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  5. A methane emissions reduction equivalence framework for alternative leak detection and repair programs

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Article
en
2019

A methane emissions reduction equivalence framework for alternative leak detection and repair programs

0 Datasets

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en
2019
Vol 7
Vol. 7
DOI: 10.1525/elementa.369

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Daniel Zimmerle
Daniel Zimmerle

Institution not specified

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T. A. Fox
Arvind Ravikumar
Chris H. Hugenholtz
+5 more

Abstract

Fugitive methane emissions from the oil and gas sector are typically addressed through periodic leak detection and repair surveys. These surveys, conducted manually using handheld leak detection technologies, are time-consuming. To improve the speed and cost-effectiveness of leak detection, technology developers are introducing innovative solutions using mobile platforms, close-range portable systems, and permanent installations. Many of these new approaches promise faster, cheaper, or more effective leak detection than conventional methods. However, ensuring mitigation targets are achieved requires demonstrating that alternative approaches are at least as effective in reducing emissions as current approaches – a concept known as emissions reduction equivalence. Here, we propose a five-stage framework for demonstrating equivalence that combines controlled testing, simulation modeling, and field trials. The framework was developed in consultation with operators, regulators, academics, solution providers, consultants, and non-profit groups from Canada and the U.S. We present the equivalence framework and discuss challenges to implementation.

How to cite this publication

T. A. Fox, Arvind Ravikumar, Chris H. Hugenholtz, Daniel Zimmerle, Thomas E. Barchyn, Matthew R. Johnson, David Lyon, Tim Taylor (2019). A methane emissions reduction equivalence framework for alternative leak detection and repair programs. , 7, DOI: https://doi.org/10.1525/elementa.369.

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Publication Details

Type

Article

Year

2019

Authors

8

Datasets

0

Total Files

0

Language

en

DOI

https://doi.org/10.1525/elementa.369

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