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91.
公开(公告)号:US20150360205A1
公开(公告)日:2015-12-17
申请号:US14305625
申请日:2014-06-16
Applicant: International Business Machines Corporation
Inventor: Dylan J. BODAY , Jeannette M. Garcia , James L. Hedrick , Rudy J. Wojtecki , Gavin O. Jones
CPC classification number: B01J20/262 , B01D15/08 , C02F1/285 , C02F1/683 , C02F2101/20 , C02F2201/002 , C02F2303/16
Abstract: Method and apparatus for controlling metals in a liquid are described. The liquid is contacted with a hexahydrotriazine and/or a hemiaminal material, and metal is adsorbed from the liquid onto the material. The hexahydrotriazine and/or hemiaminal material may be made from a diamine and an aldehyde.
Abstract translation: 描述了用于控制液体中的金属的方法和装置。 液体与六氢三嗪和/或半合金材料接触,金属从液体吸附到材料上。 六氢三嗪和/或噻嗪类材料可以由二胺和醛制成。
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92.
公开(公告)号:US20150355090A1
公开(公告)日:2015-12-10
申请号:US14563304
申请日:2014-12-08
Applicant: INTERNATIONAL BUSINESS MACHINES CORPORATION
Inventor: Dylan J. BODAY , Jeannette M. GARCIA , James L. HEDRICK , Rudy J. WOJTECKI , Thomas ZIMMERMAN
CPC classification number: G01N21/59 , G01N21/33 , G01N33/20 , G01N2201/061
Abstract: Method for detecting metals in a liquid are described. The liquid is contacted with a hexahydrotriazine and/or a hemiaminal material, and a UV absorption spectrum of the material before and after exposure to the liquid is examined to determine whether metals are present in the liquid.
Abstract translation: 描述了用于检测液体中的金属的方法。 将液体与六氢三嗪和/或半固体材料接触,并且检查在暴露于液体之前和之后的材料的UV吸收光谱,以确定金属是否存在于液体中。
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公开(公告)号:US20150344628A1
公开(公告)日:2015-12-03
申请号:US14788146
申请日:2015-06-30
Applicant: International Business Machines Corporation
Inventor: Dylan J. BODAY , Jeannette M. GARCIA , James L. HEDRICK , Rudy J. WOJTECKI
IPC: C08G75/02
CPC classification number: C08G75/025 , C08G75/00 , C08G75/02 , C08G75/0209 , C08G75/0268 , C08G75/04 , C08G75/14
Abstract: Polythioethers and methods for forming polythioethers are disclosed herein. The polythioethers are prepared from thiols and hexahydrotriazines. The thiols may be, for example, dithiols, trithiols, monothiols, or mixtures thereof. The polythioethers are prepared from an efficient and simple synthetic method, and the properties of the prepared polythioethers can be readily tuned. The prepared polythioethers may additionally have improved thermal properties, improved mechanical properties, and enhanced functionality.
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