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公开(公告)号:US20230137305A1
公开(公告)日:2023-05-04
申请号:US18089396
申请日:2022-12-27
Inventor: Ning Ma , Mohsen S. Yeganeh , Robert J. Colby , Qiuzi Li , Matthew S. Ide
IPC: B01D53/14 , B01D53/22 , B01D67/00 , B01D69/14 , B01D53/18 , B01D53/26 , B01J20/08 , B01J20/10 , B01J20/22 , B01J20/26 , B01J20/28 , B01J21/08 , B01J31/00 , B01J31/26 , B01J35/06 , C02F1/26 , C02F3/34
Abstract: The present disclosure relates to a porous liquid or a porous liquid enzyme system that includes a high surface area solid and a liquid film substantially covering the high surface area solid. The porous liquid or porous liquid enzyme may be contacted with a fluid that is immiscible with the liquid film such that a liquid-fluid interface is formed. The liquid film may facilitate mass transfer of a substance or substrate across the liquid-fluid interface. The present disclosure also provides methods of performing liquid-based extractions and enzymatic reactions utilizing the porous liquid or porous liquid enzyme of the present disclosure. The present disclosure also provides methods for selecting the components of the porous liquid or a porous liquid enzyme system and methods of self-replenishing the used liquid coating.
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公开(公告)号:US11717889B2
公开(公告)日:2023-08-08
申请号:US16739626
申请日:2020-01-10
Inventor: Ning Ma , Hyun-Woo Jin , Shiun Ling
CPC classification number: B22F7/08 , B22F10/25 , B22F10/38 , B22F10/34 , B22F12/53 , B22F2301/052 , B22F2301/15 , B22F2301/35 , B22F2301/40 , B33Y10/00 , B33Y70/00 , B33Y80/00
Abstract: Methods disclosed herein include using additive manufacturing to create a joint between a first metallic material and a second metallic material that is different from the first metallic material, wherein the porosity of the joint is less than about 0.1 percent by volume measured according to ASTM B-962. The additive manufacturing can be performed such that no intermetallic brittle phase forms between the first metallic material and the second metallic material.
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公开(公告)号:US11590447B2
公开(公告)日:2023-02-28
申请号:US16660029
申请日:2019-10-22
Inventor: Mohsen S. Yeganeh , Pavel Kortunov , P. Scott Northrop , Xiaozhou Zhang , Giovanni Pilloni , Ning Ma , Robert J. Colby , Qiuzi Li , Zarath M. Summers , Matthew S. Ide
IPC: B01D53/14 , B01D53/22 , B01D67/00 , B01D69/14 , B01D53/18 , B01D53/26 , B01J20/08 , B01J20/10 , B01J20/22 , B01J20/26 , B01J20/28 , B01J21/08 , B01J31/00 , B01J31/26 , B01J35/06 , C02F1/26 , C02F3/34 , C02F101/34
Abstract: The present disclosure relates to a porous liquid or a porous liquid enzyme that includes a high surface area solid and a liquid film substantially covering the high surface area solid. The porous liquid or porous liquid enzyme may be contacted with a fluid that is immiscible with the liquid film such that a liquid-fluid interface is formed. The liquid film may facilitate mass transfer of a substance or substrate across the liquid-fluid interface. The present disclosure also provides methods of performing liquid-based extractions and enzymatic reactions utilizing the porous liquid or porous liquid enzyme of the present disclosure.
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公开(公告)号:US11859133B2
公开(公告)日:2024-01-02
申请号:US17496644
申请日:2021-10-07
Inventor: Wesley Sattler , Keith R. Hajkowski , Changmin Chun , Partha Nandi , Vera Grankina , Joseph E. Gatt , Ning Ma , Anastasios Skoulidas , William R. Gunther , Everett J. O'Neal
IPC: C10G11/04 , C10G11/22 , B01J35/04 , B01J21/04 , B01J23/755 , B01J38/12 , B01J8/00 , B01J23/00 , B01J23/10 , B01J23/46 , B01J29/74 , B01J35/00 , B01J35/10 , B01J37/03 , B01J37/04 , B01J37/08 , C01B3/38 , C01B3/40
CPC classification number: C10G11/04 , B01J8/008 , B01J21/04 , B01J23/002 , B01J23/10 , B01J23/464 , B01J23/755 , B01J29/74 , B01J35/0006 , B01J35/04 , B01J35/1009 , B01J35/1014 , B01J37/038 , B01J37/04 , B01J37/082 , B01J38/12 , C01B3/382 , C01B3/384 , C01B3/40 , C10G11/22 , B01J2208/00017 , B01J2208/00548 , C01B2203/0233 , C01B2203/0811 , C01B2203/1058 , C01B2203/1064 , C10G2300/70
Abstract: Systems and methods are provided for using size-reversing materials in vessels where direct heating is used to at least partially provide heat for reforming reactions under cyclic reforming conditions. An example of a size-reversing material is the combination of NiO and Al2O3. It has been discovered that size-reversing materials can undergo a phase transition that can assist with re-dispersion of metal at elevated temperatures. This can assist with maintaining catalytic activity for reforming over longer time periods in the presence of cyclic reforming conditions.
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