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immunotherapy 9

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hematopoietic stem cell transplantation 5

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stem cell 5

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cell proliferation 4

lung cancer 4

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Microbial electrolysis cells with biocathodes and driven by microbial fuel cells for simultaneous enhanced

Jingya SHEN,Yuliang SUN,Liping HUANG,Jinhui YANG

Frontiers of Environmental Science & Engineering 2015, Volume 9, Issue 6,   Pages 1084-1095 doi: 10.1007/s11783-015-0805-y

Abstract: Previous tests have primarily examined Cu(II) and Co(II) removal in microbial electrolysis cells (MECs) with abiotic cathodes and driven by microbial fuel cell (MFCs).

Keywords: biocathode     microbial electrolysis cell     microbial fuel cell     Cu(II) removal     Co(II) removal    

Pesticide wastewater treatment using the combination of the microbial electrolysis desalination and chemical-productioncell and Fenton process

Songwei Lin, Yaobin Lu, Bo Ye, Cuiping Zeng, Guangli Liu, Jieling Li, Haiping Luo, Renduo Zhang

Frontiers of Environmental Science & Engineering 2020, Volume 14, Issue 1, doi: 10.1007/s11783-019-1191-7

Abstract: The combination of the microbial electrolysis desalination and chemical-production cell (MEDCC) and Fenton

Keywords: Pesticide wastewater     COD removal     Microbial electrolysis desalination and chemical-production cell     Energy    

Reutilize tire in microbial fuel cell for enhancing the nitrogen removal of the anammox process coupledwith iron-carbon micro-electrolysis

Frontiers of Environmental Science & Engineering 2021, Volume 15, Issue 6, doi: 10.1007/s11783-021-1409-3

Abstract:

• MFC promoted the nitrogen removal of anammox with Fe-C micro-electrolysis

Keywords: Waste tire     MFCs     Micro-electrolysis     Anammox     Feammox    

Efficient production of hydrogen peroxide in microbial reverse-electrodialysis cells coupled with thermolytic

Frontiers of Environmental Science & Engineering 2023, Volume 17, Issue 9, doi: 10.1007/s11783-023-1708-y

Abstract:

● Appreciable H2O2 production rate was achieved in MRCs utilizing NH4HCO3 solutions.

Keywords: Microbial reverse-electrodialysis cell     Hydrogen peroxide production     Ammonium bicarbonate     Electrolysiscell     Optimization    

Effects of bicarbonate and cathode potential on hydrogen production in a biocathode electrolysis cell

Dawei LIANG,Yanyan LIU,Sikan PENG,Fei LAN,Shanfu LU,Yan XIANG

Frontiers of Environmental Science & Engineering 2014, Volume 8, Issue 4,   Pages 624-630 doi: 10.1007/s11783-013-0584-2

Abstract: A biocathode with microbial catalyst in place of a noble metal was successfully developed for hydrogenevolution in a microbial electrolysis cell (MEC).This bioanode was then inversely polarized with an applied voltage in a half-cell to enrich the hydrogen-evolvingpotential region in this study, the HER rate of the biocathode MEC was primarily influenced by the microbial

Keywords: microbial electrolysis cell (MEC)     biocathode     hydrogen production     bicarbonate     cathode potential    

Effects of operational and structural parameters on cell voltage of industrial magnesium electrolysis

Ze Sun,Chenglin Liu,Guimin Lu,Xingfu Song,Jianguo Yu

Frontiers of Chemical Science and Engineering 2015, Volume 9, Issue 4,   Pages 522-531 doi: 10.1007/s11705-015-1539-x

Abstract: Electric field is the energy foundation of the electrolysis process and the source of the multiphysicalfields in a magnesium electrolysis cell.thickness, cathode thickness, and anode-cathode distance (ACD), were investigated to obtain the minimum cellminimum resistance voltage which has a significant effect on the energy consumption in the magnesium electrolysis

Keywords: finite element method     magnesium electrolysis cell     electric field    

Enhanced hydrogen production in microbial electrolysis through strategies of carbon recovery from alkaline

Ling Wang, Chunxue Yang, Sangeetha Thangavel, Zechong Guo, Chuan Chen, Aijie Wang, Wenzong Liu

Frontiers of Environmental Science & Engineering 2021, Volume 15, Issue 4, doi: 10.1007/s11783-020-1348-4

Abstract: thermal (T), alkaline (A) or thermal-alkaline (TA) pretreated sludge fermentation liquid (SFL) in a microbialelectrolysis cells (MECs) without buffer addition.

