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Mark Reinking Phones & Addresses

  • 4385 English Oak Ct, Mason, OH 45040 (513) 304-2480
  • 9662 Fox Run Dr, Mason, OH 45040 (513) 459-0908 (513) 304-2480
  • West Des Moines, IA
  • Baton Rouge, LA
  • 2152 Sunderland Ct #202D, Naperville, IL 60565 (708) 983-5457
  • 2152 Sunderland Ct, Naperville, IL 60565
  • 1321 Modaff Rd #B10, Naperville, IL 60565
  • 3331 Steeplechase Ln #1C, Loveland, OH 45140 (513) 983-5457
  • Warren, OH
  • 18227 Creek Hollow Rd, Baton Rouge, LA 70817 (513) 304-2480

Work

Position: Building and Grounds Cleaning and Maintenance Occupations

Education

Degree: Associate degree or higher

Resumes

Resumes

Mark Reinking Photo 1

Polymer Lab Manager

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Location:
4385 English Oak Ct, Mason, OH 45040
Industry:
Chemicals
Work:
Omya
Polymer Lab Manager

Albemarle Corporation Jan 2013 - May 2016
Researcher Advisor

Lyondellbasell Jan 1989 - Oct 2012
Consulting Researcher

Phd In Inorganic/Organometallic Chemistry 1983 - 1989
Graduate Student
Education:
Purdue University
Doctorates, Doctor of Philosophy, Philosophy, Chemistry
Skills:
Polymers
Polymer Characterization
Catalysis
Polymer Chemistry
R&D
Polymer Science
Chemistry
Plastics
Product Development
Technology Transfer
Polymerization
Materials Science
Organometallic Chemistry
Polyolefins
Heterogeneous Catalysis
Polyethylene
Coatings
Analytical Chemistry
Organic Chemistry
Laboratory
Process Safety
Design of Experiments
Process Optimization
Patents
Inorganic Chemistry
Thermoplastics
Nanocomposites
Process Engineering
Resin
Rheology
Characterization
Petrochemical
Commercialization
Gas Chromatography
Nanotechnology
Chromatography
Polypropylene
Hdpe
Innovation Management
Extrusion
Nmr
Injection Molding
Raw Materials
Spectroscopy
Mark Reinking Photo 2

Mark Reinking

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Mark Reinking Photo 3

Mark Reinking

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Publications

Us Patents

Propylene Polymerization Process With Enhanced Catalyst Activity

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US Patent:
6630544, Oct 7, 2003
Filed:
Apr 18, 2002
Appl. No.:
10/125757
Inventors:
Douglas D. Klendworth - West Chester OH
Mark K. Reinking - Mason OH
Edward D. Kist - Cincinnati OH
Karen E. Meyer - Cincinnati OH
Assignee:
Equistar Chemicals, LP - Houston TX
International Classification:
C08F 442
US Classification:
5261251, 526351, 5261253, 5261231, 5261241, 502103, 502115, 502132
Abstract:
A process for polymerizing propylene is disclosed. The process involves charging propylene and about 90 to 99% of an organoaluminum cocatalyst to a reactor and heating this mixture to at least about 50Â C. This is followed by addition of a premix of 1 to 10% of the organoaluminum cocatalyst with a magnesium halide-supported Ziegler-Natta catalyst. The temperature of the reaction mixture is maintained to produce a propylene polymer. The process gives improved catalyst activity.

Use Of Silanes To Enhance Activity In Single-Site Polymerizations

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US Patent:
6642326, Nov 4, 2003
Filed:
May 3, 2002
Appl. No.:
10/137852
Inventors:
Karen E. Meyer - Cincinnati OH
Mark K. Reinking - Mason OH
Assignee:
Equistar Chemicals, LP - Houston TX
International Classification:
C08F 444
US Classification:
526134, 526128, 526160, 526170, 526943, 5263482, 5263485, 5263486
Abstract:
A process for the polymerization of olefins is disclosed. A boraaryl catalyst precursor and an activator are used in the presence of a silane modifier. A low level of silane modifier enhances the activity of the catalyst.

Process For Making Polyolefin Compositions Containing Exfoliated Clay

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US Patent:
6646072, Nov 11, 2003
Filed:
Jan 23, 2002
Appl. No.:
10/055072
Inventors:
Douglas D. Klendworth - West Chester OH
Mark K. Reinking - Mason OH
Assignee:
Equistar Chemicals, LP - Houston TX
International Classification:
C08F 416
US Classification:
526130, 526 90, 526158, 526348, 526128, 526156
Abstract:
A clay-filled polyolefin composition and process for making it are disclosed. The process involves treatment of a non-acid-treated smectite clay with a Ziegler-Natta catalyst in the presence of a hydrocarbon and subsequent polymerization of an olefin in the presence of the treated clay and an organoaluminum cocatalyst. Results indicate that filled compositions produced by this process contain exfoliated clay.

