System and method for formulating medical treatment effluents

    公开(公告)号:US12296313B2

    公开(公告)日:2025-05-13

    申请号:US17181766

    申请日:2021-02-22

    Abstract: A system and method for formulating a medical treatment effluent by performing plasma reactions creating a plasma area in a gas adjacent to a liquid. An embodiment of the plasma reactor includes a housing with an internal reaction chamber, first and second inlet paths to the reaction chamber, and electrodes for producing an electric field. The system may optionally further include a pre-ionization electrode and pre-ionization electric field for pre-ionizing a feed gas prior to entry into a reaction chamber. The reactor uses plasma to ionize gas adjacent with the liquid. The ionized gas reacts with the liquid to form an effluent. Exemplary medical treatments include: immunization (immuno) therapy; wound treatment; cancer treatment; and disinfectant applications.

    Plasma Device With Inductively Coupled Electromagnets

    公开(公告)号:US20250001385A1

    公开(公告)日:2025-01-02

    申请号:US18760839

    申请日:2024-07-01

    Applicant: Rimere, LLC

    Inventor: Garrett Hill

    Abstract: Systems, methods, and devices using plasma to reform a hydrocarbon feedstock are described. A hydrocarbon feedstock is introduced to a first reaction zone having a first plasma, where the first plasma increases the excitation of the hydrocarbon, which could be up to 100% of the dissociation level. The excited hydrocarbons are then introduced to a glide arc plasma, which raises the excitation levels of the hydrocarbons past the dissociation level. Microwave energy is introduced to the glide arc plasma to propagate the hybrid plasma and maintain dissociation of the hydrocarbons, allowing for filtration of particulate and capture of hydrogen and carbon. Inductive coupling to the hybrid plasma may be further used to monitor reaction conditions in the hybrid plasma and maintain desired excitation of the hydrocarbons.

    Wave inertial-force electricity generating apparatus

    公开(公告)号:US20240418143A1

    公开(公告)日:2024-12-19

    申请号:US18718748

    申请日:2022-04-22

    Applicant: Ti-Hsin WANG

    Inventor: Wen-Yen LIU

    Abstract: The present invention provides a wave inertial-force electricity generating apparatus configured to receive an energy of a wave on a water surface and including a main body unit, a mass unit, and an energy conversion unit. The main body unit includes a main body disposed on the water surface, a surrounding wall disposed at the main body and enclosing an accommodating space, and a fixed body connected to the main body, where the main body is pushed by the wave to move with respect to the fixed body, and the fixed body is configured to limit a movement range of the main body. The mass unit includes a mass body movably disposed in the accommodating space, where the mass body is pushed by the main body to move inertially in the accommodating space. The energy conversion unit includes an electricity generating module disposed at the main body and connected to the mass body, where the electricity generating module absorbs an inertial force of the mass body and converts the inertial force to electricity. Therefore, a wave force can be obtained for electricity generation while the coastline is protected.

    Methods and devices for sterilizing organic products

    公开(公告)号:US12144900B2

    公开(公告)日:2024-11-19

    申请号:US17423881

    申请日:2019-02-05

    Abstract: The invention relates to sterilizing one or more samples of an organic product placed in a chamber of a sterilization device. The method includes, introducing a specified quantity of a gaseous composition comprising a predefined proportion of ozone and carbon monoxide through at least one inlet of the chamber. The method includes, subjecting each sample with ultraviolet light and the gaseous composition for predefined time period in a controlled atmosphere maintained at 90-100% humidity level and a temperature of −10 to 5 degree Celsius within the chamber. The method includes releasing the gaseous composition through at least one outlet from the chamber upon completion of the predefined time period, while simultaneously introducing purified air into chamber through the at least one inlet, until presence of the gaseous composition in the atmosphere of the chamber reaches below a threshold value.

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