Localizing Gaseous Fugitive Emission Sources by Combining Real-Time Optical Remote Sensing and Wind Data

Author:

Hashmonay Ram A.1,Yost Michael G.1

Affiliation:

1. a Department of Environmental Health , University of Washington , Seattle , Washington , USA

Publisher

Informa UK Limited

Subject

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

Reference8 articles.

1. Scotto, R.L.; Minnich, T.R.; Leo, M.R. A Method for Estimating VOC Emission Rates from Area Sources Using Remote Optical Sensing. In Proceedings of the U.S. Environmental Protection Agency/Air & Waste Management Association International Symposium on the Measurement of Toxic and Related Air Pollution, Raleigh, NC, 1991; p 698.

2. Minnich, T.R.; Scotto, R.L.; Leo, M.R.; Sanders, B.C.; Perry, S.H.; Pritchett, T.H. A Practical Methodology Using Open-path FTIR Spectroscopy to Generate Gaseous Fugitive-source Emission Factors at Industrial Facilities. In Proceedings of the SP-81 Optical Remote Sensing, Application to Environmental and Industrial Safety Problems, Pittsburgh, PA, 1992; p 513.

3. Milton, M.J.T.; Partridge, R.H.; Goody, B.A. Minimum Emission Rates Detectable from Landfill Sites Using Optical Integrated-Path Techniques. In Proceedings of the Air & Waste Management Association International Specialty Conference on Optical Sensing for Environmental and Process Monitoring, VIP-55; Air & Waste Management Association: Pittsburgh, PA, 1996; p 393.

4. Piccot, S.D.; Masemore, S.S.; Lewis-Bevan, W.; Ringler, E.S; Harris, D.B. “Field assessment of a new method for estimating emission rates from volume sources using open-path FTIR,” J. Air & Waste Manage. Assoc. 1996, 46, 159.

5. Piccot, S.D.; Masemore, S.S.; Ringler, E.S.; Srinivasan, S.; Kirchgessner, D.A.; Herget, W.F. “Validation of a method for estimating pollution emission rates from area sources using open-path FTIR spectroscopy and dispersion modeling techniques,” J. Air & Waste Manage. Assoc. 1994, 44, 271.

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