Patents by Inventor Xusheng Li

Xusheng Li has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Publication number: 20210308245
    Abstract: The disclosure provides the construction and use of tandem epitope polypeptide of outer membrane protein of campylobacter jejuni, gene, recombinant, plasmid recombinant bacteria, belonging to the technical field of genetic engineering vaccines. The tandem epitope polypeptide of outer membrane protein of campylobacter jejuni can activate the immune response of mice, and has the effect of efficiently preventing Campylobacter jejuni colonization. The tandem epitope polypeptide of the disclosure can be used for preparing vaccines for preventing campylobacter jejuni infection.
    Type: Application
    Filed: April 1, 2021
    Publication date: October 7, 2021
    Applicants: JINHUA POLYTECHNIC, HANGZHOU MEDICAL COLLEGE
    Inventors: Hongqiang LOU, Xiusheng SHENG, Haohao CHEN, Aihua SUN, Shaoye WAN, Shuiqin FANG, Xusheng LI
  • Patent number: 10145017
    Abstract: An efficient electrolysis system for sodium chlorate production may include round or oval cells, reactors, a product pump transfer, a buffer tank, a circulation pump, and explosive clad plate, all of which are connected by way of pipelines. Inlet and the outlet of each cell are separately connected with the reactor via titanium pipes, allowing the electrolyte to recirculate naturally between the cells and the reactors. The outlet of every cell is conical while each reactor includes a standard electrolytic unit with three to eight cells. The electrolytic units are modularly identical and symmetrically linked to the buffer tank. Within each unit, adjacent cells are connected with the explosive clad plates. The buffer tank may be divided into two parts—part A and part B—with part A connecting with the overflow port of the reactor via pipeline, and the part B connecting with the reactor via the circulation pump.
    Type: Grant
    Filed: June 6, 2018
    Date of Patent: December 4, 2018
    Inventors: Shuangfei Wang, Chengrong Qin, Xusheng Li, Chen Liang, Xinliang Liu, Zhiwei Wang
  • Patent number: 10106900
    Abstract: An efficient electrolysis system for sodium chlorate production may include round or oval cells, reactors, a product pump transfer, a buffer tank, a circulation pump, and explosive clad plate, all of which are connected by way of pipelines. Inlet and the outlet of each cell are separately connected with the reactor via titanium pipes, allowing the electrolyte to recirculate naturally between the cells and the reactors. The outlet of every cell is conical while each reactor includes a standard electrolytic unit with three to eight cells. The electrolytic units are modularly identical and symmetrically linked to the buffer tank. Within each unit, adjacent cells are connected with the explosive clad plates. The buffer tank may be divided into two parts—part A and part B—with part A connecting with the overflow port of the reactor via pipeline, and the part B connecting with the reactor via the circulation pump.
    Type: Grant
    Filed: May 8, 2017
    Date of Patent: October 23, 2018
    Inventors: Shuangfei Wang, Chengrong Qin, Xusheng Li, Chen Liang, Xinliang Liu, Zhiwei Wang
  • Publication number: 20180282883
    Abstract: An efficient electrolysis system for sodium chlorate production may include round or oval cells, reactors, a product pump transfer, a buffer tank, a circulation pump, and explosive clad plate, all of which are connected by way of pipelines. Inlet and the outlet of each cell are separately connected with the reactor via titanium pipes, allowing the electrolyte to recirculate naturally between the cells and the reactors. The outlet of every cell is conical while each reactor includes a standard electrolytic unit with three to eight cells. The electrolytic units are modularly identical and symmetrically linked to the buffer tank. Within each unit, adjacent cells are connected with the explosive clad plates. The buffer tank may be divided into two parts—part A and part B—with part A connecting with the overflow port of the reactor via pipeline, and the part B connecting with the reactor via the circulation pump.
    Type: Application
    Filed: June 6, 2018
    Publication date: October 4, 2018
    Inventors: Shuangfei Wang, Chengrong Qin, Xusheng Li, Chen Liang, Xinliang Liu, Zhiwei Wang
  • Publication number: 20170350022
    Abstract: An efficient electrolysis system for sodium chlorate production may include round or oval cells, reactors, a product pump transfer, a buffer tank, a circulation pump, and explosive clad plate, all of which are connected by way of pipelines. Inlet and the outlet of each cell are separately connected with the reactor via titanium pipes, allowing the electrolyte to recirculate naturally between the cells and the reactors. The outlet of every cell is conical while each reactor includes a standard electrolytic unit with three to eight cells. The electrolytic units are modularly identical and symmetrically linked to the buffer tank. Within each unit, adjacent cells are connected with the explosive clad plates. The buffer tank may be divided into two parts—part A and part B—with part A connecting with the overflow port of the reactor via pipeline, and the part B connecting with the reactor via the circulation pump.
    Type: Application
    Filed: May 8, 2017
    Publication date: December 7, 2017
    Inventors: Shuangfei Wang, Chengrong Qin, Xusheng Li, Chen Liang, Xinliang Liu, Zhiwei Wang
  • Patent number: 9776163
    Abstract: A system for the integral chlorine dioxide production with relatively independent sodium chlorate electrolytic production and chlorine dioxide production is provided. The system may feed electrolyte solution into a solid-liquid filter, filtering out the crystal and eliminating sodium chloride and sodium dichromate. The sodium chlorate crystal may be fed into a chlorine dioxide generator after dissolving, while sodium chloride and sodium dichromate solution separately return to electrolyzer for electrolysis process. Sodium chloride may be constantly formed as a by-product in the chlorine dioxide production unit, and solution containing the sodium chloride is withdrawn from the generator and, after filtration, washing and dissolution, recycled back to sodium chlorate production unit. This way, there is no need of sodium chloride make-up.
    Type: Grant
    Filed: May 8, 2017
    Date of Patent: October 3, 2017
    Assignee: GuangXi University
    Inventors: Shuangfei Wang, Chengrong Qin, Xueping Song, Xusheng Li, Shuangxi Nie, Chen Liang