GENE H ZAID
Pilots at Broadway Ave, Sterling, KS

License number
Kansas A5022995
Issued Date
Aug 2015
Expiration Date
Aug 2017
Category
Airmen
Type
Authorized Aircraft Instructor
Address
Address
205 S Broadway Ave, Sterling, KS 67579

Professional information

Gene Zaid Photo 1

Synthesis Of Dialkyl Carbonates

US Patent:
6452036, Sep 17, 2002
Filed:
May 2, 2002
Appl. No.:
10/139409
Inventors:
Gene H. Zaid - Sterling KS
Beth Ann Wolf - Hutchinson KS
Assignee:
Jacam Chemicals, L.L.C. - Sterling KS
International Classification:
C07C 6996
US Classification:
558277
Abstract:
The invention generally concerns methods for the synthesis of dialkyl carbonates, and more specifically dimethyl carbonate (DMC) and diethyl carbonate (DEC). Methods according to the invention generally comprise reacting an alcohol or diol, a base and a halogen in the presence of an amine salt catalyst thereby forming a first intermediate. The first intermediate is reacted with carbon monoxide forming a second intermediate which then reacts with the alcohol or diol in the presence of the amine salt catalyst forming the dialkyl carbonate product.


Gene Zaid Photo 2

Process For In Situ Generation Of Chlorine Dioxide In Oil And Gas Well Formations

US Patent:
6431279, Aug 13, 2002
Filed:
Jul 14, 2000
Appl. No.:
09/616393
Inventors:
Gene H. Zaid - Sterling KS
Donald W. Sanders - Sterling KS
Assignee:
Jacam Chemicals, L.L.C. - Sterling KS
International Classification:
E21B 3700
US Classification:
166263, 166300, 1663051, 166312, 507929
Abstract:
An improved method for the chlorine dioxide treatment of oil and/or gas well bores is provided, which eliminates the need for costly and complex chlorine dioxide-generating equipment and yields very high concentrations of chlorine dioxide down hole. The preferred method involves the introduction of reactant(s) into a well and causing a reaction to generate chlorine dioxide in situ. Chlorite and hypochlorite ion sources (e. g. , sodium chlorite and sodium hypochlorite) are introduced into the well along with an acid. The well may then be flushed with water to force the reactants and chloride dioxide downwardly to the well formation.


Gene Zaid Photo 3

Pipeline Treatment Composites

US Patent:
6213214, Apr 10, 2001
Filed:
Feb 19, 1999
Appl. No.:
9/253111
Inventors:
Gene H. Zaid - Sterling KS
Beth Ann Wolf - Hutchinson KS
Assignee:
Jacam Chemicals L.L.C.
International Classification:
E21B 3700, E21B 4102, E21B 4302
US Classification:
166309
Abstract:
Solid, slowly dispersible well treatment composites are provided which have a sufficiently high melting point to prevent melting of the composite in hot weather. The composites have a low solubility and high specific gravity compared to prior art treatment agents; thus the composites readily sink in well and pipeline fluids and slowly release treatment ingredients over time, depending on the downhole and pipeline conditions. The composites include a nonylphenol ethoxylate having at least about 50 moles of ethylene oxide per mole of nonylphenol and a fatty acid amide having from 14-20 carbon atoms. Preferably, the composites further include a weighting agent and active ingredients selected from the group consisting of corrosion inhibitors, scale inhibitors, bactericides, scale converters, foaming agents, and mixtures thereof. In one embodiment, the composites are spherical in shape and are passed through pipelines for maintenance and treatment of the pipelines.


Gene Zaid Photo 4

Pipeline Treatment Composites

US Patent:
6206103, Mar 27, 2001
Filed:
Jul 29, 1999
Appl. No.:
9/363615
Inventors:
Gene H. Zaid - Sterling KS
Beth Ann Wolf - Hutchinson KS
Assignee:
JACAM Chemicals L.L.C. - Sterling KS
International Classification:
E21B37/00;41/02;43/22
US Classification:
166309
Abstract:
Solid, slowly dispersible well treatment composites are provided which have a sufficiently high melting point to prevent melting of the composite in hot weather. The composites have a low solubility and high specific gravity compared to prior art treatment agents; thus the composites readily sink in well and pipeline fluids and slowly release treatment ingredients over time, depending on the downhole and pipeline conditions. The composites include a compound selected from the group consisting of nonylphenol ethoxylates having at least about 50 moles of ethylene oxide per mole of nonylphenol, fatty acid amides having from 14-20 carbon atoms, and mixtures thereof. Preferably, the composites further include a weighting agent and active ingredients selected from the group consisting of corrosion inhibitors, scale inhibitors, bactericides, scale converters, foaming agents, and mixtures thereof. In one embodiment, the composites are spherical in shape and are passed through pipelines for maintenance and treatment of the pipelines.


Gene Zaid Photo 5

Methods And Compositions For Removing Sulfur From Liquid Hydrocarbons

US Patent:
2009023, Sep 17, 2009
Filed:
May 20, 2009
Appl. No.:
12/469465
Inventors:
Gene H. Zaid - Sterling KS, US
Beth Ann Wolf - Hutchinson KS, US
Gary W. Zorn - Ellinwood KS, US
Assignee:
JACAM CHEMICALS, LLC - Sterling KS
International Classification:
C10G 29/20, C10G 17/02, C09K 3/32
US Classification:
208219, 208236, 252189
Abstract:
Improved desulfurization compositions are provided for removing substantial fractions of sulfur, sulfur complexes, and sulfur compounds from liquid hydrocarbons such as crude oil and fuels. The preferred compositions comprise respective quantities of an alkylphenol ethoxylate, an amine, and an alkali metal nitrite. The compositions may be contacted with liquid hydrocarbons to achieve high levels of desulfurization.


