Patents by Inventor Sharon M. Aldrich

Sharon M. Aldrich has filed for patents to protect the following inventions. This listing includes patent applications that are pending as well as patents that have already been granted by the United States Patent and Trademark Office (USPTO).

  • Patent number: 6359173
    Abstract: Methods and devices for controlling the reaction of a hydrocarbon to an acid by making phase-related adjustments are disclosed. In order to improve reaction rate and reactivity of the oxidation, a single phase at the operating temperature is attained and maintained by adjusting one or more of gaseous oxidant flow rate, pressure in the reaction zone, temperature in the reaction zone, feed rate of hydrocarbon, feed rate of solvent, feed rate of water if water is being fed, feed rate of the catalyst and other parameters. Methods and devices are also disclosed, wherein a hydrocarbon is reacted at a steady state with a gaseous oxidant to form an acid in a liquid mixture. The amount of water is maintained between a maximum level of water, over which maximum level the substantially single liquid phase is transformed to two liquid phases, and a minimum level under which catalyst precipitates.
    Type: Grant
    Filed: December 12, 1997
    Date of Patent: March 19, 2002
    Assignee: RPC Inc.
    Inventors: Sharon M. Aldrich, David C. DeCoster, Eustathios Vassiliou, Mark W. Dassel, Ader M. Rostami
  • Patent number: 6337051
    Abstract: This invention relates to monitors used in the oxidation of hydrocarbons to respective acids, which monitors are capable to detect formation of a second liquid phase in the reaction mixture. The reactions are conducted in a single liquid phase, and formation of a second liquid phase is highly undesirable. The information gathered by the detector is provided to a controller, which controller in turn takes measures to re-establish operation of the reaction in a single liquid phase.
    Type: Grant
    Filed: June 16, 1997
    Date of Patent: January 8, 2002
    Assignee: RPC Inc.
    Inventors: Ader M. Rostami, David C. DeCoster, Eustathios Vassiliou, Mark W. Dassel, Sharon M. Aldrich
  • Publication number: 20010053864
    Abstract: Methods and devices for controlling the reaction rate and/or reactivity of a hydrocarbon to an intermediate oxidation product, such as an acid, within predetermined limits, are disclosed. Control of the reaction rate and/or reactivity within predetermined limits is achieved by monitoring and controlling the oxidant consumption rate. According to the present invention, examples of ways to determine the oxidant consumption rate include, but are not limited to, monitoring the flow rates of incoming and outgoing oxidant, monitoring pressure differentials after temporarily ceasing entry and exit of gases, and monitoring the flow rates of incoming and outgoing gases, and monitoring the rates of incoming and outgoing hydrocarbon.
    Type: Application
    Filed: April 30, 2001
    Publication date: December 20, 2001
    Inventors: David C. DeCoster, Eustathios Vassiliou, Mark W. Dassel, Sharon M. Aldrich, Ader M. Rostami
  • Patent number: 6288274
    Abstract: Methods and devices for controlling the reaction rate and/or reactivity of a hydrocarbon to an intermediate oxidation product, such as an acid, within predetermined limits, are disclosed. Control of the reaction rate and/or reactivity within predetermined limits is achieved by monitoring and controlling the oxidant consumption rate. According to the present invention, examples of ways to determine the oxidant consumption rate include, but are not limited to, monitoring the flow rates of incoming and outgoing oxidant, monitoring pressure differentials after temporarily ceasing entry and exit of gases, and monitoring the flow rates of incoming and outgoing gases, and monitoring the rates of incoming and outgoing hydrocarbon.
    Type: Grant
    Filed: February 19, 1999
    Date of Patent: September 11, 2001
    Assignee: RPC Inc.
    Inventors: David C. DeCoster, Eustathios Vassiliou, Mark W. Dassel, Sharon M. Aldrich, Ader M. Rostami
  • Patent number: 6183698
    Abstract: Devices for controlling the reaction rate of a hydrocarbon to an acid or other intermediate oxidation product by pressure drop rate adjustments. The devices incorporate a reaction chamber, different means for monitoring miscellaneous parameters, means for feeding ingredients including gases, means for exiting products and gases, means for stopping the feeding and exiting of gases at predetermined time intervals, means for measuring the pressure drop rate during the period that the feeding and exiting of gases takes effect, and a controller, the function of which is to conduct adjustments in one or more of temperature, feeding rates of hydrocarbon, solvent, catalyst, promoter, and the like until the pressure drop rate and the reaction rate fall within desirable predetermined limits.
    Type: Grant
    Filed: May 12, 1998
    Date of Patent: February 6, 2001
    Assignee: RPC Inc.
    Inventors: Eustathios Vassiliou, Mark W. Dassel, David C. DeCoster, Ader M. Rostami, Sharon M. Aldrich
  • Patent number: 6037491
    Abstract: This invention relates to methods and devices of preparing acids, such as adipic acid for example, by oxidizing a hydrocarbon, such as cyclohexane for example, with a gas containing an oxidant, preferably oxygen. A respective hydrocarbon is reacted, preferably at a steady state, with a gaseous oxidant to form an acid in a liquid mixture which preferably contains a solvent, a catalyst, water, and an initiator. The ratio of solvent to hydrocarbon may be controlled in a manner to maintain in the reaction zone maximum reaction rate and/or reactivity, or reaction rate and/or reactivity within a desired range, or reaction rate and/or reactivity directed toward a desired range. In addition, the ratio of solvent to hydrocarbon is controlled in a manner to maintain in the reaction zone substantially maximum selectivity and/or yield, or selectivity and/or yield within a desired range, or selectivity and/or yield directed toward a desired range.
    Type: Grant
    Filed: July 25, 1997
    Date of Patent: March 14, 2000
    Assignee: RPC Inc.
    Inventors: Eustathios Vassiliou, Mark W. Dassel, Sharon M. Aldrich, Ader M. Rostami, David C. DeCoster
  • Patent number: 5877341
    Abstract: Methods and devices for controlling the reaction rate of a hydrocarbon to an acid or other intermediate oxidation product by pressure drop rate adjustments. The pressure drop rate measurements arc conducted at predetermined time intervals, after stopping the feeding and exiting of gases. The pressure drop at a predetermined time interval is measured or the time it takes for the pressure to drop by a certain degree. Adjustments are then made in one or more temperature, feeding rates of hydrocarbon, solvent, catalyst, promoter, and the like until the pressure drop rate and the reaction rate fall within desirable predetermined limits.
    Type: Grant
    Filed: May 12, 1998
    Date of Patent: March 2, 1999
    Assignee: Twenty-First Century Research Corporation
    Inventors: Eustathios Vassiliou, Mark W. Dassel, David C. DeCoster, Ader M. Rostami, Sharon M. Aldrich
  • Patent number: 5801273
    Abstract: Methods and devices for controlling the reaction rate of a hydrocarbon to an acid or other intermediate oxidation product by pressure drop rate adjustments. The pressure drop rate measurements are conducted at predetermined time intervals, after stopping the feeding and exiting of gases. The pressure drop at a predetermined time interval is measured or the time it takes for the pressure to drop by a certain degree. Adjustments are then made in one or more temperature, feeding rates of hydrocarbon, solvent, catalyst, promoter, and the like until the pressure drop rate and the reaction rate fall within desirable predetermined limits.
    Type: Grant
    Filed: May 21, 1997
    Date of Patent: September 1, 1998
    Assignee: Twenty-First Century Research Corporation
    Inventors: Eustathios Vassiliou, Mark W. Dassel, David C. DeCoster, Ader M. Rostami, Sharon M. Aldrich