Process For Producing Olefin Polymer Composites Having Improved Melt Strength

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US Patent:
6656995, Dec 2, 2003
Filed:
Mar 12, 2002
Appl. No.:
10/096640
Inventors:
Douglas D. Klendworth - West Chester OH
Mark K. Reinking - Mason OH
Sameer D. Mehta - Mason OH
Assignee:
Equistar Chemicals, LP - Houston TX
International Classification:
C08L 334
US Classification:
524445, 524582, 524570, 524236, 523333
Abstract:
A process for producing olefin polymer composites having improved melt strength and other improved physical characteristics is provided. The process is a solution process wherein an organically modified clay is intimately incorporated, at low levels and without the use of compatibilizing agents, into an olefin polymer base resin.

Enhanced-Impact Lldpe With A Shear Modifiable Network Structure

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US Patent:
6713585, Mar 30, 2004
Filed:
Jul 31, 2000
Appl. No.:
09/629280
Inventors:
Harilaos Mavridis - Cincinnati OH
Mark K. Reinking - Mason OH
Ramesh N. Shroff - Cincinnati OH
Joel A. Mutchler - Morris IL
Charles S. Holland - Coal City IL
Keta M. Lindstrom - Channahon IL
Kiran M. Gupte - Naperville IL
Michael H. Treptau - Channahon IL
Francis M. Mirabella - Mason OH
Assignee:
Equistar Chemicals, LP - Houston TX
International Classification:
C08F11002
US Classification:
526352, 526128, 526348, 5261231, 5261243, 526143, 502116, 502115, 502125, 502103
Abstract:
The present invention provides an ethylene copolymer resin that has unique melt elastic properties not observed in ethylene copolymers heretofore known. Specifically, the ethylene copolymer resin of the present invention when in pelletized form has a reduction in melt elasticity (ER) of 10% or more to a final value of 1. 0 or less upon rheometric low shear modification or solution dissolution. Moreover, the resin of the present invention when in reactor-made form exhibits at least a partially reversible increase of 10% or more in ER when pelletizing the same. An ethylene polymerization catalyst, a process of preparing the ethylene copolymer resin and a high-impact film are also provided herein.

Preparation Of Polyethylene

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US Patent:
6727331, Apr 27, 2004
Filed:
Dec 28, 2001
Appl. No.:
10/041002
Inventors:
Mark K. Reinking - Mason OH
Harilaos Mavridis - Cincinnati OH
Assignee:
Equistar Chemicals, LP - Houston TX
International Classification:
C08F 452
US Classification:
526161, 526172, 526352, 526348, 526131, 526134
Abstract:
A polyethylene having improved rheological properties is disclosed. The polyethylene has a melt index (MI ) from about 0. 01 dg/min to about 50 dg/min and a melt strength ( ) that satisfies MI Ã 3. 5. A process for making the polyethylene is also disclosed. The process uses an azaborolinyl-containing single-site catalyst in the presence of hydrogen, where the hydrogen consumption is controlled to be less than 30%.

Method For Preparing Propylene Polymers Having Broad Molecular Weight Distribution

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US Patent:
6800703, Oct 5, 2004
Filed:
Oct 15, 2003
Appl. No.:
10/686066
Inventors:
Mark K. Reinking - Mason OH
Douglas D. Klendworth - West Chester OH
Assignee:
Equistar Chemicals, LP - Houston TX
International Classification:
C08F 464
US Classification:
5261253, 5261243, 5261249, 502116, 502118, 502125
Abstract:
A method for producing propylene polymers having a broad molecular weight distribution (MWD) is disclosed. The method uses a Ziegler catalyst and one silane donor. The silane donor is selected from vinyltrimethoxysilane or dicyclohexyldimethoxysilane. The polymers made by the method have an MWD greater than or equal to 7.

Shear Modification Of Hdpe-Clay Nanocomposites

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US Patent:
6884834, Apr 26, 2005
Filed:
Sep 19, 2002
Appl. No.:
10/247593
Inventors:
Mark K. Reinking - Mason OH, US
Karl P. Rufener - Loveland OH, US
Assignee:
Equistar Chemicals, LP - Houston TX
International Classification:
C08J003/34
US Classification:
524445, 524186, 524447, 501145, 501147
Abstract:
A method for modifying a high-density polyethylene (HDPE)-clay nanocomposite is disclosed. The method comprises shearing a melt of the nanocomposite at an effective shear rate. The modified nanocomposite shows significantly increased complex melt viscosity, storage modulus, and loss modulus.
Mark K Reinking from Mason, OH, age ~64 Get Report