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公开(公告)号:US20240271515A1
公开(公告)日:2024-08-15
申请号:US18569137
申请日:2022-06-15
发明人: Travis Lee Bolt , Eric O'Reilly Sears , Jonathan Tyler Maxwell , Tiffany Louise Matthews , Travis Adair Anderson , Sandor Weaver Grimes , Scott Allen Toler , Mason SC Matlock
IPC分类号: E21B43/26 , B01F35/21 , B01F35/221 , E21B43/267
CPC分类号: E21B43/2607 , B01F35/2111 , B01F35/2114 , B01F35/22141 , E21B43/267 , B01F35/2132 , B01F35/2134
摘要: A proppant supply system can include a fluid supply system including a blender configured to receive and mix liquid and proppant to form a proppant slurry. and an electrically driven conveyor configured and arranged for direct and metered delivery of proppant to the blender. The proppant supply system can include a proppant source configured to discharge proppant to the conveyor. and a control system for controlling a speed of the conveyor, to control a rate at which proppant is delivered to the blender.
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公开(公告)号:US11883788B2
公开(公告)日:2024-01-30
申请号:US16611964
申请日:2018-05-02
申请人: BASF Coatings GmbH
发明人: Frank Joege , Bernhard Hueser , Ralf Berg , Stefan Groetsch , Jeremy Fouillet , Michael Kolbe , Jan Berg
IPC分类号: B01F35/22 , C09D7/80 , B29B7/24 , B29B7/28 , B29B7/94 , G05D11/13 , B01F23/40 , B01F35/21 , B01F35/221 , B01F101/30
CPC分类号: B01F35/2202 , B01F23/405 , B01F23/49 , B01F35/2115 , B01F35/2132 , B01F35/2133 , B01F35/2134 , B01F35/2136 , B01F35/2218 , B29B7/244 , B29B7/28 , B29B7/94 , C09D7/80 , G05D11/136 , G05D11/137 , G05D11/138 , B01F2101/30
摘要: The present invention relates to a production system for manufacturing of formulations, comprising a unit (1). The unit (1) includes a subunit (1.1) which includes a combination of a process mixer and a buffer tank, means of feeding defined amounts of feedstocks into the process mixer, a measurement unit for ascertaining properties of a part-batch of a formulation manufactured in the process mixer, an evaluation unit for determining a deviation of properties of the part-batches manufactured in the process mixer from the properties of a predefined target state, and a unit for adjusting the feed of feedstocks in view of the deviations. The present invention also relates to a process for manufacturing formulations.
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13.
公开(公告)号:US20230333578A1
公开(公告)日:2023-10-19
申请号:US18212915
申请日:2023-06-22
发明人: Kyle E. Miller
IPC分类号: G05D11/13 , F17D3/00 , B01F35/21 , C10G71/00 , B01F35/83 , B01F35/22 , B01F25/43 , B01F35/82 , G05B19/042 , B01F23/40
CPC分类号: G05D11/132 , F17D3/00 , B01F35/211 , C10G71/00 , B01F35/8311 , B01F35/2202 , B01F35/833 , G05D11/137 , B01F25/43 , B01F35/82 , B01F35/2134 , B01F35/2206 , G05B19/042 , B01F23/405 , G05B2219/25266 , G05B2219/24215 , C10G2300/308
摘要: Embodiments include systems and methods of in-line mixing of hydrocarbon liquids and/or renewable liquids from a plurality of tanks into a single pipeline based on density or gravity. According to an embodiment, a method of admixing hydrocarbon liquids from a plurality of tanks into a single pipeline to provide in-line mixing thereof includes initiating a blending process. The blending process including continuously blending two or more liquids over a period of time, each of the two or more liquids stored in corresponding tanks, each of the corresponding tanks connected, via pipeline, to a blend pipe thereby blending the two or more liquids into a blended liquid. The method further includes determining a density of each of the two or more liquids to be blended during the blending process. The method includes, in response to a determination that the blend process has not finished and after the passage of a specified time interval, determining an actual blend density of the blended liquid, via a blend sensor connected to the blend pipe, the blended liquid flowing through the blend pipe and in contact with the blend sensor, and the specified time interval less than a total duration of the blending process. The method includes determining an actual blend density of the blended liquid, via a blend sensor connected to the blend pipe, the blended liquid flowing through the blend pipe and in contact with the blend sensor, and the specified time interval less than a total duration of the blending process; comparing the actual blend density with a target blend density; and in response to a difference, based on the comparison, of the actual blend density and target blend density determining a corrected ratio based on each density of the two or more liquids, the actual blend density, and the target blend density and adjusting, via one or more flow control devices, flow of one or more of the two or more liquids, based on the corrected ratio.
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14.
