方程(R^(2)>0.95).进一步将回收的氨氮协同CO_(2)通过氢氧化细菌合成微生物蛋白,固碳效率为1.1LCO_(2)/(L·d),细胞干重产量为2.41g/L,蛋白质含量为49.4%,氨基酸的产量为1.19g/L.本实验产出的微生物蛋白的氨基酸含量高于斑鰶鱼,氨基酸种类多于市场植物蛋白饲料,具有较强的市场竞争力和实际应用潜力.本系统可协同转化CO_(2)和氨氮合成蛋白,提供绿色可持续的蛋白供应源,助力实现碳中和的目标,对有机废水资源化利用产生积极的推动作用. 展开更多
关键词 生物电化学系统 氢氧化细菌 微生物蛋白 氨氮
下载PDF
BES驱动电渗析对飞灰中Pb和Ni的影响
2
作者 查甫更 乐思奇 +5 位作者 王少海 齐文锦 薛璇璇 王兴明 张世文 胡友彪 《环境科学与技术》 CAS CSCD 北大核心 2023年第7期216-221,共6页
该文构建生物电化学系统(BES)驱动电渗析装置处理飞灰,采用正交试验考察不同外加电压、初始pH和液固比对飞灰中Pb、Ni的迁移效果及残留飞灰中重金属形态分布和浸出毒性的影响。结果表明:电渗析过程中反应池内Pb、Ni浓度受初始pH和液固... 该文构建生物电化学系统(BES)驱动电渗析装置处理飞灰,采用正交试验考察不同外加电压、初始pH和液固比对飞灰中Pb、Ni的迁移效果及残留飞灰中重金属形态分布和浸出毒性的影响。结果表明:电渗析过程中反应池内Pb、Ni浓度受初始pH和液固比控制,阴/阳极液中Pb、Ni浓度先无明显变化后上升,3 d后增速变缓;电渗析处理14 d后Pb、Ni分布特征为飞灰浸出液>离子交换膜>阴/阳极液≈阴/阳极,飞灰中Pb和Ni主要向阴极端迁移,在外加电压、初始pH和液固比为300 mV、3、20 mL/g和300 mV、4、50 mL/g时获得最高去除率分别为25.43%和77.48%;残留飞灰中Pb和Ni的弱酸可提取态分别降低了9.97%~15.76%和6.94%~25.11%,残渣态分别增加了4.88%~38.25%和16.44%~38.24%,浸出毒性均低于GB 5085.3-2007限值。 展开更多
关键词 飞灰 电渗析 重金属去除 生物电化学系统
下载PDF
Electrochemistry-stimulated environmental bioremediation:Development of applicable modular electrode and system scale-up 被引量:4
3
作者 Ai-Jie Wang Hong-Cheng Wang +5 位作者 Hao-Yi Cheng Bin Liang Wen-Zong Liu Jing-Long Han Bo Zhang Shu-Sen Wang 《Environmental Science and Ecotechnology》 2020年第3期32-40,共9页
Bioelectrochemical systems(BESs)have been studied extensively during the past decades owing primarily to their versatility and potential in addressing the water-energy-resource nexus.In stark contrast to the significa... Bioelectrochemical systems(BESs)have been studied extensively during the past decades owing primarily to their versatility and potential in addressing the water-energy-resource nexus.In stark contrast to the significant advancements that have been made in developing innovative processes for pollution control and bioresource/bioenergy recovery,minimal progress has been achieved in demonstrating the feasibility of BESs in scaled-up applications.This lack of scaled-up demonstration could be ascribed to the absence of suitable electrode modules(EMs)engineered for large-scale application.In this study,we report a scalable composite-engineered EM(total volume of 1 m^(3)),fabricated using graphite-coated stainless steel and carbon felt,that allows integrating BESs into mainstream wastewater treatment technologies.The cost-effectiveness and easy scalability of this EM provides a viable and clear path to facilitate the transition between the success of the lab studies and applications of BESs to solve multiple pressing environmental issues at full-scale. 展开更多
关键词 Environmental bioremediation bio-electrochemical systems(BESs) Electrode modular SCALING-UP Intergradation system
原文传递
生物电化学系统对运动发酵单胞菌代谢的影响 被引量:2
4
作者 张家威 王亮 +2 位作者 爱赛姆克热尼 吴双双 刘晨光 《生物工程学报》 CAS CSCD 北大核心 2022年第7期2513-2522,共10页
