Atmospheric Particulate Emissions from Dry Abrasive Blasting Using Coal Slag

Author:

Kura Bhaskar1,Kambham Kalpalatha1,Sangameswaran Sivaramakrishnan1,Potana Sandhya2

Affiliation:

1. a Department of Civil and Environmental Engineering , University of New Orleans , New Orleans , LA , USA

2. b Eco-Systems, Inc , Houston , TX , USA

Publisher

Informa UK Limited

Subject

Management, Monitoring, Policy and Law,Waste Management and Disposal

Reference23 articles.

1. U.S. Army Corps of Engineers. Painting: New Construction and Maintenance, Chapter 7. Surface Preparation; EM 1110-2-3400; U.S. Army Corps of Engineers: Washington, DC, 1995, pp 4-15.

2. U.S. Environmental Protection Agency. Emission Factor Documentation for AP-42 Section 13.2.6 Abrasive Blasting Final Report; EPA-Contract 68-D2-0159; Work Assignment No. 4-02; MRI Project No. 4604-0; U.S. Environmental Protection Agency: Washington, DC, 1997.

3. The National Shipbuilding Research Program. Ultra-High Pressure Water Blasting Project; Final Project Results Summary; Maritech-ASE; Agreement No: 2000932; The National Shipbuilding Research (NSRP-)Program: Charleston, SC, 2002.

4. National Institute for Occupational Safety and Health. Evaluation of Substitute Materials for Silica Sand in Abrasive Blasting; National Institute for Occupational Safety and Health: Atlanta, GA, 1998.

5. Conroy, L.M.; Menezes-Lindsay, R.M.; Sullivan, P.M.; Cali, S.; Forst, L. Lead, Chromium, and Cadmium Exposure during Abrasive Blasting; Arch. Environ. Health, 1996, 51, 95-99.

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