Literature DB >> 30520634

Synthesis of Urban CO2 Emission Estimates from Multiple Methods from the Indianapolis Flux Project (INFLUX).

Jocelyn C Turnbull1,2, Anna Karion3, Kenneth J Davis4, Thomas Lauvaux4, Natasha L Miles4, Scott J Richardson4, Colm Sweeney5, Kathryn McKain2,5, Scott J Lehman6, Kevin R Gurney7, Risa Patarasuk7, Jianming Liang7, Paul B Shepson8, Alexie Heimburger8, Rebecca Harvey8, James Whetstone3.   

Abstract

Urban areas contribute approximately three-quarters of fossil fuel derived CO2 emissions, and many cities have enacted emissions mitigation plans. Evaluation of the effectiveness of mitigation efforts will require measurement of both the emission rate and its change over space and time. The relative performance of different emission estimation methods is a critical requirement to support mitigation efforts. Here we compare results of CO2 emissions estimation methods including an inventory-based method and two different top-down atmospheric measurement approaches implemented for the Indianapolis, Indiana, U.S.A. urban area in winter. By accounting for differences in spatial and temporal coverage, as well as trace gas species measured, we find agreement among the wintertime whole-city fossil fuel CO2 emission rate estimates to within 7%. This finding represents a major improvement over previous comparisons of urban-scale emissions, making urban CO2 flux estimates from this study consistent with local and global emission mitigation strategy needs. The complementary application of multiple scientifically driven emissions quantification methods enables and establishes this high level of confidence and demonstrates the strength of the joint implementation of rigorous inventory and atmospheric emissions monitoring approaches.

Entities:  

Mesh:

Substances:

Year:  2018        PMID: 30520634     DOI: 10.1021/acs.est.8b05552

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  5 in total

1.  A multi-city urban atmospheric greenhouse gas measurement data synthesis.

Authors:  Logan E Mitchell; John C Lin; Lucy R Hutyra; David R Bowling; Ronald C Cohen; Kenneth J Davis; Elizabeth DiGangi; Riley M Duren; James R Ehleringer; Clayton Fain; Matthias Falk; Abhinav Guha; Anna Karion; Ralph F Keeling; Jooil Kim; Natasha L Miles; Charles E Miller; Sally Newman; Diane E Pataki; Steve Prinzivalli; Xinrong Ren; Andrew Rice; Scott J Richardson; Maryann Sargent; Britton B Stephens; Jocelyn C Turnbull; Kristal R Verhulst; Felix Vogel; Ray F Weiss; James Whetstone; Steven C Wofsy
Journal:  Sci Data       Date:  2022-06-24       Impact factor: 8.501

2.  Fluxes of Atmospheric Greenhouse-Gases in Maryland (FLAGG-MD): Emissions of Carbon Dioxide in the Baltimore, MD-Washington, D.C. area.

Authors:  D Y Ahn; J R Hansford; S T Howe; X R Ren; R J Salawitch; N Zeng; M D Cohen; B Stunder; O E Salmon; P B Shepson; K R Gurney; T Oda; I Lopez-Coto; J Whetstone; R R Dickerson
Journal:  J Geophys Res Atmos       Date:  2020       Impact factor: 4.261

3.  Comparative assessment of net CO2 exchange across an urbanization gradient in Korea based on eddy covariance measurements.

Authors:  Je-Woo Hong; Jinkyu Hong; Junghwa Chun; Yong Hee Lee; Lim-Seok Chang; Jae-Bum Lee; Keewook Yi; Young-San Park; Young-Hwa Byun; Sangwon Joo
Journal:  Carbon Balance Manag       Date:  2019-09-11

4.  Greenhouse gas observations from the Northeast Corridor tower network.

Authors:  Anna Karion; William Callahan; Michael Stock; Steve Prinzivalli; Kristal R Verhulst; Jooil Kim; Peter K Salameh; Israel Lopez-Coto; James Whetstone
Journal:  Earth Syst Sci Data       Date:  2020       Impact factor: 11.333

5.  Direct observations of CO2 emission reductions due to COVID-19 lockdown across European urban districts.

Authors:  Giacomo Nicolini; Gabriele Antoniella; Federico Carotenuto; Andreas Christen; Philippe Ciais; Christian Feigenwinter; Beniamino Gioli; Stavros Stagakis; Erik Velasco; Roland Vogt; Helen C Ward; Janet Barlow; Nektarios Chrysoulakis; Pierpaolo Duce; Martin Graus; Carole Helfter; Bert Heusinkveld; Leena Järvi; Thomas Karl; Serena Marras; Valéry Masson; Bradley Matthews; Fred Meier; Eiko Nemitz; Simone Sabbatini; Dieter Scherer; Helmut Schume; Costantino Sirca; Gert-Jan Steeneveld; Carolina Vagnoli; Yilong Wang; Alessandro Zaldei; Bo Zheng; Dario Papale
Journal:  Sci Total Environ       Date:  2022-03-19       Impact factor: 10.753

  5 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.