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Dive into the research topics where Dale D. McClure is active.

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Featured researches published by Dale D. McClure.


Critical Reviews in Biotechnology | 2018

A potential biotechnological process for the sustainable production of vitamin K1

Thomas D.C. Tarento; Dale D. McClure; Andrea Talbot; Hubert Regtop; John R. Biffin; Peter Valtchev; Fariba Dehghani; John Kavanagh

Abstract The primary objective of this review is to propose an approach for the biosynthesis of phylloquinone (vitamin K1) based upon its known sources, its role in photosynthesis and its biosynthetic pathway. The chemistry, health benefits, market, and industrial production of vitamin K are also summarized. Vitamin K compounds (K vitamers) are required for the normal function of at least 15 proteins involved in diverse physiological processes such as coagulation, tissue mineralization, inflammation, and neuroprotection. Vitamin K is essential for the prevention of Vitamin K Deficiency Bleeding (VKDB), especially in neonates. Increased vitamin K intake may also reduce the severity and/or risk of bone fracture, arterial calcification, inflammatory diseases, and cognitive decline. Consumers are increasingly favoring natural food and therapeutic products. However, the bulk of vitamin K products employed for both human and animal use are chemically synthesized. Biosynthesis of the menaquinones (vitamin K2) has been extensively researched. However, published research on the biotechnological production of phylloquinone is restricted to a handful of available articles and patents. We have found that microalgae are more suitable than plant cell cultures for the biosynthesis of phylloquinone. Many algae are richer in vitamin K1 than terrestrial plants, and algal cells are easier to manipulate. Vitamin K1 can be efficiently recovered from the biomass using supercritical carbon dioxide extraction.


Chemical Engineering Journal | 2015

Mixing in bubble column reactors: Experimental study and CFD modeling

Dale D. McClure; Nora Aboudha; John Kavanagh; David F. Fletcher; Geoffrey W. Barton


Chemical Engineering & Technology | 2014

Development of a CFD Model of Bubble Column Bioreactors: Part Two – Comparison of Experimental Data and CFD Predictions

Dale D. McClure; John Kavanagh; David F. Fletcher; Geoffrey W. Barton


Industrial & Engineering Chemistry Research | 2014

Validation of a Computationally Efficient Computational Fluid Dynamics (CFD) Model for Industrial Bubble Column Bioreactors

Dale D. McClure; Hannah Norris; John Kavanagh; David F. Fletcher; Geoffrey W. Barton


Chemical Engineering & Technology | 2013

Development of a CFD Model of Bubble Column Bioreactors: Part One – A Detailed Experimental Study

Dale D. McClure; John Kavanagh; David F. Fletcher; Geoffrey W. Barton


Chemical Engineering & Technology | 2014

Impact of Surfactant Chemistry on Bubble Column Systems

Dale D. McClure; Julien Deligny; John Kavanagh; David F. Fletcher; Geoffrey W. Barton


Chemical Engineering Journal | 2015

Oxygen transfer in bubble columns at industrially relevant superficial velocities: Experimental work and CFD modelling

Dale D. McClure; John Kavanagh; David F. Fletcher; Geoffrey W. Barton


Chemical Engineering Research & Design | 2016

Experimental investigation into the impact of sparger design on bubble columns at high superficial velocities

Dale D. McClure; Congcong Wang; John Kavanagh; David F. Fletcher; Geoffrey W. Barton


Chemical Engineering Science | 2015

Towards a CFD model of bubble columns containing significant surfactant levels

Dale D. McClure; Hannah Norris; John Kavanagh; David F. Fletcher; Geoffrey W. Barton


Chemical Engineering & Technology | 2015

Impact of Surfactant Addition on Oxygen Mass Transfer in a Bubble Column

Dale D. McClure; Ai Chia Lee; John Kavanagh; David F. Fletcher; Geoffrey W. Barton

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