发明名称 Self-biased and Sustainable Microbial Electrohydrogenesis Device
摘要 A hybrid photoelectrochemical and microbial fuel cell device is provided that includes a single-chamber photoelectrochemical device having an n-type TiO2 photoanode and a Pt counter electrode in an aqueous electrolyte solution, and a dual-chamber microbial fuel cell having an anode chamber and a cathode chamber separated by a cation exchange membrane, where the anode chamber includes a carbon anode and microorganisms and the cathode chamber includes Pt-loaded carbon cathode, the carbon anode is electrically connected to the Pt counter electrode, the carbon cathode is electrically connected to the TiO2 photoanode, a light source creates photoexcited electron-hole pairs at the photoanode, the holes oxidize water into oxygen, where dissolved oxygen in the cathode chamber is reduced, the microorganisms oxidize and produce bioelectrons, where the bioelectrons are trans ferred to the Pt electrode and reduce protons to form hydrogen gas.
申请公布号 US2016111747(A1) 申请公布日期 2016.04.21
申请号 US201414896745 申请日期 2014.06.12
申请人 THE REGENTS OF THE UNIVERSITY OF CALIFORNIA 发明人 Li Yat;Wang Hanyu;Wang Gongming
分类号 H01M8/16;H01M14/00 主分类号 H01M8/16
代理机构 代理人
主权项 1. A hybrid photoelectrochemical and microbial fuel cell device, comprising: a. a single-chamber photoelectrochemical device, wherein said single-chamber photoelectrochemical device comprises an n-type TiO2 photoanode and a Pt counter electrode in an aqueous electrolyte solution, and; b. a dual-chamber microbial fuel cell device, wherein said dual-chamber microbial fuel cell device comprises an anode chamber and a cathode chamber, wherein said anode chamber is separated from said cathode chamber by a cation exchange membrane, wherein said anode chamber comprises a carbon anode and said cathode chamber comprises Pt-loaded carbon cathode, wherein said anode chamber comprises microorganisms, wherein said carbon anode is electrically connected to said Pt counter electrode, wherein said Pt-loaded carbon cathode is electrically connected to said TiO2 photoanode, wherein a light source creates photoexcited electron-hole pairs at said TiO2 photoanode that are separated by an electric field at an interface of said TiO2 photoanode and said electrolyte solution, wherein said holes oxidize water into oxygen, wherein electrons flow from said TiO2 photoanode to said Pt-loaded carbon cathode, wherein dissolved oxygen in said cathode chamber is reduced, wherein said microorganisms oxidize and produce bioelectrons, wherein said bioelectrons are transferred to said Pt electrode and reduce protons to form hydrogen gas.
地址 Oakland CA US