公开(公告)号:US11774990B2
公开(公告)日:2023-10-03
申请号:US17247700
申请日:2020-12-21
发明人: Kyle E. Miller
IPC分类号: G05D11/13 , B01F35/22 , F17D3/00 , C10G71/00 , G05B19/042 , B01F23/40 , B01F25/43 , B01F35/82 , B01F35/21 , B01F35/83
CPC分类号: G05D11/132 , B01F23/405 , B01F25/43 , B01F35/211 , B01F35/2134 , B01F35/2202 , B01F35/2206 , B01F35/82 , B01F35/833 , B01F35/8311 , C10G71/00 , F17D3/00 , G05B19/042 , G05D11/137 , C10G2300/308 , G05B2219/24215 , G05B2219/25266
摘要: Embodiments include systems and methods of in-line mixing of hydrocarbon liquids and/or renewable liquids from a plurality of tanks into a single pipeline based on density or gravity. According to an embodiment, a method of admixing hydrocarbon liquids from a plurality of tanks into a single pipeline to provide in-line mixing thereof includes initiating a blending process. The blending process including continuously blending two or more liquids over a period of time, each of the two or more liquids stored in corresponding tanks, each of the corresponding tanks connected, via pipeline, to a blend pipe thereby blending the two or more liquids into a blended liquid. The method further includes determining a density of each of the two or more liquids to be blended during the blending process. The method includes, in response to a determination that the blend process has not finished and after the passage of a specified time interval, determining an actual blend density of the blended liquid, via a blend sensor connected to the blend pipe, the blended liquid flowing through the blend pipe and in contact with the blend sensor, and the specified time interval less than a total duration of the blending process. The method includes determining an actual blend density of the blended liquid, via a blend sensor connected to the blend pipe, the blended liquid flowing through the blend pipe and in contact with the blend sensor, and the specified time interval less than a total duration of the blending process; comparing the actual blend density with a target blend density; and in response to a difference, based on the comparison, of the actual blend density and target blend density determining a corrected ratio based on each density of the two or more liquids, the actual blend density, and the target blend density and adjusting, via one or more flow control devices, flow of one or more of the two or more liquids, based on the corrected ratio.
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公开(公告)号:US20240307596A1
公开(公告)日:2024-09-19
申请号:US18676142
申请日:2024-05-28
申请人: ISOPURE, CORP.
IPC分类号: A61M1/16 , B01F21/00 , B01F21/20 , B01F23/50 , B01F25/312 , B01F25/51 , B01F25/53 , B01F35/21 , B01F35/22 , B01F35/71 , B01F101/00 , G01N9/26
CPC分类号: A61M1/1656 , A61M1/1666 , B01F21/20 , B01F21/30 , B01F23/59 , B01F25/312 , B01F25/51 , B01F25/53 , B01F35/2113 , B01F35/2133 , B01F35/2134 , B01F35/2207 , B01F35/71731 , A61M2205/3317 , A61M2205/3331 , A61M2205/3382 , A61M2205/3592 , A61M2205/502 , A61M2205/6072 , B01F23/56 , B01F2101/2202 , G01N9/26
摘要: A system for mixing a liquid with a powder into a solution batch includes a hopper (20) into which said powder is deposited, the hopper (20) having a powder outlet (22) therein. A mix tank (60) is also provided having a liquid supply inlet (62), a recirculation inlet (64), and a solution outlet (66). A mix pump (40) that is in fluid communication with the solution outlet (66), the powder outlet (22), and the recirculation inlet (64) operates to mix and transfer the solution.
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16.
公开(公告)号:US20240269360A1
公开(公告)日:2024-08-15
申请号:US18645730
申请日:2024-04-25
发明人: Thierry EYRARD , Philippe LAFFAY , Benoit LUAIRE
IPC分类号: A61M1/16 , A61K9/00 , A61K9/08 , A61K33/14 , B01F21/00 , B01F21/10 , B01F23/50 , B01F23/53 , B01F25/50 , B01F25/52 , B01F35/21
CPC分类号: A61M1/1656 , A61K9/08 , A61K33/14 , B01F21/02 , B01F21/10 , B01F23/53 , B01F25/50 , B01F25/52 , B01F35/2117 , B01F35/2133 , B01F35/2134 , A61K9/0019 , A61M2205/3393 , B01F21/30 , B01F23/511 , B01F23/56
摘要: The invention relates to a method for manufacturing a liquid acid concentrate for hemodialysis machines, with the following steps. In a preliminary step a water source (120), an acid source (130), an electrolyte tank (140) containing a mixture of electrolytes in exactly the quantity needed for the manufacture of the liquid acid concentrate, and a sodium chloride source (150) are connected to a mixing tank (110). During Step a), the quantity of water needed for the manufacture of the batch of liquid acid concentrate is introduced into the mixing tank (110). At Step b), the quantity of acid needed for manufacture the liquid acid concentrate is introduced into the mixing tank (110), the solution is stirred until a homogeneous solution is obtained. Step c) is to repeat Sub-steps c1) and c2) until the electrolyte mixture contained in the electrolyte tank is completely dissolved. At Sub-step c1) part of the solution contained in the mixing tank (110) is transferred into the electrolyte tank (140) containing the electrolyte mixture, then at Sub-step c2) the solution contained in the electrolyte tank (140) is transferred into the mixing tank, leaving the still solid constituents in the electrolyte tank. At Step d) the quantity of sodium chloride needed to manufacture the liquid acid concentrate is introduced into the mixing tank (110). Finally, at Step e), the solution is stirred and recirculated by taking it from the bottom the mixing tank (110) and reintroducing it at the top of the mixing tank until a homogeneous liquid acid concentrate is obtained. Steps a) to d) can be performed in any order, Step a) preceding always Step c).
