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Carbon Management
基本信息
期刊名称 Carbon Management
CARBON MANAG
期刊ISSN 1758-3004
期刊官方网站 https://www.tandfonline.com/toc/tcmt20/current
是否OA
出版商 Taylor and Francis Ltd.
出版周期
始发年份
年文章数 54
最新影响因子 3.1(2022)  scijournal影响因子  greensci影响因子
中科院SCI期刊分区
大类学科 小类学科 Top 综述
环境科学与生态学4区 ENVIRONMENTAL SCIENCES 环境科学4区
CiteScore
CiteScore排名 CiteScore SJR SNIP
学科 排名 百分位 1.49 0.418 0.582
Environmental Science
General Environmental Science
77 / 192 60%
补充信息
自引率 17.40%
H-index 21
SCI收录状况 Science Citation Index Expanded
官方审稿时间
网友分享审稿时间 数据统计中,敬请期待。
PubMed Central (PML) http://www.ncbi.nlm.nih.gov/nlmcatalog?term=1758-3004%5BISSN%5D
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期刊投稿网址 https://mc.manuscriptcentral.com/ghgmm
收稿范围
Carbon Management is a scholarly peer-reviewed forum for insights from the diverse array of disciplines that enhance our understanding of carbon dioxide and other GHG interactions – from biology, ecology, chemistry and engineering to law, policy, economics and sociology.
The core aim of Carbon Management is it to examine the options and mechanisms for mitigating the causes and impacts of climate change, which includes mechanisms for reducing emissions and enhancing the removal of GHGs from the atmosphere, as well as metrics used to measure performance of options and mechanisms resulting from international treaties, domestic policies, local regulations, environmental markets, technologies, industrial efforts and consumer choices.
 
One key aim of the journal is to catalyse intellectual debate in an inclusive and scientific manner on the practical work of policy implementation related to the long-term effort of managing our global GHG emissions and impacts. Decisions made in the near future will have profound impacts on the global climate and biosphere. Carbon Management delivers research findings in an accessible format to inform decisions in the fields of research, education, management and environmental policy.
 
Key themes in the scope of the journal include:
  • The carbon cycle – understanding carbon management throughout the entire carbon cycle (sources, processes and sinks), including technological and engineering measures for carbon sequestration and the role of natural processes.
  • Policy planning and implementation – investigating plans and efforts to manage GHG emissions at local, regional, national and international level and different sectors.
  • Mitigation analysis – understanding, modelling, identifying, assessing and selecting appropriate policies, scenarios, technologies and business strategies.
  • GHG protocols, standards, methodologies, emission inventories, accounting and metrics – designing, applying, and understanding the limitations of different approaches used for measuring, estimating, reporting and verifying GHG emissions and removals (including issues such as boundaries, additionality, baselines, leakage, permanence, and quality management); and using different technologies for various accounting frameworks (e.g., global, national, city, programmatic, product, value chain, entity, facility, and project) and sectors (e.g., fuel combustion, buildings, agriculture, forestry, waste management).
  • Uncertainty – understanding and managing uncertainty in GHG management activities.
  • Information and communication technologies (ICTs) – developing and using data management tools for GHG emissions, removals and storage; utilization of emerging smart technologies and information networks.
Peer Review Statement 
 
All submitted manuscripts are subject to initial appraisal by the Editor, and, if found suitable for further consideration, to peer review by independent, anonymous expert referees. 

All peer review is double blind and submission is online via  ScholarOne.


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参考文献格式
编辑信息
Editors-in-Chief
Amit Garg - Indian Institute of Management, Ahmedabad, India 
Michael Gillenwater - Greenhouse Gas Management Institute, USA  

Editorial Office
Molly White - Greenhouse Gas Management Institute, USA 

Editorial  Board
E. Ackom - UNEP DTU Parnership, Denmark 
N. Bird - Joanneum Research Forschungsgesellschaft mbH, Germany
A. Bows-Larkin - University of Manchester, UK
D. Broekhoff - CAR, USA                                          
A. Brohe - C02 Logic, Belgium 
W. Burns - Forum for Climate Engineering Assessment, American University, USA 
R. De Lauretis - Institute for Environmental Protection and Research, Italy 
S. Dhakal - Asian Institute of Technology, Thailand 
R. Dunk - Manchester Metropolitan University, UK 
S. Eggleston - Global Forest Observations Initiative, Switzerland 
J. Fenhann - UNEP DTU Partnership, Denmark
C. Frey - North Caroline State University, USA 
D. Gomez - Comisión Nacional de Energía Atómica, República Argentina 
S. Gonzeales - GIZ Senior Advisor,  Chile
J. Gorte - Pax World Funds, USA
G. Grassi - Joint Research Centre of the European Commission, Italy 
P. Griffith - NASA Carbon Cycle and Ecosystems Office, USA 
A. Grubler - International Institute for Applied Systems Analysis, Austria 
K. Gurney - Arizona State University, USA 
J. Harnish - KfW Entwicklungsbank, Germany
A. Herold - Öko Institut, Berlin, Germany
N. Hultman - University of Maryland, MD, USA 
A. Kerr - E3 International / University of Edinburgh, UK
C. Kroeze - Wageningen University, Netherlands
M. Lazarus - Stockholm Environment Institute, USA
C. Le Quere - University of East Anglia, UK  
A. Michaelowa - Perspectives GmbH, Switzerland   
K. Nielsen - Aarhus University, Denmark
L.J. Nilsson - Lund University, Sweden 
N. Paciomik - Brazle Ministry of Science and Technology (Retired), Brazil
K. Paustian - Colorado State University, CO, USA
T. Pulles - Retired environmental scientist
N.H. Ravindranath - ndian Institute of Science, Bengaluru, India
D. Reay - University of Edinburgh, UK
G. Smith - GHGMI faculty, Ecofor LLC, USA
B. Stephens - National Center for Atmospheric Research, USA
M. Strogies - UBA, Germany
E. Suuberg - Brown University, USA
L. Taschini - London School of Economics/Grantham Research Institute, UK
M. Trexler - Climatographers, USA 
F. Wagner - International Institute for Applied Systems Analysis (IIASA), Austria
I. Williams - University of Southampton, UK


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