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公开(公告)号:US20190008134A1
公开(公告)日:2019-01-10
申请号:US15748983
申请日:2016-08-05
Applicant: SnG INC.
Inventor: RIICHI MIYAMOTO , HONGZHI BAI
IPC: A01M1/20 , A61L9/013 , A61L9/04 , C01B33/152
Abstract: The present invention provides a porous sustained-release body in which transparency of a porous carrier changes. The porous sustained-release body includes an inorganic monolithic porous body 1 including a skeleton body 2 of an inorganic compound and air gaps 3,4 having a three-dimensional continuous network structure formed in the skeleton body 2, and a sustained-release liquid absorbed into air gaps 2, 3, wherein the inorganic monolithic porous body 1 is opaque at an initial state, which is a state before absorption of the sustained-release liquid in which air exists in the air gaps, and refractive index of the sustained-release liquid and refractive index of the skeleton body are the same within an error range within which a portion in which the sustained-release liquid is absorbed into the air gaps changes to transparent or semitransparent.
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公开(公告)号:US20220072510A1
公开(公告)日:2022-03-10
申请号:US17530893
申请日:2021-11-19
Applicant: SnG Inc.
Inventor: RIICHI MIYAMOTO , HONGZHI BAI
IPC: B01J20/28 , B01J8/16 , B01J45/00 , C01B33/159 , G01N30/88 , G01N30/96 , B01J8/02 , B01J20/06 , B01J20/10 , C01G23/047
Abstract: A method for reacting a reaction object with a liquid containing the reaction object in contact with a granular porous body. The upper limit D (mm) of the particle diameter of the granular porous body is determined from D=0.556×LN (T)+0.166 in a column flow method in non-circulation type, and determined from D=0.0315×T+0.470 in the column flow method in a circulation type and a shaking method. The granular porous body includes a skeleton body including an inorganic compound having a three-dimensional continuous network structure, and has a two-step hierarchical porous structure including through-holes formed in voids in the skeleton body, and pores extending from a surface to an inside of the skeleton body and dispersed on the surface. A functional group having affinity with the metal ion is chemically modified on a surface of the granular porous body.
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公开(公告)号:US20180185821A1
公开(公告)日:2018-07-05
申请号:US15737674
申请日:2016-06-29
Applicant: SnG Inc.
Inventor: RIICHI MIYAMOTO , HONGZHI BAI
IPC: B01J20/28 , B01J45/00 , B01J8/16 , C01B33/159 , C01G23/047 , G01N30/88 , G01N30/96
CPC classification number: B01J20/28083 , B01D15/3828 , B01J8/02 , B01J8/16 , B01J20/06 , B01J20/103 , B01J20/28 , B01J20/28092 , B01J45/00 , C01B33/159 , C01G23/047 , G01N30/88 , G01N30/96
Abstract: The present invention provides efficient reaction conditions by clarifying a relationship between a contact time and an optimum particle diameter etc. in a method for reacting a reaction object with a liquid containing the reaction object being in contact with a granular porous body. The upper limit D (mm) of the particle diameter of the granular porous body is determined from D=0.556×LN (T)+0.166 in a column flow method in non-circulation type, and determined from D=0.0315×T+0.470 in the column flow method in a circulation type and a shaking method. The contact time T (seconds) is given by a value obtained by dividing the volume (m3) of the granular porous body by the flow rate (m3/second) of the liquid in the column flow method in non-circulation type, given by a value obtained by multiplying the fluid flow time (seconds) of the liquid by a volume ratio obtained by dividing the volume of the granular porous body by the volume of the liquid in the column flow method in a circulation type, and given by a value obtained by multiplying the volume ratio by the elapsed time (seconds) after addition of the granular porous body in the liquid in the shaking method.
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