Gene Zaid Photo 6

Methods And Dosage Forms For The Treatment Of Human Cancers

US Patent:
8039025, Oct 18, 2011
Filed:
Jun 9, 2011
Appl. No.:
13/157249
Inventors:
Gene H. Zaid - Sterling KS, US
Thomas W. Burgoyne - Wichita KS, US
Beth Ann Wolf - Hutchison KS, US
Assignee:
Life Plus, LLC - Sterling KS
International Classification:
A61K 36/00
US Classification:
424725
Abstract:
Methods for the treatment of human cancers, daily dosage forms for cancer patients, and methods of formulating the dosage forms are provided wherein the daily dosage form contains from about 10-6,000 mg of each of β-sitosterol, isovanillin, and linolenic acid. Preferably, the dosage forms are formulated by first creating an aqueous decoction of Boiss, followed by fortification of the decoction with additional quantities of β-sitosterol, isovanillin, and linolenic acid.


Gene Zaid Photo 7

Modified Epoxy-Amine Compositions For Oil Field Uses

US Patent:
7811974, Oct 12, 2010
Filed:
May 5, 2010
Appl. No.:
12/774290
Inventors:
Gene H. Zaid - Sterling KS, US
Beth Ann Wolf - Hutchinson KS, US
Assignee:
JaCam Chemical Company, Inc. - Sterling KS
International Classification:
C09K 8/42, E21B 33/14
US Classification:
507219, 166285, 166292, 166295, 166300, 1663051, 507239, 507248
Abstract:
Compressible and resilient sealing compositions for injection into oil or gas wells are provided, which are capable of forming effective seals adjacent well casings even at elevated downhole temperatures. The compositions comprise an epoxy component present in a predominant weight percentage, including an epoxy resin and a glycidyl ether modifier, as well as additional components rendering the cured compositions both compressive and resilient. The compositions are used as a partial or complete substitute for casing cements, and can be used to good effect with expandable casing installations or for sealing casing breaks. High set-up temperature (220-300° F. ) compositions preferably include an ethoxylated alkyl (C10-C20) monoamine or diamine, and alkyl pyridine quaternary ammonium components.


Gene Zaid Photo 8

Methods And Dosage Forms For The Treatment Of Human Cancers

US Patent:
2012010, May 3, 2012
Filed:
Jan 11, 2012
Appl. No.:
13/348425
Inventors:
Gene H. Zaid - Sterling KS, US
Thomas W. Burgoyne - Wichita KS, US
Beth Ann Wolf - Hutchison KS, US
Assignee:
Life Plus, LLC - Sterling KS
International Classification:
A61K 31/56, A61P 35/00
US Classification:
514171
Abstract:
Methods for the treatment of human cancers, daily dosage forms for cancer patients, and methods of formulating the dosage forms are provided wherein the daily dosage form contains from about 10-6,000 mg of each of β-sitosterol, isovanillin, and linolenic acid. Preferably, the dosage forms are formulated by first creating an aqueous decoction of Boiss, followed by fortification of the decoction with additional quantities of β-sitosterol, isovanillin, and linolenic acid.


Gene Zaid Photo 9

Dual Use Well Treatment Composition

US Patent:
2010013, Jun 3, 2010
Filed:
Dec 3, 2008
Appl. No.:
12/327733
Inventors:
Beth Ann Wolf - Hutchinson KS, US
Gene H. Zaid - Sterling KS, US
Assignee:
JACAM CHEMICALS, LLC - Sterling KS
International Classification:
C09K 8/532
US Classification:
507236
Abstract:
Stabilized sulfide control compositions for oil well and related uses are provided which include a first ingredient selected from the group consisting of tetra (hydroxymethyl) phosphine (THP) or a salt thereof (THPS) and an amino phosophono chelant. The compositions are stabilized against cold-weather crystal formation and deposition by the presence of a morpholine-based stabilizing agent. Preferred compositions include the sulfate salt of THP, diethylenetriamine penta (methylenephosophonic acid) sodium salt, and morpholine.


Gene Zaid Photo 10

Method Of Removing Arsenic From Hydrocarbons

US Patent:
8211294, Jul 3, 2012
Filed:
Mar 21, 2012
Appl. No.:
13/425581
Inventors:
Gene H. Zaid - Sterling KS, US
Beth Ann Wolf - Hutchinson KS, US
Assignee:
JaCam Chemicals, LLC - Sterling KS
International Classification:
C10G 21/20, C10G 21/16
US Classification:
208251R, 208290, 208326
Abstract:
Improved methods for removing arsenic from starting liquid hydrocarbons are provided which comprise contacting the hydrocarbons with a composition containing a triazine component and a glycol ether component, allowing the composition to react with the arsenic to create a treated hydrocarbon fraction and an arsenic-rich fraction, and separating the treated fraction from the arsenic-rich fraction. Preferably, the treating composition also includes an alcohol, and is used at a level of from about 1-10,000 ppm.