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公开(公告)号:US12098104B2
公开(公告)日:2024-09-24
申请号:US17742191
申请日:2022-05-11
Applicant: Solidia Technologies, Inc.
Inventor: Ahmet Cuneyt Tas , Deepak Ravikumar , Jason E. Bryant
IPC: C04B28/00 , C04B14/30 , C04B24/28 , C04B28/18 , C04B103/32 , C04B103/40
CPC classification number: C04B28/188 , C04B14/30 , C04B14/307 , C04B14/308 , C04B24/286 , C04B2103/32 , C04B2103/408 , Y02P40/18 , C04B28/188 , C04B14/10 , C04B14/304 , C04B22/04 , C04B22/082 , C04B22/085 , C04B22/124 , C04B22/142
Abstract: The invention provides novel methods and novel additive compositions and use thereof in a wide range of concrete production for improving properties of concrete materials, such as durability and aestheticity. The methods and compositions of the invention may be applied in a variety of cement and concrete components in the infrastructure, construction, pavement and landscaping industries.
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公开(公告)号:US11767264B2
公开(公告)日:2023-09-26
申请号:US15933011
申请日:2018-03-22
Applicant: Solidia Technologies, Inc.
Inventor: Ahmet Cuneyt Tas
CPC classification number: C04B28/105 , B28B1/503 , B28B11/245 , C04B28/188 , C04B38/0058 , C04B38/02 , C04B40/0231
Abstract: The invention provides novel aerated composite materials made from a carbonatable calcium silicate composition, and formulations and methods of manufacture and use thereof, in particular, the use of novel additive mineral compositions in the form of magnesium, magnesium salts or magnesium oxides, to improve physical chemical properties of low density concrete materials. The low density, aerated material is comprised of calcium carbonate (CaCO3) and silica (SiO2), as cured products of carbonatable calcium silicate compositions.
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公开(公告)号:US11517874B2
公开(公告)日:2022-12-06
申请号:US14602313
申请日:2015-01-22
Applicant: Solidia Technologies, Inc.
Inventor: Larry E. McCandlish , Orlando Narine , Daniel Castoro
Abstract: Apparatus and methods for curing composite compositions that react with CO2. The apparatus in general includes an easily transportable and easily assembled curing structure, such as a plastic sheet housing supported by gas pressure and/or by mechanical supports. Apparatus for providing reagent CO2, for measuring water content and for removing water, and for controlling temperature, flow rates and flow directions through the curing structure. Examples of curing procedures and examples of cured materials in desired shapes are described.
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公开(公告)号:US11352297B2
公开(公告)日:2022-06-07
申请号:US15928881
申请日:2018-03-22
Applicant: Solidia Technologies, Inc.
Inventor: Ahmet Cuneyt Tas , Deepak Ravikumar , Jason E. Bryant
IPC: C04B9/00 , C04B28/18 , C04B24/28 , C04B14/30 , C04B28/30 , C04B14/00 , C04B16/00 , C04B24/00 , C04B7/00 , C04B9/12 , C04B28/00 , C04B28/04 , C04B103/40 , C04B103/32
Abstract: The invention provides novel methods and novel additive compositions and use thereof in a wide range of concrete production for improving properties of concrete materials, such as durability and aestheticity. The methods and compositions of the invention may be applied in a variety of cement and concrete components in the infrastructure, construction, pavement and landscaping industries.
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公开(公告)号:US10851022B2
公开(公告)日:2020-12-01
申请号:US16001516
申请日:2018-06-06
Applicant: Solidia Technologies, Inc.
Inventor: Omkar Deo , Vahit Atakan , Deepak Ravikumar , Xudong Hu , Sadananda Sahu , Surojit Gupta , Richard Riman
IPC: C04B38/02
Abstract: The invention provides novel aerated composite materials that possess excellent physical and performance characteristics of aerated concretes, and methods of production and uses thereof. These composite materials can be readily produced from widely available, low cost raw materials by a process suitable for large-scale production with improved energy consumption, desirable carbon footprint and minimal environmental impact.
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公开(公告)号:US10752545B2
公开(公告)日:2020-08-25
申请号:US15335520
申请日:2016-10-27
Applicant: Solidia Technologies, Inc.