生物电化学系统能促进微生物与电极间的相互作用,从而改变微生物的代谢状态。本工作为研究运动发酵单胞菌(Zymomonas mobilis)在电环境中的代谢表现,在外接3V电源的H型电化学发酵装置中测试了其发酵效能。结果表明,相比于无电压的对照,... 生物电化学系统能促进微生物与电极间的相互作用,从而改变微生物的代谢状态。本工作为研究运动发酵单胞菌(Zymomonas mobilis)在电环境中的代谢表现,在外接3V电源的H型电化学发酵装置中测试了其发酵效能。结果表明,相比于无电压的对照,阳极甘油产量上升24%,阴极葡萄糖消耗上升16%,产物乙醇和琥珀酸的产量也分别上升13%和8%。转录组分析表明,代谢物的显著改变归因于电环境导致的有机酸代谢、氧化还原平衡、电子传递等通路的改变。从表达差异显著的基因中挑选了代表胞内氧化还原平衡、生物膜形成和电子传递的3个基因ZMO1060(编码超氧化物歧化酶)、ZMO0401(编码二鸟苷酸磷酸二酯酶)和ZMO1819(编码固氮蛋白)进行验证,结果表明过表达ZMO1060和ZMO1819能够更显著地改变生物电化学系统中Z.mobilis的代谢。本工作为应用生物电化学系统调控微生物代谢物生产提供了参考。 展开更多
关键词 运动发酵单胞菌 生物电化学系统 转录组 代谢 电子传递
原文传递
生物电化学系统阴极还原反应催化剂研究进展 被引量:2
5
作者 朱绪娅 刘夏晴 +4 位作者 王茜子 杨慧 于航 薛雯丹 李凤祥 《现代化工》 CAS CSCD 北大核心 2019年第5期33-37,39,共6页
综述了近年来研究人员为开发不同类型的高效低成本的生物电化学系统(BES)阴极催化剂所做的努力,重点分析了BES中贵金属、过渡金属合金及氧化物、金属大环化合物、纳米材料修饰阴极、导电聚合物、改性石墨烯、生物催化剂以及新兴的金属... 综述了近年来研究人员为开发不同类型的高效低成本的生物电化学系统(BES)阴极催化剂所做的努力,重点分析了BES中贵金属、过渡金属合金及氧化物、金属大环化合物、纳米材料修饰阴极、导电聚合物、改性石墨烯、生物催化剂以及新兴的金属有机骨架材料(MOF)作为催化剂的催化活性研究进展和应用效果,为寻找可替代贵金属催化剂,且低成本高效率的阴极催化剂材料提供借鉴。 展开更多
关键词 生物电化学系统 阴极催化剂 氧还原反应 金属有机骨架 纳米材料 催化剂载体
下载PDF
Study on Influencing Factors of Bio-electrochemical System for Water Softening
6
作者 Han Yingjie Zhang Jiqiang 《Meteorological and Environmental Research》 CAS 2017年第6期54-55,62,共3页
Bio-electrochemical system( BES) was used to soften hard water,and effects of ion species,electrode area and influent concentration on the performance of BES to soften hard water were analyzed. The results showed that... Bio-electrochemical system( BES) was used to soften hard water,and effects of ion species,electrode area and influent concentration on the performance of BES to soften hard water were analyzed. The results showed that it was more easy to remove Mg^(2+) from the hard water than Ca^(2+). Increasing electrode area could enhance the performance of BES to soften hard water. When the amount of added graphite at the anode was 150 g,the removal efficiency of Ca^(2+) increased by 18. 1%. The increase of influent concentration at the anode and the cathode could improve the softening efficiency of hard water by BES. As COD concentration at the anode and NO_3^--N concentration at the cathode increased to 2000 and 300 mg/L,the removal efficiency of Ca^(2+) rose by 36. 1% and 9. 4% respectively. 展开更多
关键词 WATER SOFTENING bio-electrochemical system Influencing FACTORS CONDITION optimization
下载PDF
Clean Conversion of Biomass Energy by Bio-electrochemical System
7
作者 Jiqiang ZHANG Qiong ZHANG 《Agricultural Biotechnology》 CAS 2017年第6期49-51,共3页
Biomass energy is an important constituent of the world's future sustainable energy source system, but current biomass energy conversion techniques have low efficiency and cause secondary pollution to environment eas... Biomass energy is an important constituent of the world's future sustainable energy source system, but current biomass energy conversion techniques have low efficiency and cause secondary pollution to environment easily. Bio-eleetrochemical system (BES) appeared in recent years could realize the clean efficient con- version of biomass energy, and has become a research hotspot in the biomass energy field. In this study, the research and application of BES in biomass energy con- version were overviewed, and the existing problems were analyzed. 展开更多
