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公开(公告)号:US20230383216A1
公开(公告)日:2023-11-30
申请号:US18051891
申请日:2022-11-02
申请人: Eduardo Castellanos
发明人: Eduardo Castellanos
IPC分类号: C11B9/02 , B01D11/02 , B01F23/50 , B01F23/53 , B01F27/91 , B01F27/808 , B01F31/81 , B01F35/10 , B01F35/21 , B01F35/221
CPC分类号: C11B9/02 , B01D11/0257 , B01D11/0288 , B01D11/0265 , B01F23/51 , B01F23/53 , B01F23/551 , B01F27/91 , B01F27/808 , B01F31/81 , B01F35/1452 , B01F35/2115 , B01F35/2215
摘要: A method for extracting cannabis essential oils. A housing is provided for containing trichome bearing material from a cannabis plant, the housing having a sealable opening. A rotatable impeller is disposed in the housing. A container is connected to the housing for collecting essential oils. The process for extracting cannabis essential oils includes the steps of introducing trichome bearing material from the cannabis plant into the housing, introducing water into the housing via an opening therein, and agitating the water and the trichome bearing material to separate and extract essential oils therefrom.
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公开(公告)号:US11717797B2
公开(公告)日:2023-08-08
申请号:US16028520
申请日:2018-07-06
发明人: Aaron Hirschmann , Robert Fesus
IPC分类号: B01F31/00 , B01F31/65 , A61J1/20 , F04B13/02 , B01F23/50 , B01F23/53 , B01F25/451 , B01F25/452 , B01F35/512 , B01F35/71 , B01F101/22
CPC分类号: B01F31/65 , A61J1/2089 , B01F23/50 , B01F23/53 , B01F25/4512 , B01F25/4521 , B01F35/512 , B01F35/7161 , B01F35/7163 , B01F35/717613 , F04B13/02 , B01F23/565 , B01F2101/22 , F05C2225/04 , F05C2253/12
摘要: Systems for a plastic pump/actuator capable of containing and pumping organic solvents and lubricants and having a more desirable lubricity within the system. The system has at least two cylinders, with plungers therein, oppositely disposed from each other and configured to operably connect to a pump.
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公开(公告)号:US11697124B2
公开(公告)日:2023-07-11
申请号:US17643780
申请日:2021-12-10
申请人: Benjamin Britton , Kyle Manuel
发明人: Benjamin Britton , Kyle Manuel
CPC分类号: B03B9/00 , B01D11/0207 , B01D11/0257 , B01D11/0288 , B01F23/51 , B01F23/53 , B01F27/806 , B03B5/48
摘要: A Cannabis trichome separator. At least one storage vessels are provided, each vessel having an open top and adapted to receive a plant material and chilled or ice water mixture. A mechanism for agitating the mixture is also provided. Another mechanism raises, lowers, and pivots the agitating mechanism, so the agitating mechanism can be placed over the open top of each of the at least one storage vessels. The mixture can be agitated in each of the storage vessels, seriatim. Also disclosed is a method for processing raw plant material. A plant material and chilled or ice water is introduced into each of at least one storage vessels. The agitating mechanism agitates the mixture in a first of the storage vessels, pivoting the agitating mechanism from a first position to a second position, and agitating the mixture in subsequent storage vessels, seriatim.
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公开(公告)号:US20230159666A1
公开(公告)日:2023-05-25
申请号:US17429143
申请日:2020-02-06
申请人: KEMIRA OYJ
发明人: Asko KARPPI , Perttu HEISKA , Mika SUVANTO , Matti HIETANIEMI
CPC分类号: C08B30/02 , C08B30/14 , D21H17/28 , B01F23/511 , B01F23/581 , B01F23/53 , B01F25/51 , B01F2101/47
摘要: The present invention relates to a method and an arrangement for dissolving starch. Specifically, the present invention relates to a method for dissolving starch by introducing mechanical force to at least partially gelatinized agueous starch.
