This chapter provides background information on peat and more specifically on Indonesian peatlands and their role in the global carbon cycle and summarizes information on human-induced CO2 emissions caused by peat oxidation and fires. In contrast to these so-called on-site CO2 emissions, not much was known about off-site CO2 emissions prior to the joint Indonesian–German project Science for the Protection of Indonesian Coastal Ecosystems (SPICE). Off-site CO2 emissions are CO2 emissions caused by the mobilization of peat carbon along the land–ocean continuum, which were studied by us in the framework of SPICE. Our results allowed us to establish comprehensive carbon budgets showing that peatland preservation and restoration are crucial measures to combat global warming and mitigate climate change impacts caused. e.g., by sea level rise. Furthermore, we conducted socioeconomic experiments and used the established carbon budget to demonstrate the economic conflict that arises between restoration and transformation of peatlands into plantations.
Rixen T., Wit F., Hutahaean A.A., Schlüter A., Baum A., Klemme A., Müller M., Pranowo W.S., Samiaji J. and Warneke T. (2021) 4 - Carbon cycle in tropical peatlands and coastal seas. In: Jennerjahn T.C., Rixen T., Irianto H.E. & Samiaji J. (eds.). Science for the Protection of Indonesian Coastal Ecosystems (SPICE) (pp. 83-142). 10.1016/B978-0-12-815050-4.00011-0
@inbook{Rixen2021,
Title = {4 - Carbon cycle in tropical peatlands and coastal seas},
Author = {Rixen, Tim and Wit, Francisca and Hutahaean, Andreas A. and Schlüter, Achim and Baum, Antje and Klemme, Alexandra and Müller, Moritz and Pranowo, Widodo Setiyo and Samiaji, Joko and Warneke, Thorsten},
Editor = {Jennerjahn, T.C. and Rixen, T. and Irianto, H.E. and Samiaji, J.},
Year = {2021},
Pages = {83-142},
Doi = {10.1016/B978-0-12-815050-4.00011-0},
Isbn = {978-0-12-815050-4},
Booktitle = {Science for the Protection of Indonesian Coastal Ecosystems (SPICE)},
Abstract = {This chapter provides background information on peat and more specifically on Indonesian peatlands and their role in the global carbon cycle and summarizes information on human-induced CO2 emissions caused by peat oxidation and fires. In contrast to these so-called on-site CO2 emissions, not much was known about off-site CO2 emissions prior to the joint Indonesian–German project Science for the Protection of Indonesian Coastal Ecosystems (SPICE). Off-site CO2 emissions are CO2 emissions caused by the mobilization of peat carbon along the land–ocean continuum, which were studied by us in the framework of SPICE. Our results allowed us to establish comprehensive carbon budgets showing that peatland preservation and restoration are crucial measures to combat global warming and mitigate climate change impacts caused. e.g., by sea level rise. Furthermore, we conducted socioeconomic experiments and used the established carbon budget to demonstrate the economic conflict that arises between restoration and transformation of peatlands into plantations.},
}
TY - CHAP
AU - Rixen, Tim
AU - Wit, Francisca
AU - Hutahaean, Andreas A.
AU - Schlüter, Achim
AU - Baum, Antje
AU - Klemme, Alexandra
AU - Müller, Moritz
AU - Pranowo, Widodo Setiyo
AU - