• 专利标题:   Preparation of graphene quantum energy material for e.g. adsorbing inorganic pollutants, involves using nano-titanium dioxide, quantum nano-far infrared powder, graphene powder, rare earth phosphorescent luminescent material and latex.
  • 专利号:   CN107670495-A
  • 发明人:   LU X
  • 专利权人:   CHANGZHOU LONGSHENG GRAPHENE TECHNOLOGY CO LTD
  • 国际专利分类:   B01D053/00, B01D053/02, B01D053/72, B01D053/86, C01B032/194
  • 专利详细信息:   CN107670495-A 09 Feb 2018 B01D-053/86 201819 Pages: 5 Chinese
  • 申请详细信息:   CN107670495-A CN10905398 29 Sep 2017
  • 优先权号:   CN10905398

▎ 摘  要

NOVELTY - Preparation of graphene quantum energy material, involves (i) adding nano-zinc oxide, nano-titanium dioxide and quantum nano-far infrared powder to graphene powder, mixing evenly at high-speed, then adding rare earth phosphorescent luminescent material, uniformly mixing to obtain mixture (A), (ii) adding the mixture (A) to latex, and mixing to obtain mixture (B), placing the mixture (B) in a container, (iii) adding pre-foamed perforated graphene sponge into the container, immersing and squeezing the graphene sponge, uniformly coating the mixture (B) on graphene sponge. USE - Preparation of graphene quantum energy material (claimed) for catalyzing and decomposing organic pollutants and adsorbing inorganic pollutants. ADVANTAGE - The preparation method is simple and easy to operate, and achieves high productivity. The graphene quantum energy material can efficiently catalyze and decompose organic pollutants and adsorb inorganic pollutants, and has high catalytic decomposition capacity which is several hundred times that of activated carbon. DETAILED DESCRIPTION - Preparation of graphene quantum energy material, involves (i) adding nano-zinc oxide, nano-titanium dioxide, and quantum nano-far infrared powder to graphene powder, mixing evenly at high-speed, then adding rare earth phosphorescent luminescent material, uniformly mixing to obtain mixture (A), (ii) adding the mixture (A) to latex, and mixing to obtain mixture (B), placing the mixture (B) in a container, (iii) adding pre-foamed perforated graphene sponge into the container, immersing for 4-12 hours, and squeezing the graphene sponge, uniformly coating the mixture (B) on the graphene sponge until the graphene sponge absorbs saturation, (iv) removing the mixture (B) remaining on the surface of the graphene sponge, and drying to obtain graphene quantum energy material.