关键词 biomass energy bio-electrochemical system Clean conversion
下载PDF
Suppression of Methane Gas Emissions and Analysis of the Electrode Microbial Community in a Sediment-Based Bio-Electrochemical System
8
作者 Yoshiyuki Ueno Yoji Kitajima 《Advances in Microbiology》 2014年第5期252-266,共15页
The effects of bioelectrochemical systems (BESs) for the suppression of methane gas emissions from sediment were examined using a laboratory-scale reactor system. Methane gas emissions from acetate were suppressed by ... The effects of bioelectrochemical systems (BESs) for the suppression of methane gas emissions from sediment were examined using a laboratory-scale reactor system. Methane gas emissions from acetate were suppressed by approximately 36% from control based on the installation of a BES in which carbon-graphite electrodes were buried in sediment and arbitrarily set at certain oxidative potentials (+300 mV vs Ag/AgCl) using a potentiostat. Meanwhile, methane gas emissions increased in the BES reactor where the electrode potential was set at -200 mV. Results obtained from pyrotag sequencing analysis of the microbial community on the surface of the buried electrodes targeting 16S rRNA genes demonstrated that the genusGeobacterhad drastically propagated in a sample from the reactor where the electrodes were buried. Quantitative analysis of 16S rRNA genes of archaea also revealed that the archaeal population had decreased to approximately 1/6 of its original level on the electrode of the BES set at +300 mV. This implied that the oxidation-reduction potential (ORP) in the sediment was raised to the inhibition level for methanogenesis in the vicinity of the buried electrode. Analysis of electron flux in the experiment revealed that electrons intrinsically used for methanogenesis were recovered via current generation in the sediment where a potential of +300 mV was set for the electrode, although most electrons donated from acetate were captured by oxygen respiration and other electron-accepting reactions. These results imply that BES technology is suitable for use as a tool for controlling re-dox-dependent reactions in natural environments, and that it also brought about changes in the microbial population structure and methanogenic activity in sediment. 展开更多
关键词 MICROBIAL Fuel Cell bio-electrochemical system METHANOGENESIS ELECTRICIGENS Green HOUSE Gas
下载PDF
垃圾焚烧飞灰中重金属的传统与生物电沉积联用技术研究
9
作者 冯振东 雷涛 +3 位作者 张善发 张丽娟 丁凌云 陶虎春 《北京大学学报(自然科学版)》 EI CAS CSCD 北大核心 2022年第4期673-679,共7页