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公开(公告)号:US11992591B2
公开(公告)日:2024-05-28
申请号:US17360419
申请日:2021-06-28
申请人: Isopure, Corp.
IPC分类号: B01F3/12 , A61M1/16 , B01F1/00 , B01F5/04 , B01F5/10 , B01F15/00 , B01F15/02 , B01F21/00 , B01F21/20 , B01F23/50 , B01F25/312 , B01F25/51 , B01F25/53 , B01F35/21 , B01F35/22 , B01F35/71 , B01F101/00 , G01N9/26
CPC分类号: A61M1/1656 , A61M1/1666 , B01F21/20 , B01F21/30 , B01F23/59 , B01F25/312 , B01F25/51 , B01F25/53 , B01F35/2113 , B01F35/2133 , B01F35/2134 , B01F35/2207 , B01F35/71731 , A61M2205/3317 , A61M2205/3331 , A61M2205/3382 , A61M2205/3592 , A61M2205/502 , A61M2205/6072 , B01F23/56 , B01F2101/2202 , G01N9/26
摘要: A system for mixing a liquid with a powder into a solution batch includes a hopper (20) into which said powder is deposited, the hopper (20) having a powder outlet (22) therein. A mix tank (60) is also provided having a liquid supply inlet (62), a recirculation inlet (64), and a solution outlet (66). A mix pump (40) that is in fluid communication with the solution outlet (66), the powder outlet (22), and the recirculation inlet (64) operates to mix and transfer the solution.
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公开(公告)号:US11845046B2
公开(公告)日:2023-12-19
申请号:US17064795
申请日:2020-10-07
CPC分类号: B01F23/59 , B01F35/2111 , B01F35/2134
摘要: A mixing system is configured to mix and discharge a paste. The mixing system includes a base-medium subsystem that provides a base fluid-medium. The mixing system further includes an additive-medium subsystem that provides one or more additive fluid-mediums. The mixing system further includes a density-reducing medium subsystem that provides a density-reducing medium.
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公开(公告)号:US11845042B1
公开(公告)日:2023-12-19
申请号:US18191511
申请日:2023-03-28
申请人: PHILLIPS 66 COMPANY
发明人: Luke Schnefke , Victor Cedillo , Patrick David , Matt Clowe
CPC分类号: B01F35/2209 , B01F23/41 , B01F35/2134 , C10G71/00 , G05B19/416 , G05D27/02 , G05B2219/37371
摘要: A method is taught for maintaining a fluid within a tank. In this method an upper data acquisition device is operated which is capable of obtaining at least one characteristic of the fluid in a tank adjacent to the upper data acquisition device. A lower data acquisition device is also operated which is situated below the upper data acquisition device, capable of obtaining at least one characteristic of the fluid in the tank adjacent to the lower data acquisition device. A data analyzer is then utilized which is capable transmitting a data packet to the intermittent mixer. The method then automatically turns on the intermittent mixer from the data received from the data packet. Afterwards, the method automatically turns off the intermittent mixer from the data received from the data packet resulting in the at least one characteristic from the upper data acquisition device is within specifications of the at least one characteristic from the lower data acquisition device. In this method the intermittent mixer is capable of altering the fluid within the tank so that the at least one characteristic is consistent throughout the tank.
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公开(公告)号:US11752476B1
公开(公告)日:2023-09-12
申请号:US18191478
申请日:2023-03-28
申请人: PHILLIPS 66 COMPANY
发明人: Luke Schnefke , Victor Cedillo , Patrick David , Matt Clowe
IPC分类号: B01F35/00 , B01F35/222 , B01F23/41 , B01F35/213 , B01F35/214 , B01F35/22 , B01F35/221 , B01F35/21 , B01F23/40 , B01F23/47 , B01F101/00
CPC分类号: B01F35/222 , B01F23/4145 , B01F35/213 , B01F35/214 , B01F35/2209 , B01F35/2216 , B01F35/22142 , B01F23/47 , B01F23/49 , B01F35/2113 , B01F35/2115 , B01F35/2134 , B01F35/2136 , B01F2101/505
摘要: In one embodiment, the present system describes a system wherein a first fluid is within a tank. An intermittent mixer is used for agitating the first fluid within the tank. At least one data acquisition device within the tank is capable of measuring at least one characteristic within the first fluid. In the embodiment, at least one data analyzer is capable of receiving the characteristics within the first fluid, comparing the characteristics within the first fluid to the characteristics of a second fluid, generating a data packet which contains a calculated operational speed and an operational time needed for the intermittent mixer to agitate the first fluid to obtain the characteristics of the second fluid and transmitting the data packet to the intermittent mixer. In this system the intermittent mixer is capable of altering the first fluid within the tank into the second fluid.
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