Determinants of agricultural emissions
Panel data evidence from a global sample
Bibliographic Data
| ID | 21691057 |
|---|---|
| Authors | Canh Phuc Nguyen (0000-0001-8467-5010, University of Economics Ho Chi Minh City), Thai‐Ha Le (0000-0003-1158-7102, IPAG Business School, corresponding author), Christophe Schinckus (0000-0002-0977-7428, Taylor's University), Thanh Dinh Su (0000-0003-2344-6315, University of Economics Ho Chi Minh City) |
| Year | 2021 |
| Volume | 26 |
| Issue | 2 |
| Pages | 109-130 |
| Publication date | 2021-04-01 |
| Peer Reviewed | Yes |
| Open Access | Yes |
| Type | ARTICLE |
| Venue | Environment and Development Economics (JOURNAL) |
| Journal identifiers | ISSN: 1355-770X • E-ISSN: 1469-4395 |
| Publisher | Cambridge University Press (CUP) (PUBLISHER) |
| DOI | 10.1017/s1355770x20000315 |
| OpenAlex | W3081905461 |
| Language | EN |
| Citations received | 5 |
| References cited | 56 |
Using the panel data of 89 economies from 1995–2012, this study examines the major drivers of agricultural emissions while considering affluence, energy intensity, agriculture value added and economic integration. We find long-run cointegration among the variables. Furthermore, our empirical results based on a dynamic fixed effects autoregressive distributed lag model show that the increases in income and economic integration – proxied by trade and foreign direct investment (FDI) – are the major contributors to higher greenhouse gas (GHG) emissions from agriculture in the short run. Additionally, the increases in income, agriculture value added and energy consumption are the major drivers of agricultural emissions in the long run. Notably, trade openness and FDI inflows have significantly negative effects on GHG emissions from agriculture in the long run. These results apply to methane and nitrous oxide emissions. The empirical findings vary across three subsamples of countries at different development stages
Agricultural economics · Agriculture · Cointegration · Distributed lag · Econometrics · Economics · Foreign direct investment · Geography · Greenhouse gas · International economics · Macroeconomics · Natural resource economics · Openness to experience · Panel data · Climate Change Policy and Economics · Energy, Environment, Economic Growth · Environmental Impact and Sustainability · Ecology
Does agriculture, forests, and energy consumption foster the carbon emissions and ecological footprint? fresh evidence from BRICS economies
Do Land Resources, Agriculture Exports, and Agriculture Growth Induce Agriculture‐Related Greenhouse Gas Emissions
Over two decades of severe deforestation
Estimating and mitigating greenhouse gas emissions from agriculture in West Africa
New evidence on the determinants of agri-food GHG emissions in low and middle-income countries
Estimating long-run relationships from dynamic heterogeneous panels
Critical Values for Cointegration Tests in Heterogeneous Panels with Multiple Regressors
Trade openness and environmental quality
Effects of population and affluence on CO 2 emissions
Do urbanization and industrialization affect energy intensity in developing countries?
An Autoregressive Distributed-Lag Modelling Approach to Cointegration Analysis
Multivariate Granger causality between CO2 emissions, energy consumption, FDI (foreign direct investment) and GDP (gross domestic product)
The impact of trade openness on global carbon dioxide emissions
New Simple Tests for Panel Cointegration
The effects of FDI, economic growth and energy consumption on carbon emissions in Asean-5
Forest, agriculture, renewable energy, and CO2 emission
Impact of Population Growth
Spurious regression and residual-based tests for cointegration in panel data
A simple panel unit root test in the presence of cross‐section dependence
Low Emission Development Strategies in Agriculture. An Agriculture, Forestry, and Other Land Uses (Afolu) Perspective
The Faostat database of greenhouse gas emissions from agriculture
Agricultural production and greenhouse gas emissions from world regions—The major trends over 40 years
Reducing greenhouse gas emissions from agriculture
Analyzing impact factors of CO2 emissions using the STIRPAT model
| Unique citing works | 5 |
|---|---|
| Citations per year | 1,25 |
| Citation span | 2022 - 2026 (5) |
| Citation velocity | current |
| Highly cited | No |
| Citation types | Neutral: 4 |