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公开(公告)号:US12102970B2
公开(公告)日:2024-10-01
申请号:US14709798
申请日:2015-05-12
发明人: Rajesh Luharuka , Hau Nguyen-Phuc Pham , William Troy Huey , Nikki Morrison , Christopher Todd Shen , Avinash Ramesh , Garud Bindiganavale Sridhar , Laurent Yves Claude Coquilleau
IPC分类号: B01F23/53 , B01F23/50 , B01F25/433 , B01F27/81 , B01F33/81 , B01F101/49
CPC分类号: B01F23/53 , B01F23/59 , B01F25/4331 , B01F27/812 , B01F33/811 , B01F33/812 , B01F2101/49
摘要: A mixing unit comprising a frame, a rheology control portion, and a high-volume solids blending portion. The rheology control portion comprises means for receiving a first material from a first transfer mechanism, a dispersing/mixing system connected with the frame, and a first metering system to meter the first material from the first material receiving means to the dispersing/mixing system. The dispersing/mixing system disperses/mixes the metered first material with a fluid to form a first fluid mixture. The high-volume solids blending portion comprises means for receiving a second material from a second transfer mechanism, a solids blending system connected with the frame, and a second metering system to meter the second material from the second material receiving means to the solids blending system. The solids blending system blends the metered second material with the first fluid mixture to form a second fluid mixture.
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公开(公告)号:US12064734B2
公开(公告)日:2024-08-20
申请号:US17243298
申请日:2021-04-28
发明人: Je Yeol Lee , Ji Yun Yang , Tae Soon Park
IPC分类号: B01F27/84 , B01F23/53 , B01F27/1121 , B01F27/1123 , B01F27/113 , B01F27/192 , B01F27/90 , B01F35/221 , B01F35/30 , B01F35/71 , B01F35/75 , B01F35/92 , H01M4/04
CPC分类号: B01F27/84 , B01F23/53 , B01F27/1121 , B01F27/1123 , B01F27/113 , B01F27/192 , B01F27/90 , B01F35/22162 , B01F35/30 , B01F35/71805 , B01F35/7547 , B01F35/92 , H01M4/04
摘要: Provided is an ultra-dispersion mixer, for stirring a mixed material for producing a high-quality slurry for an electrode of a secondary battery within a short time by disposing a low-speed blade and a high-speed blade for stirring a mixed material in a chamber so as to easily and effectively disperse elements of the slurry of a secondary battery, supplied to a mixer during a procedure of preparing the slurry of a secondary battery produced by performing mixing procedures multiple times, and disposing blade parts having a plurality of stirring characteristics so as to realize various stirring characteristics in the mixed material on the high-speed blade to increase the dispersion of the mixed material while the mixed material circulates in a high-shear disperser of the chamber and to simultaneously increase the temperature of a supplied solution at the beginning of stirring of the mixed material in the chamber.
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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:US20240207799A1
公开(公告)日:2024-06-27
申请号:US18428781
申请日:2024-01-31
发明人: Liyong XU , Haibo MIAO
IPC分类号: B01F25/53 , B01F23/50 , B01F23/53 , B01F27/91 , B01F35/71 , B01F35/92 , B01F35/30 , B01F35/90 , H01M4/04
CPC分类号: B01F25/53 , B01F23/53 , B01F23/56 , B01F27/91 , B01F35/71805 , B01F35/92 , B01F2035/351 , B01F2035/352 , B01F2035/98 , H01M4/04
摘要: A slurry preparation apparatus includes a slurry preparation device and a circulation tank. The slurry preparation device includes a device body, and a first feed port, a second feed port and a first discharge port are arranged on the device body. The first feed port is used to input a solid raw material, the circulation tank includes a tank body, an input pipe and an output pipe are arranged on the tank body, the second feed port is connected to the output pipe, and the first discharge port is connected to the input pipe.