Inventor: Vahit Atakan
IPC: C04B7/00 , C04B7/43 , C04B7/44 , C04B7/345 , C04B28/18 , C04B12/04 , C04B7/34 , C04B28/00 , C04B32/00 , C04B14/40
Abstract: The invention provides a novel, steam-assisted production methodology and associated compositions and methods of use in the manufacture of carbonatable or non-carbonatable metal silicate or metal silicate hydrate (e.g., calcium silicate or calcium silicate hydrate) compositions. These metal silicate compositions and related phases are suitable for use hydraulic, partially hydraulic or non-hydraulic cement that sets and hardens by a hydration process, a carbonation process or a combination thereof, and may be applied in a variety of concrete components in the infrastructure, construction, pavement and landscaping industries.
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公开(公告)号:US20200079695A1
公开(公告)日:2020-03-12
申请号:US16597666
申请日:2019-10-09
Applicant: Solidia Technologies, Inc.
Inventor: Francis Henn , Deepak Ravikumar , John P. Kuppler , Kenneth Smith , Oguzhan Oflaz , Dawid Zambrzycki , Vahit Atakan
Abstract: The invention provides novel paving stones and construction block composite materials and methods for preparation thereof. The paving stones and construction block composite materials can be readily produced from widely available, low cost precursor materials by a production process that involves compacting in a mold that is suitable for large-scale production. The precursor materials include calcium silicate, for example, wollastonite, and particulate filler materials which can comprise silicon dioxide-rich materials. Additives can include calcium carbonate-rich and magnesium carbonate-rich materials. Various additives can be used to fine-tune the physical appearance and mechanical properties of the composite material, such as colorants such as particles of colored materials, such as, and pigments (e.g., black iron oxide, cobalt oxide and chromium oxide). These paving stones and construction block composite materials exhibit visual patterns similar to stone as well as display compressive strength and water absorption equal to or better than that of stone.
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公开(公告)号:US10457605B2
公开(公告)日:2019-10-29
申请号:US15831135
申请日:2017-12-04
Applicant: Solidia Technologies, Inc.
Inventor: Larry E. McCandlish , Orlando Narine , Daniel Castoro , Vahit Atakan , Devin Patten , John P. Kuppler , Sean Camron Quinn
IPC: C04B35/16 , C04B26/02 , C04B35/628 , C04B22/04 , C01B33/24 , C04B24/24 , B28B1/00 , C04B20/12 , C04B28/18 , E04B5/02 , B28B7/18 , B28B11/24 , F27B5/04
Abstract: The invention provides novel articles of composite materials having hollow interior channels or passageways, or otherwise being hollowed out, and formulations and methods for their manufacture and uses. These hollow core objects are suitable for a variety of applications in construction, pavements and landscaping, and infrastructure.
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公开(公告)号:US20180311632A1
公开(公告)日:2018-11-01
申请号:US15966794
申请日:2018-04-30
Applicant: Solidia Technologies, Inc.
Inventor: John P. Kuppler , Vahit Atakan , Kenneth Smith , Xudong Hu
Abstract: The invention provides a curing system that is useful for curing materials that consume carbon dioxide as a reagent. The system has a curing chamber that contains the material to be cured and a gas that contains carbon dioxide. The system includes apparatus that can deliver carbon dioxide to displace ambient air upon loading the system, that can provide carbon dioxide as it is needed and as it is consumed, that can control carbon dioxide concentration, temperature and humidity in the curing chamber during the curing cycle and that can record and display to a user the variables that occur during the curing process. A method of curing a material which requires CO2 as a curing reagent is also described.
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公开(公告)号:US20180194693A1
公开(公告)日:2018-07-12
申请号:US15716392
申请日:2017-09-26
Applicant: Solidia Technologies, Inc.
Inventor: Sean Camron Quinn , Kenneth Michael Smith , Devin M. Patten , Xudong Hu , George Perry , Vahit Atakan , Jitendra Jain , Anuj Seth , Ahmet Cuneyt Tas , Alan Thomas Blacklock , Thomas Schuler , Christopher J. Grootenboer , Dan Castoro
CPC classification number: C04B40/0231 , B01J19/0013 , B01J19/0033 , B01J2219/00051 , B01J2219/00164 , C04B28/02 , C04B14/06 , C04B24/2647 , C04B24/38
Abstract: Apparatus and methods for improving the curing process of materials that cure under reaction with CO2 and that do not cure in the presence of water alone are described, and examples are given.
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