Keywords: Waste activated sludge (WAS)     Short chain fatty acids (SCFAs)     Hydrogen     Pretreatment     Microbial electrolysis    

Scientometric analysis of research trends on solid oxide electrolysis cells for green hydrogen and syngas

Frontiers in Energy doi: 10.1007/s11708-024-0945-5

Abstract: Solid oxide electrolysis cell (SOEC) is a promising water electrolysis technology that produces hydrogenor syngas through water electrolysis or water and carbon dioxide co-electrolysis.articles of the research of different topics of SOECs: fuel electrode, air electrode, electrolyte, co-electrolysisThe results show that co-electrolysis and proton-conducting SOECs are two popular directions in the study

Keywords: solid oxide electrolysis cell (SOEC)     scientometric review     knowledge network     material development     H2O–CO2 co-electrolysis     modeling    

A knowledge reasoning Fuzzy-Bayesian network for root cause analysis of abnormal aluminum electrolysiscell condition

Weichao Yue, Xiaofang Chen, Weihua Gui, Yongfang Xie, Hongliang Zhang

Frontiers of Chemical Science and Engineering 2017, Volume 11, Issue 3,   Pages 414-428 doi: 10.1007/s11705-017-1663-x

Abstract: Root cause analysis (RCA) of abnormal aluminum electrolysis cell condition has long been a challengingIn addition, accurate RCA of abnormal aluminum electrolysis cell condition is the precondition of improvingThe proposed method was verified under 20 sets of abnormal cell conditions, and implements root causetest results is up to 95%, which shows that the knowledge reasoning feasibility for RCA of aluminum electrolysiscell.

Keywords: abnormal aluminum electrolysis cell condition     Fuzzy-Bayesian network     multi-source knowledge solidification    

A mini-microbial fuel cell for voltage testing of exoelectrogenic bacteria

Xiaoxin CAO , Xia HUANG , Xiaoyuan ZHANG , Peng LIANG , Mingzhi FAN ,

Frontiers of Environmental Science & Engineering 2009, Volume 3, Issue 3,   Pages 307-312 doi: 10.1007/s11783-009-0028-1

Abstract: voltage testing system of exoelectrogenic bacteria called Quickscreen, which is based on a microliter microbialfuel cell (MFC).

Keywords: microbial fuel cell     exoelectrogenic bacteria     rapid screening    

Scaling up a novel denitrifying microbial fuel cell with an oxic-anoxic two stage biocathode

Peng LIANG, Jincheng WEI, Ming LI, Xia HUANG

Frontiers of Environmental Science & Engineering 2013, Volume 7, Issue 6,   Pages 913-919 doi: 10.1007/s11783-013-0583-3

Abstract: A scaled up microbial fuel cell (MFC) of a 50 L volume was set up with an oxic-anoxic two-stage biocathode

Keywords: microbial fuel cell (MFC)     oxic-anoxic two stage biocathode     denitrifying    

Repeated batch fermentation with water recycling and cell separation for microbial lipid production

Yumei WANG, Wei LIU, Jie BAO

Frontiers of Chemical Science and Engineering 2012, Volume 6, Issue 4,   Pages 453-460 doi: 10.1007/s11705-012-1210-8

Abstract: Large waste water disposal was the major problem in microbial lipid fermentation because of low yieldOur method provided a practical option for reducing the waste water generated from microbial lipid fermentation

Keywords: batch fermentation     microbial lipid     Trichosporon cutaneum CX1     flocculation     waste water    

Sediment microbial fuel cell with floating biocathode for organic removal and energy recovery

Aijie WANG, Haoyi CHENG, Nanqi REN, Dan CUI, Na LIN, Weimin WU

Frontiers of Environmental Science & Engineering 2012, Volume 6, Issue 4,   Pages 569-574 doi: 10.1007/s11783-011-0335-1

Abstract: A sediment microbial fuel cell (SMFC) with three dimensional floating biocathode (FBC) was developedThe biocathode was made from graphite granules with microbial attachment to replace platinum (Pt)-coated

Keywords: microbial fuel cell (MFC)     sediment     biocathode     electricity generation     organic removal    

Using pyrosequencing and quantitative PCR to analyze microbial communities

Husen ZHANG

Frontiers of Environmental Science & Engineering 2011, Volume 5, Issue 1,   Pages 21-27 doi: 10.1007/s11783-011-0303-9

Abstract: New high-throughput technologies continue to emerge for studying complex microbial communities.In this review, the principles of these two methods and their complementary applications in studying microbialThree examples in which pyrosequencing and QPCR were used together to define and quantify members of microbialwhose sludge was made more bioavailable by a high-voltage pretreatment, and on the biofilm anode of a microbialelectrolytic cell.

