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公开(公告)号:US12122725B2
公开(公告)日:2024-10-22
申请号:US17612789
申请日:2020-12-11
申请人: ARDEX Group GmbH
发明人: Stephen Alan Brooks , Rüdiger Oberste-Padtberg , Jörg Sieksmeier , Hubert Motzet , Michael Pomberg
IPC分类号: C04B7/32 , C01F7/46 , C02F1/00 , C02F11/08 , C02F11/123 , C02F11/13 , C04B7/02 , C04B7/24 , C04B7/40 , C04B7/43 , C04B7/44 , C04B7/51 , C04B7/52 , C04B14/06 , C04B14/28 , C04B24/26 , C04B28/06 , C04B28/14 , F23G5/027 , F27B7/08 , F27B7/36 , C02F101/10 , C04B111/00 , C04B111/60
CPC分类号: C04B7/323 , C01F7/46 , C02F1/008 , C02F11/08 , C02F11/123 , C02F11/13 , C04B7/02 , C04B7/24 , C04B7/32 , C04B7/40 , C04B7/434 , C04B7/4423 , C04B7/51 , C04B7/52 , C04B7/525 , C04B14/06 , C04B14/28 , C04B24/2611 , C04B24/2641 , C04B28/06 , C04B28/065 , C04B28/14 , C04B28/146 , C04B28/147 , F23G5/0273 , F27B7/08 , F27B7/36 , C01P2002/72 , C02F2101/10 , C02F2209/02 , C04B2111/00637 , C04B2111/00646 , C04B2111/60 , F23G2201/20
摘要: The invention relates to a method of producing a binder comprising the steps of preparing (20) a residual material comprising amorphous alumina-rich and/or aluminium hydroxide-rich constituents, heating (30) the residual material to produce a fired material, the heating (30) of the residual material being at a temperature of >800° C.
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公开(公告)号:US20240343610A1
公开(公告)日:2024-10-17
申请号:US18299774
申请日:2023-04-13
CPC分类号: C02F1/041 , B01D1/2881 , C02F1/008 , C02F1/20 , C02F2101/101 , C02F2101/32 , C02F2103/18 , C02F2201/005 , C02F2209/03 , C02F2209/40 , C02F2209/42 , C02F2301/066
摘要: A wastewater processing system includes a compressor arranged to receive and compress wastewater vapor into a compressed wastewater, an overhead separator that receives the compressed wastewater from the compressor and separates the compresses wastewater into bottom liquid wastewater and a vapor fraction, at least one of a condensate sphere and a sour water stripper, each in fluid communication with the overhead separator, wherein the sour water stripper receives the bottom liquid wastewater from the overhead separator to receive a portion of the bottom liquid wastewater, and an overhead separator level control system interposing the overhead separator and the at least one of the condensate sphere and the sour water stripper, the overhead separator level control system being configured to control a flow of the bottom liquid wastewater from the overhead separator to the sour water stripper and maintain a system pressure.
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公开(公告)号:US20240343608A1
公开(公告)日:2024-10-17
申请号:US18201863
申请日:2023-05-25
发明人: Chih-Yuan Huang , Yi-Yun Chen
CPC分类号: C02F1/008 , C02F1/52 , G06N3/084 , C02F2209/02 , C02F2209/06 , C02F2209/11
摘要: The present invention is to optimize recommended coagulation operating parameters for water treatment. The optimization is aimed to apply Artificial Intelligence of Things for optimizing coagulation procedure with energy saved and cost reduced. The optimizing of the coagulation procedure is that the training data, such as water quality conditions, coagulant dosages, mixing speeds, etc., are used to estimate corresponding turbidity changes; and, after considering the drinking water standards and the cost of drug and energy, optimized operating parameters are found. The result shows that the accuracy of multiple nonlinear regression is high, where the root mean square difference for turbidity is 1.57 nephelometric turbidity units. In overall, the optimized coagulation procedure accurately estimates coagulation-related operating parameters based on changes in water quality.
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公开(公告)号:US20240343546A1
公开(公告)日:2024-10-17
申请号:US18300003
申请日:2023-04-13
申请人: Struktur Inc.
发明人: Peter Falt
IPC分类号: B67D1/00 , B01F23/236 , B01F23/237 , B01F33/841 , B65D43/02 , B65D51/16 , B67D1/08 , C02F1/00 , C02F9/20
CPC分类号: B67D1/0042 , B01F23/2363 , B01F23/237621 , B01F23/23764 , B01F23/23765 , B01F33/841 , B65D43/0202 , B65D51/1644 , B67D1/0014 , B67D1/0052 , B67D1/0058 , B67D1/0888 , B67D1/0894 , C02F1/008 , C02F9/20 , B01F2101/48 , B67D1/0895 , B67D2210/0001 , B67D2210/00118 , C02F1/003 , C02F1/66 , C02F1/685 , C02F2307/06 , C02F2307/10 , E03C2201/40 , E03C2201/45
摘要: Implementations of fluid modifying and dispensing systems may include a fluid modifying assembly having a fluid modification unit including a gas dosing unit configured to infuse a fluid with a gas, a filter configured to filter the fluid, and a pH regulator configured to modify a pH of the fluid. The fluid modifying assembly may include a temperature regulation system coupled to the fluid modification unit. The fluid modifying assembly may also include a dosing system coupled to the fluid modification unit. The dosing system may be configured to add one or more supplements to the fluid. The fluid modifying and dispensing system may include a fluid dispensing assembly having a faucet coupled to the fluid modifying assembly and a vessel having a lid and a base. The base of the vessel may be configured to couple directly to the faucet to fill the vessel with the fluid.