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公开(公告)号:US12005405B2
公开(公告)日:2024-06-11
申请号:US17257701
申请日:2019-07-12
申请人: DSM IP ASSETS B.V.
发明人: Peter Riebel , Kai Urban
IPC分类号: B01F23/00 , B01F23/50 , B01F23/53 , B01F27/2123 , B01F27/231 , B01F27/60 , B01F27/61 , B01F27/70 , B01F101/22
CPC分类号: B01F23/53 , B01F23/511 , B01F23/54 , B01F27/2123 , B01F27/231 , B01F27/61 , B01F27/62 , B01F27/70 , B01F2101/22
摘要: The invention relates to an apparatus for the continuous production of a particulate adsorption product, the apparatus comprising: a mixing drum having an elongated cavity for receiving a particulate adsorbent material, an adsorbent inlet and a product outlet, wherein the mixing drum is arranged such that the cavity is inclined in flow direction of the particulate material, and wherein the cavity comprises an initial transport zone adjacent to the inlet and a mixing zone following the initial transport zone; a rotating member extending through the cavity in a longitudinal direction, wherein the rotating member comprises a helical conveying blade at longitudinal positions corresponding to the initial transport zone and mixing instruments at longitudinal positions corresponding to the mixing zone; and one or more injection nozzles for injecting a liquid adsorbate to the mixing zone. The invention further relates to a process for the continuous production of a particulate adsorption product using such apparatus.
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公开(公告)号:US12000853B2
公开(公告)日:2024-06-04
申请号:US17144059
申请日:2021-01-07
发明人: Todd Swanson , Dale Koch , Hayden Splechter , Timothy Schaefer
IPC分类号: G01N35/10 , A01C23/00 , B01D19/00 , B01D21/26 , B01D29/11 , B01F23/53 , B01F23/80 , B01F25/30 , B01F25/54 , B01F27/1125 , B01F27/808 , B01F27/906 , B01F35/00 , B01F35/10 , B01F35/21 , B01F35/45 , B04B5/04 , F04B43/06 , G01G17/04 , G01N1/08 , G01N1/38 , G01N1/40 , G01N21/05 , G01N21/25 , G01N21/78 , G01N33/24 , G01N35/00 , G05B15/02 , B01F23/50 , B01F101/00 , B01F101/23
CPC分类号: G01N35/1095 , A01C23/007 , B01D19/00 , B01D21/262 , B01D29/112 , B01F23/53 , B01F23/807 , B01F23/808 , B01F25/30 , B01F25/54 , B01F27/11253 , B01F27/808 , B01F27/906 , B01F35/1452 , B01F35/187 , B01F35/2117 , B01F35/453 , B04B5/0421 , F04B43/06 , G01G17/04 , G01N1/08 , G01N1/38 , G01N1/4055 , G01N1/4077 , G01N21/05 , G01N21/251 , G01N21/78 , G01N33/24 , G01N35/00584 , G01N35/1004 , G05B15/02 , B01D2201/4092 , B01F23/581 , B01F2101/005 , B01F2101/23 , G01N2001/4061 , G01N2001/4083 , G01N2001/4088 , G01N2033/245 , G01N2035/00188 , G01N2035/00475 , G01N2035/00495 , G01N2035/00514
摘要: An automated computer-controlled sampling system and related methods for collecting, processing, and analyzing agricultural samples for various chemical properties such as plant available nutrients. The sampling system allows multiple samples to be processed and analyzed for different analytes or chemical properties in a simultaneous concurrent or semi-concurrent manner. Advantageously, the system can process soil samples in the “as collected” condition without drying or grinding. The system generally includes a sample preparation sub-system which receives soil samples collected by a probe collection sub-system and produces a slurry (i.e. mixture of soil, vegetation, and/or manure and water), and a chemical analysis sub-system which processes the prepared slurry samples for quantifying multiple analytes and/or chemical properties of the sample. The sample preparation and chemical analysis sub-systems can be used to analyze soil, vegetation, and/or manure samples.
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