Keywords: polymerase chain reaction (PCR)     microbial communities     pyrosequencing     gut     microbial fuel cell     sludge    

Response of indigenous Cd-tolerant electrochemically active bacteria in MECs toward exotic Cr(VI) based on the sensing of fluorescence probes

Xia Hou, Liping Huang, Peng Zhou, Hua Xue, Ning Li

Frontiers of Environmental Science & Engineering 2018, Volume 12, Issue 4, doi: 10.1007/s11783-018-1057-4

Abstract:

Cell membrane of indigenous Cd-tolerant EAB harbored more cadmium

Keywords: Microbial electrolysis cell     Electrochemically active bacteria     Cd-tolerant bacteria     Cd(II) and Cr(VI)    

Title Author Date Type Operation

Microbial electrolysis cells with biocathodes and driven by microbial fuel cells for simultaneous enhanced

Jingya SHEN,Yuliang SUN,Liping HUANG,Jinhui YANG

Journal Article

Pesticide wastewater treatment using the combination of the microbial electrolysis desalination and chemical-productioncell and Fenton process

Songwei Lin, Yaobin Lu, Bo Ye, Cuiping Zeng, Guangli Liu, Jieling Li, Haiping Luo, Renduo Zhang

Journal Article

Reutilize tire in microbial fuel cell for enhancing the nitrogen removal of the anammox process coupledwith iron-carbon micro-electrolysis

Journal Article

Efficient production of hydrogen peroxide in microbial reverse-electrodialysis cells coupled with thermolytic

Journal Article

Effects of bicarbonate and cathode potential on hydrogen production in a biocathode electrolysis cell

Dawei LIANG,Yanyan LIU,Sikan PENG,Fei LAN,Shanfu LU,Yan XIANG

Journal Article

Effects of operational and structural parameters on cell voltage of industrial magnesium electrolysis

Ze Sun,Chenglin Liu,Guimin Lu,Xingfu Song,Jianguo Yu

Journal Article

Enhanced hydrogen production in microbial electrolysis through strategies of carbon recovery from alkaline

Ling Wang, Chunxue Yang, Sangeetha Thangavel, Zechong Guo, Chuan Chen, Aijie Wang, Wenzong Liu

Journal Article

Scientometric analysis of research trends on solid oxide electrolysis cells for green hydrogen and syngas

Journal Article

A knowledge reasoning Fuzzy-Bayesian network for root cause analysis of abnormal aluminum electrolysiscell condition

Weichao Yue, Xiaofang Chen, Weihua Gui, Yongfang Xie, Hongliang Zhang

Journal Article

A mini-microbial fuel cell for voltage testing of exoelectrogenic bacteria

Xiaoxin CAO , Xia HUANG , Xiaoyuan ZHANG , Peng LIANG , Mingzhi FAN ,

Journal Article

Scaling up a novel denitrifying microbial fuel cell with an oxic-anoxic two stage biocathode

Peng LIANG, Jincheng WEI, Ming LI, Xia HUANG

Journal Article

Repeated batch fermentation with water recycling and cell separation for microbial lipid production

Yumei WANG, Wei LIU, Jie BAO

Journal Article

Sediment microbial fuel cell with floating biocathode for organic removal and energy recovery

Aijie WANG, Haoyi CHENG, Nanqi REN, Dan CUI, Na LIN, Weimin WU

Journal Article

Using pyrosequencing and quantitative PCR to analyze microbial communities

Husen ZHANG

Journal Article

Response of indigenous Cd-tolerant electrochemically active bacteria in MECs toward exotic Cr(VI) based on the sensing of fluorescence probes

Xia Hou, Liping Huang, Peng Zhou, Hua Xue, Ning Li

Journal Article