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公开(公告)号:US20240342660A1
公开(公告)日:2024-10-17
申请号:US18757499
申请日:2024-06-28
发明人: Sang Ho Lee , Young Kyu Park , Ju Young Lee
CPC分类号: B01D65/08 , B01D63/02 , B01D63/16 , B01D65/02 , C02F1/008 , C02F1/44 , B01D2315/04 , B01D2321/2058 , C02F2303/16 , C02F2303/22
摘要: Proposed is an electronic device for controlling a hollow fiber membrane fouling reduction system including an exciter controller that generates an excitation signal, an exciter module that generates vibration corresponding to the excitation signal by being connected electrically to the exciter controller, and a hollow fiber membrane module that receives the vibration generated from the exciter module, the electronic device including a vibration analysis module that receives first and second vibration values for frequencies sensed respectively from the exciter module and the hollow fiber membrane module, calculates a vibration value transmission rate for each frequency based on the first and second vibration values, and calculates an optimal frequency at which the vibration value transmission rate is highest, and an optimal sound source selection module that receives feedback of the optimal frequency and selects an optimal sound source used to generate the excitation signal, based on the optimal frequency.
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6.
公开(公告)号:US20240342656A1
公开(公告)日:2024-10-17
申请号:US18632858
申请日:2024-04-11
发明人: Shuza BINZAID , Kazi Meharajul KBIR
CPC分类号: B01D61/08 , B01D61/025 , B01D61/12 , C02F1/008 , C02F1/441 , B01D2313/243 , B01D2313/367 , B01D2313/60 , C02F2103/001 , C02F2201/009 , C02F2209/03 , C02F2209/10 , C02F2209/42
摘要: The present disclosure provides a water filtration system that meets the need for production of clean, potable water. In particular, described herein is a system comprising a Pressure Energy Transformer (PET), a Contactless Reverse Osmosis (CRO) pump, and an intelligent microcontroller-based system that provides contactless energy transfer for the production of clean drinking water.
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公开(公告)号:US12116292B2
公开(公告)日:2024-10-15
申请号:US17149248
申请日:2021-01-14
申请人: Burak Karadag
发明人: Burak Karadag
CPC分类号: C02F1/325 , C02F1/001 , C02F1/008 , C02F1/4608 , H05H1/247 , H05H1/46 , C02F2103/42 , C02F2201/3228 , C02F2301/046 , C02F2301/063 , C02F2303/04 , C02F2305/023
摘要: The invention relates to a water treatment apparatus based on plasma (ionized gas) discharge. In particular, the invention relates to the field of industrial and agricultural wastewater treatment. More particularly, the invention relates to disinfection of drinking water, and water in pools, spas and similar recreational water environments. The invention comprises a plasma reactor produces plasma discharge at low atmospheric pressure between liquid electrodes eliminating contamination of treated water by harmful nitrogen compounds and toxic substances due to electrode erosion.
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8.
公开(公告)号:US20240327247A1
公开(公告)日:2024-10-03
申请号:US18732689
申请日:2024-06-04
申请人: Truox, Inc.
发明人: Roy W. Martin
IPC分类号: C02F1/00 , C02F1/68 , C02F1/76 , C02F103/42
CPC分类号: C02F1/008 , C02F1/685 , C02F1/76 , C02F2103/42 , C02F2209/003 , C02F2209/006 , C02F2209/02 , C02F2209/06 , C02F2209/29
摘要: A system and method for controlling the remediation of aquatic facilities using at least one sanitizer sensor, a pH sensor, a temperature sensor and a chlorine dioxide sensor all interfaced with a programmable controller that is programmed to implement a remediation cycle and configured to calculate a Ct value, the sensors being in fluid contact with water of the aquatic facility, and the programmable controller is interfaced with a chemical feed system for supplying chlorine dioxide to the water.
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9.
公开(公告)号:US20240317609A1
公开(公告)日:2024-09-26
申请号:US18269713
申请日:2022-02-04
申请人: Hitachi, Ltd.
发明人: Jun TANAKA , Yasuko KOBAYASHI , Takuya KAMBAYASHI , Daisuke YAGI , Makiko UDAGAWA , Kotaro KITAMURA , Hiroki MIYAKAWA
IPC分类号: C02F1/00 , C02F11/147
CPC分类号: C02F1/008 , C02F11/147 , C02F2209/006 , C02F2209/008 , C02F2209/02 , C02F2209/44
摘要: A sludge treatment facility operation assistance navigation system acquires an operating flock state that is a flocculation flock state during operation of a sludge treatment facility, acquires an operating sludge water content that is a water content of dehydrated sludge during operation of the sludge treatment facility, selects or generates facility operation contents of a flocculation tank and a sludge dehydrator based on the operating flock state, the operating sludge water content, a desired flocculation flock state, and a desired sludge water content, and displays the facility operation contents on a display device.
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公开(公告)号:US12099926B2
公开(公告)日:2024-09-24
申请号:US17259549
申请日:2018-07-26
发明人: Eiji Imamura , Yuki Sato , Wataru Yoshida , Seiji Noda , Yohei Ueno , Nozomu Yasunaga , Go Wakamatsu , Kenta Shimoda , Takushi Kawada
CPC分类号: G06N3/08 , C02F1/008 , G06F17/18 , G16C20/70 , C02F2209/005
摘要: A water treatment plant which performs water treatment using a water treatment device includes an imaging device, a processing device, and a control device. The imaging device images a water treatment environment of the water treatment device and outputs image data obtained by imaging. The processing device causes an arithmetic device which performs an arithmetic operation using one or more calculation models generated by machine learning to execute the arithmetic operation employing the image data output from the imaging device as input data of the one or more calculation models. The control device controls the water treatment device on the basis of output information output from the arithmetic device by executing the arithmetic operation.
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