Use of Advanced Oxidation Systems for Cost-Effective Emissions Reductions in the Metal Casting Industry and Beyond

The Australasian Institute of Mining and Metallurgy
F S. Cannon J C. Furness
Organization:
The Australasian Institute of Mining and Metallurgy
Pages:
5
File Size:
694 KB
Publication Date:
Jan 1, 2002

Abstract

Metal casting operations are a significant source of hazardous air pollutants. In particular, high production iron foundries emit significant quantities of volatile organic compounds (VOCs) during pouring, cooling and shakeout of iron castings made in green sand molds. End-of-the-pipeline capture and destruction methods to reduce VOC emissions add crippling costs to foundries. Alternately, the incorporation of advanced oxidants (AO) into metal casting green sand systems has been shown to reduce emissions from high production iron foundries in the US, and at the same time reduce operating costs. Cost savings are driven by the benefits of AO in clay recovery systems. Emissions reductions are the direct result of cascading AO-based reactions taking place in green sand molds. This sustainable greening of the metal casting process is a prototype for the development of other AO and non-AO process-based solutions for sustainable high temperature processing of materials. Fundamentals of AO technologies will be discussed along with the performance characteristics of AO processing systems in the metal casting industry and the breadth of other processing and remediation applications for which AO technologies have the potential to be successfully employed.
Citation

APA: F S. Cannon J C. Furness  (2002)  Use of Advanced Oxidation Systems for Cost-Effective Emissions Reductions in the Metal Casting Industry and Beyond

MLA: F S. Cannon J C. Furness Use of Advanced Oxidation Systems for Cost-Effective Emissions Reductions in the Metal Casting Industry and Beyond. The Australasian Institute of Mining and Metallurgy, 2002.

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