Patents by Inventor Ziwen ZHONG

Ziwen ZHONG 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: 20240132420
    Abstract: The present disclosure provides a joint control method for nitrogen and phosphorus emissions in farmlands, comprising: reducing nitrogen and phosphorus input during crop sowing or planting by applying composite organic material and chemical fertilizer, wherein the composite organic material comprises: 200-250 parts of edible fungi residues, 300-350 parts of charcoal and 5-10 parts of rhamnolipid; constructing a nitrogen-phosphorus retention layer by utilizing composite microbial agent in combination with 150 parts of edible fungi residues and 20 parts of straw-based hydrogel; constructing a barrier layer by utilizing composite material, and controlling downward leaching of nitrogen and phosphorus that are not absorbed by crops, wherein the composite material of the barrier layer comprises: 25-35 parts of straw-based hydrogel, 20-30 parts of edible fungi residues, 35-55 parts of bentonite and 5-10 parts of corn flour.
    Type: Application
    Filed: March 9, 2023
    Publication date: April 25, 2024
    Applicant: Shandong Academy of Agricultural Sciences Institute of Agricultural Resources and Environment
    Inventors: Yan Li, Longyun Fu, Xiuchu Liu, Yongping Jing, Luji Bo, Ming Sun, Ziwen Zhong
  • Patent number: 11634369
    Abstract: The present disclosure provides a joint control method for nitrogen and phosphorus emissions in farmlands, comprising: reducing nitrogen and phosphorus input during crop sowing or planting by applying composite organic material and chemical fertilizer, wherein the composite organic material comprises: 200-250 parts of edible fungi residues, 300-350 parts of charcoal and 5-10 parts of rhamnolipid; constructing a nitrogen-phosphorus retention layer by utilizing composite microbial agent in combination with 150 parts of edible fungi residues and 20 parts of straw-based hydrogel; constructing a barrier layer by utilizing composite material, and controlling downward leaching of nitrogen and phosphorus that are not absorbed by crops, wherein the composite material of the barrier layer comprises: 25-35 parts of straw-based hydrogel, 20-30 parts of edible fungi residues, 35-55 parts of bentonite and 5-10 parts of corn flour.
    Type: Grant
    Filed: March 1, 2021
    Date of Patent: April 25, 2023
    Assignee: Shandong Academy of Agricultural Sciences Institute of Agricultural Resources and Environment
    Inventors: Yan Li, Longyun Fu, Xiuchu Liu, Yongping Jing, Luji Bo, Ming Sun, Ziwen Zhong
  • Publication number: 20210300836
    Abstract: The present disclosure provides a joint control method for nitrogen and phosphorus emissions in farmlands, comprising: reducing nitrogen and phosphorus input during crop sowing or planting by applying composite organic material and chemical fertilizer, wherein the composite organic material comprises: 200-250 parts of edible fungi residues, 300-350 parts of charcoal and 5-10 parts of rhamnolipid; constructing a nitrogen-phosphorus retaintion layer by utilizing composite microbial agent in combination with 150 parts of edible fungi residues and 20 parts of straw-based hydrogel; constructing a barrier layer by utilizing composite material, and controlling downward leaching of nitrogen and phosphorus that are not absorbed by crops, wherein the composite material of the barrier layer comprises: 25-35 parts of straw-based hydrogel, 20-30 parts of edible fungi residues, 35-55 parts of bentonite and 5-10 parts of corn flour.
    Type: Application
    Filed: March 1, 2021
    Publication date: September 30, 2021
    Applicant: Shandong Academy of Agricultural Sciences Institute of Agricultural Resources and Environment
    Inventors: Yan Li, Longyun Fu, Xiuchu Liu, Yongping Jing, Luji Bo, Ming Sun, Ziwen Zhong
  • Publication number: 20130337427
    Abstract: Disclosed are an electronic book, as well as a method and device for identifying electronic book page numbers. The method includes positioning trigger pins and a contact end on a book spine. The contact end is electrically connected to a controller. When a page of the electronic book is flipped, two contact ends of a soft circuit, which is closely affixed on the book spine, are made conducting by squeezing a positioning trigger pin. The conduction signal of the contact ends are received and the page number of the flipped page is identified according to the received signal. The preset content of the book page is played through the controller which is electrically connected to the soft circuit. Positioning trigger pins and the contact end are arranged on the low parts of the book spine surface, which is formed naturally by mounting and bending pages.
    Type: Application
    Filed: August 22, 2013
    Publication date: December 19, 2013
    Inventor: Ziwen ZHONG