Andy Reisinger
Biographic Data
| ID | 6718883 |
|---|---|
| NAME | Andy Reisinger |
| GIVEN NAMES | Andy |
| FAMILY NAME | Reisinger |
| SIGNATURE | REISINGER A |
| AFFILIATIONS | New Zealand Agricultural Greenhouse Gas Research Centre |
| ORCID | 0000-0002-6631-7188 |
| VERIFIED | Yes |
| TOTAL WORKS | 11 |
| TOTAL CITATIONS | 8 |
| AUTHOR COUNT | 10 |
| EDITOR COUNT | 1 |
| FIRST PUBLICATION YEAR | 2011 |
| LATEST PUBLICATION YEAR | 2026 |
| H-INDEX | 2 |
Responsibility for emissions and mitigation capability should guide use of carbon removal offsets
Ipcc, 2023: Climate Change 2023: Synthesis Report. Contribution of Working Groups I, II and III to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Core Writing Team, H. L…
The Synthesis Report (SYR) is a stand-alone synthesis of the most policy-relevant evidence from the scientific, technical, and socio-economic literature assessed in the Sixth Assessment Report (AR6) of the Intergovernmental Panel on Climate Change (IPCC). The SYR distils and integrates the main findings of the three reports of the Working Groups of the IPCC during the AR6, and the three AR6 Special Reports into a concise document. It consists of …
Temporary overshoot: Origins, prospects, and a long path ahead
Net-zero emissions targets are vague: Three ways to fix
A framework for complex climate change risk assessment
Real-world experience underscores the complexity of interactions among multiple drivers of climate change risk and of how multiple risks compound or cascade. However, a holistic framework for assessing such complex climate change risks has not yet been achieved. Clarity is needed regarding the interactions that generate risk, including the role of adaptation and mitigation responses. In this perspective, we present a framework for three categorie…
Bridging the gap between impact assessment methods and climate science
Mitigation choices impact carbon budget size compatible with low temperature goals
Global-mean temperature increase is roughly proportional to cumulative emissions of carbon-dioxide (CO2). Limiting global warming to any level thus implies a finite CO2 budget. Due to geophysical uncertainties, the size of such budgets can only be expressed in probabilistic terms and is further influenced by non-CO2 emissions. We here explore how societal choices related to energy demand and specific mitigation options influence the size of carbo…
Carbon dioxide and climate impulse response functions for the computation of greenhouse gas metrics: A multi-model analysis
The responses of carbon dioxide (CO2) and other climate variables to an emission pulse of CO2 into the atmosphere are often used to compute the Global Warming Potential (GWP) and Global Temperature change Potential (GTP), to characterize the response timescales of Earth System models, and to build reduced-form models. In this carbon cycle-climate model intercomparison project, which spans the full model hierarchy, we quantify responses to emissio…
Impact of greenhouse gas metrics on the quantification of agricultural emissions and farm-scale mitigation strategies: A New Zealand case study
Agriculture emits a range of greenhouse gases. Greenhouse gas metrics allow emissions of different gases to be reported in a common unit called CO2-equivalent. This enables comparisons of the efficiency of different farms and production systems and of alternative mitigation strategies across all gases. The standard metric is the 100 year global warming potential (GWP), but alternative metrics have been proposed and could result in very different …
Exploring climate change uncertainties to support adaptive management of changing flood-risk
Future changes in global warming potentials under representative concentration pathways
Global warming potentials (GWPs) are the metrics currently used to compare emissions of different greenhouse gases under the United Nations Framework Convention on Climate Change. Future changes in greenhouse gas concentrations will alter GWPs because the radiative efficiencies of marginal changes in CO2, CH4 and N2O depend on their background concentrations, the removal of CO2 is influenced by climate-carbon cycle feedbacks, and atmospheric resi…
Future changes in global warming potentials under representative concentration pathways
Global warming potentials (GWPs) are the metrics currently used to compare emissions of different greenhouse gases under the United Nations Framework Convention on Climate Change. Future changes in greenhouse gas concentrations will alter GWPs because the radiative efficiencies of marginal changes in CO2, CH4 and N2O depend on their background concentrations, the removal of CO2 is influenced by climate-carbon cycle feedbacks, and atmospheric resi…
Carbon dioxide and climate impulse response functions for the computation of greenhouse gas metrics: A multi-model analysis
The responses of carbon dioxide (CO2) and other climate variables to an emission pulse of CO2 into the atmosphere are often used to compute the Global Warming Potential (GWP) and Global Temperature change Potential (GTP), to characterize the response timescales of Earth System models, and to build reduced-form models. In this carbon cycle-climate model intercomparison project, which spans the full model hierarchy, we quantify responses to emissio…
Impact of greenhouse gas metrics on the quantification of agricultural emissions and farm-scale mitigation strategies: A New Zealand case study
Agriculture emits a range of greenhouse gases. Greenhouse gas metrics allow emissions of different gases to be reported in a common unit called CO2-equivalent. This enables comparisons of the efficiency of different farms and production systems and of alternative mitigation strategies across all gases. The standard metric is the 100 year global warming potential (GWP), but alternative metrics have been proposed and could result in very different …
Exploring climate change uncertainties to support adaptive management of changing flood-risk
Mitigation choices impact carbon budget size compatible with low temperature goals
Global-mean temperature increase is roughly proportional to cumulative emissions of carbon-dioxide (CO2). Limiting global warming to any level thus implies a finite CO2 budget. Due to geophysical uncertainties, the size of such budgets can only be expressed in probabilistic terms and is further influenced by non-CO2 emissions. We here explore how societal choices related to energy demand and specific mitigation options influence the size of carbo…
Bridging the gap between impact assessment methods and climate science
Net-zero emissions targets are vague: Three ways to fix
A framework for complex climate change risk assessment
Real-world experience underscores the complexity of interactions among multiple drivers of climate change risk and of how multiple risks compound or cascade. However, a holistic framework for assessing such complex climate change risks has not yet been achieved. Clarity is needed regarding the interactions that generate risk, including the role of adaptation and mitigation responses. In this perspective, we present a framework for three categorie…
Ipcc, 2023: Climate Change 2023: Synthesis Report. Contribution of Working Groups I, II and III to the Sixth Assessment Report of the Intergovernmental Panel on Climate Change [Core Writing Team, H. L…
The Synthesis Report (SYR) is a stand-alone synthesis of the most policy-relevant evidence from the scientific, technical, and socio-economic literature assessed in the Sixth Assessment Report (AR6) of the Intergovernmental Panel on Climate Change (IPCC). The SYR distils and integrates the main findings of the three reports of the Working Groups of the IPCC during the AR6, and the three AR6 Special Reports into a concise document. It consists of …
Temporary overshoot: Origins, prospects, and a long path ahead
Responsibility for emissions and mitigation capability should guide use of carbon removal offsets
Environmental Science (9 works) · Climate change (8 works) · Climate Change Policy and Economics (8 works) · Computer Science (6 works) · Greenhouse gas (6 works) · Global warming (5 works) · Atmospheric and Environmental Gas Dynamics (4 works) · Ecology (4 works) · Environmental resource management (4 works) · Business (3 works)