Marine carbonate mining in the Southwestern Atlantic: current status, potential impacts, and conservation actions
Sandra Vieira Paiva
Pedro Bastos Macedo Carneiro
Tatiane Martins Garcia
Tallita Cruz Lopes Tavares
Lidriana de Souza Pinheiro
Antonio Rodrigues Ximenes Neto
Tarin Cristino Montalverne
Marcelo de Oliveira Soares
Abstract
Marine carbonate sediments have economic value because of their high concentration of calcium minerals and important trace elements. However, increasing mining interest in these stocks is threatening unique ecosystems, such as rhodolith beds, which provide many ecosystem goods and services. We review the potential of the unexplored Brazilian deposits and the rising conflicts with other blue economic sectors and biodiversity hotspots. The tropical Southwestern Atlantic Ocean, particularly the Brazilian Exclusive Economic Zone, has the largest deposit of marine limestone worldwide, which is very attractive to the global industry, with reserves measured at more than 1355,157,240 tons of CaCO3 and it is especially useful as a supply for agriculture and animal nutrition. This large mining potential raises concerns regarding licenses and potential impacts, especially considering the biological and socio-economic importance of extensive rhodolith beds, which may conflict with mining. Additionally, future dredging activities will take place in vulnerable ecosystems without adequate marine spatial planning (MSP). Currently, there is no long-term scientific information on the available carbonate stocks, stock recoverability, risks to connectivity with other ecosystems (e.g., coral reefs), and the reduced provision of ecosystem services which may affect activities such as artisanal fisheries. In this context, encouraging carbonate mining without science-based information and MSP accelerates the unsustainable exploitation of this important ecosystem. This activity will contribute to the degradation of tropical marine biodiversity and threaten the food security of traditional and vulnerable human communities, which is in opposition to the Sustainable Development Goals and reaching the 2030 United Nations Agenda.
Paiva S.V., Carneiro P.B.M., Garcia T.M., Tavares T.C.L., Pinheiro L.d.S., Rodrigues Ximenes Neto A., Montalverne T.C. and Soares M.d.O. (2023) Marine carbonate mining in the Southwestern Atlantic: current status, potential impacts, and conservation actions. Marine Policy 148: 105435. 10.1016/j.marpol.2022.105435
@article{Paiva2023,
Title = {Marine carbonate mining in the Southwestern Atlantic: current status, potential impacts, and conservation actions},
Author = {Paiva, Sandra Vieira and Carneiro, Pedro Bastos Macedo and Garcia, Tatiane Martins and Tavares, Tallita Cruz Lopes and Pinheiro, Lidriana de Souza and Rodrigues Ximenes Neto, Antonio and Montalverne, Tarin Cristino and Soares, Marcelo de Oliveira},
Editor = {},
Journal = {Marine Policy},
Year = {2023},
Pages = {105435},
Volume = {148},
Doi = {10.1016/j.marpol.2022.105435},
Abstract = {Marine carbonate sediments have economic value because of their high concentration of calcium minerals and important trace elements. However, increasing mining interest in these stocks is threatening unique ecosystems, such as rhodolith beds, which provide many ecosystem goods and services. We review the potential of the unexplored Brazilian deposits and the rising conflicts with other blue economic sectors and biodiversity hotspots. The tropical Southwestern Atlantic Ocean, particularly the Brazilian Exclusive Economic Zone, has the largest deposit of marine limestone worldwide, which is very attractive to the global industry, with reserves measured at more than 1355,157,240 tons of CaCO3 and it is especially useful as a supply for agriculture and animal nutrition. This large mining potential raises concerns regarding licenses and potential impacts, especially considering the biological and socio-economic importance of extensive rhodolith beds, which may conflict with mining. Additionally, future dredging activities will take place in vulnerable ecosystems without adequate marine spatial planning (MSP). Currently, there is no long-term scientific information on the available carbonate stocks, stock recoverability, risks to connectivity with other ecosystems (e.g., coral reefs), and the reduced provision of ecosystem services which may affect activities such as artisanal fisheries. In this context, encouraging carbonate mining without science-based information and MSP accelerates the unsustainable exploitation of this important ecosystem. This activity will contribute to the degradation of tropical marine biodiversity and threaten the food security of traditional and vulnerable human communities, which is in opposition to the Sustainable Development Goals and reaching the 2030 United Nations Agenda.},
}
TY - JOUR
AU - Paiva, Sandra Vieira
AU - Carneiro, Pedro Bastos Macedo
AU - Garcia, Tatiane Martins
AU - Tavares, Tallita Cruz Lopes
AU - Pinheiro, Lidriana de Souza
AU - Rodrigues Ximenes Neto, Antonio
AU - Montalverne, Tarin Cristino
AU - Soares, Marcelo de Oliveira
TI - Marine carbonate mining in the Southwestern Atlantic: current status, potential impacts, and conservation actions
T2 - Marine Policy
PY - 2023
SP - 105435
VL - 148
DO - 10.1016/j.marpol.2022.105435
AB - Marine carbonate sediments have economic value because of their high concentration of calcium minerals and important trace elements. However, increasing mining interest in these stocks is threatening unique ecosystems, such as rhodolith beds, which provide many ecosystem goods and services. We review the potential of the unexplored Brazilian deposits and the rising conflicts with other blue economic sectors and biodiversity hotspots. The tropical Southwestern Atlantic Ocean, particularly the Brazilian Exclusive Economic Zone, has the largest deposit of marine limestone worldwide, which is very attractive to the global industry, with reserves measured at more than 1355,157,240 tons of CaCO3 and it is especially useful as a supply for agriculture and animal nutrition. This large mining potential raises concerns regarding licenses and potential impacts, especially considering the biological and socio-economic importance of extensive rhodolith beds, which may conflict with mining. Additionally, future dredging activities will take place in vulnerable ecosystems without adequate marine spatial planning (MSP). Currently, there is no long-term scientific information on the available carbonate stocks, stock recoverability, risks to connectivity with other ecosystems (e.g., coral reefs), and the reduced provision of ecosystem services which may affect activities such as artisanal fisheries. In this context, encouraging carbonate mining without science-based information and MSP accelerates the unsustainable exploitation of this important ecosystem. This activity will contribute to the degradation of tropical marine biodiversity and threaten the food security of traditional and vulnerable human communities, which is in opposition to the Sustainable Development Goals and reaching the 2030 United Nations Agenda.
ER -