为了探究深圳市城市生活垃圾焚烧飞灰中主要重金属含量和浸出浓度,选择浸出浓度超标的Cu(II)(100 mg/L),Pb(II)(200 mg/L)和Zn(II)(300 mg/L)作为研究对象,联合生物电化学系统(BES)和传统电沉积反应器(ER),验证从飞灰浸出溶液中分离回收... 为了探究深圳市城市生活垃圾焚烧飞灰中主要重金属含量和浸出浓度,选择浸出浓度超标的Cu(II)(100 mg/L),Pb(II)(200 mg/L)和Zn(II)(300 mg/L)作为研究对象,联合生物电化学系统(BES)和传统电沉积反应器(ER),验证从飞灰浸出溶液中分离回收Cu,Pb和Zn的可行性和经济性。研究结果表明,BES能有效地将混合溶液中的Cu(II)还原为单质,去除效率大于98%。分步施加1.5V和2.5V外加电压,ER可以分别将Pb(II)和Zn(II)浓度由200和300mg/L降至23.5±1.1和4.3±0.2mg/L。系统能耗分析结果显示,BES系统每还原1kg Cu(II),可以产生16.55kWh的额外电能,ER系统每处理1kgPb(II)和Zn(II),分别消耗60.91和114.27k Wh的电能,溶解性重金属离子被转化为固态单质、氧化物和含重金属盐等。BES和ER联用技术表现出回收重金属和节约电能的双重优势。 展开更多
关键词 垃圾飞灰 生物电化学系统 电沉积反应器 重金属
下载PDF
微生物脱盐燃料电池MDCs存在的问题及其应用研究进展 被引量:1
10
作者 徐成龙 张家威 张饮江 《现代化工》 CAS CSCD 北大核心 2019年第8期69-72,共4页
在综述国内外微生物脱盐燃料电池实际应用研究现状的基础上,同时阐述微生物脱盐燃料电池存在的问题,并对其发展和应用前景做出展望。
关键词 生物电化学系统 微生物燃料电池 微生物脱盐燃料电池 应用研究进展
下载PDF
生物电化学系统中微生物电子传递的研究进展 被引量:1
11
作者 张云澍 赵庆良 李伟 《能源科学发展(中英文版)》 2014年第4期39-46,共8页
生物电化学系统(bio-electrochemical system,BES)是一种新兴的以产电微生物电子传递(EET)为基础的生物质能源回收技术,可用于电能(如微生物燃料电池)和资源回收(包括氢气和甲烷等),此外还可用于强化重金属与难降解有机污染... 生物电化学系统(bio-electrochemical system,BES)是一种新兴的以产电微生物电子传递(EET)为基础的生物质能源回收技术,可用于电能(如微生物燃料电池)和资源回收(包括氢气和甲烷等),此外还可用于强化重金属与难降解有机污染物(如POPs)的去除,而其中产电微生物将产生的电子传递到电极是BES的重要过程。本文分析总结了近年来国内外学者在EET方面的研究成果,系统地介绍了产电微生物的多样性、EET的途径和研究电子传递的方法,在此基础上指明了EET研究的发展方向。 展开更多
关键词 生物电化学系统 微生物燃料电池 产电微生物 产电微生物电子传递
下载PDF
The plant-enhanced bio-cathode:Root exudates and microbial community for nitrogen removal
12
作者 Henan Li Youpeng Qu +1 位作者 Yan Tian Yujie Feng 《Journal of Environmental Sciences》 SCIE EI CAS CSCD 2019年第3期97-103,共7页
A plant bio-electrochemical system(PBES) was constructed for organic pollutant removal and power generation. The bio-cathode, composed of granular activated carbon(GAC), stainless wire mesh and a plant species(Triticu... A plant bio-electrochemical system(PBES) was constructed for organic pollutant removal and power generation. The bio-cathode, composed of granular activated carbon(GAC), stainless wire mesh and a plant species(Triticum aestivum L.), was able to catalyze cathodic reactions without any requirement for aeration or power input. During the 60-day-long operation, an average voltage of 516 m V(1000 Ω) and maximum power density(Pmax) of 0.83 W/m^3 were obtained in the PBES. The total nitrogen removal and total organic carbon removal in the PBES were 85% and 97%, respectively. Microbial community analyses indicated that bacteria associated with power generation and organic removal were the predominant species in the bio-cathode, and plant-growth-promoting rhizobacteria were also found in the PBES. The results suggested that the coupling of plants with the GAC cathode may enhance the organicmatter degradation and energy generation from wastewater and therefore provide a new method for bio-cathode design and promote energy efficiency. 展开更多
关键词 PLANT bio-electrochemical system bio-cathode Root EXUDATES Nitrogen removal
原文传递
上一页 1 下一页 到第
使用帮助 返回顶部