Christa Marandino
Biographic Data
| ID | 3600012 |
|---|---|
| NAME | Christa Marandino |
| GIVEN NAMES | Christa |
| FAMILY NAME | Marandino |
| SIGNATURE | MARANDINO C |
| AFFILIATIONS | GEOMAR Helmholtz Centre for Ocean Research Kiel |
| ORCID | 0000-0001-9947-4377 |
| VERIFIED | Yes |
| TOTAL WORKS | 7 |
| TOTAL CITATIONS | 3 |
| AUTHOR COUNT | 7 |
| EDITOR COUNT | 0 |
| FIRST PUBLICATION YEAR | 2012 |
| LATEST PUBLICATION YEAR | 2025 |
| H-INDEX | 1 |
Shipping fuel pathways in a changing climate
This study examines fuel use and environmental impact of shipping industry on Baltic Sea. It focuses on assessing the effects of environmental regulations and proposing decarbonisation scenarios while regulating the SOx and NOx emissions. The abatement measures and alternative fuels as replacements for high-sulphur and carbon-intensive fuels (HFO) are evaluated through technology availability, maturity, fuel price, energy mix and regulation. In t…
Surface ocean-lower atmospheric processes in the Indian Ocean
Our understanding of surface ocean and lower atmosphere processes in the Indian Ocean (IO) region shows significant knowledge gaps mainly due to the paucity of observational studies. The IO basin is bordered by landmasses and an archipelago on 3 sides with more than one-quarter of the global population dwelling along these coastal regions. Therefore, interactions between dynamical and biogeochemical processes at the ocean–atmosphere interface and…
Science, international law, and policy across the air–sea interface
The objective of this perspective article is to determine the extent to which processes operating across the air–sea interface are considered in international environmental policy. The ocean is usually important but rarely a defining feature in such policies. We will begin with a brief introduction to the existing relevant treaties and policy frameworks. The provisions within these treaties will be analyzed for instances when air–sea interactions…
Can coastal and marine carbon dioxide removal help to close the emissions gap? Scientific, legal, economic, and governance considerations
In this Policy Bridge, we present the key issues regarding the safety, efficacy, funding, and governance of coastal and marine systems in support of climate change mitigation. Novel insights into the likely potential of these systems for use in mitigating excess carbon dioxide emissions are presented. There may be potential for coastal blue carbon and marine carbon dioxide removal (mCDR) actions to impact climate change mitigation significantly o…
Perspectives on shipping emissions and their impacts on the surface ocean and lower atmosphere
Shipping is the cornerstone of international trade and thus a critical economic sector. However, ships predominantly use fossil fuels for propulsion and electricity generation, which emit greenhouse gases such as carbon dioxide and methane, and air pollutants such as particulate matter, sulfur oxides, nitrogen oxides, and volatile organic compounds. The availability of Automatic Information System (AIS) data has helped to improve the emission inv…
Surface ocean-lower atmosphere study
Priority knowledge for marine environments
Priority knowledge for marine environments
Surface ocean-lower atmosphere study
Perspectives on shipping emissions and their impacts on the surface ocean and lower atmosphere
Shipping is the cornerstone of international trade and thus a critical economic sector. However, ships predominantly use fossil fuels for propulsion and electricity generation, which emit greenhouse gases such as carbon dioxide and methane, and air pollutants such as particulate matter, sulfur oxides, nitrogen oxides, and volatile organic compounds. The availability of Automatic Information System (AIS) data has helped to improve the emission inv…
Surface ocean-lower atmospheric processes in the Indian Ocean
Our understanding of surface ocean and lower atmosphere processes in the Indian Ocean (IO) region shows significant knowledge gaps mainly due to the paucity of observational studies. The IO basin is bordered by landmasses and an archipelago on 3 sides with more than one-quarter of the global population dwelling along these coastal regions. Therefore, interactions between dynamical and biogeochemical processes at the ocean–atmosphere interface and…
Science, international law, and policy across the air–sea interface
The objective of this perspective article is to determine the extent to which processes operating across the air–sea interface are considered in international environmental policy. The ocean is usually important but rarely a defining feature in such policies. We will begin with a brief introduction to the existing relevant treaties and policy frameworks. The provisions within these treaties will be analyzed for instances when air–sea interactions…
Can coastal and marine carbon dioxide removal help to close the emissions gap? Scientific, legal, economic, and governance considerations
In this Policy Bridge, we present the key issues regarding the safety, efficacy, funding, and governance of coastal and marine systems in support of climate change mitigation. Novel insights into the likely potential of these systems for use in mitigating excess carbon dioxide emissions are presented. There may be potential for coastal blue carbon and marine carbon dioxide removal (mCDR) actions to impact climate change mitigation significantly o…
Shipping fuel pathways in a changing climate
This study examines fuel use and environmental impact of shipping industry on Baltic Sea. It focuses on assessing the effects of environmental regulations and proposing decarbonisation scenarios while regulating the SOx and NOx emissions. The abatement measures and alternative fuels as replacements for high-sulphur and carbon-intensive fuels (HFO) are evaluated through technology availability, maturity, fuel price, energy mix and regulation. In t…
Environmental Science (6 works) · Oceanography (4 works) · Business (3 works) · Coastal and Marine Management (3 works) · Geography (3 works) · Geology (3 works) · Meteorology (3 works) · Natural resource economics (3 works) · Biogeochemistry (2 works) · Chemistry (2 works)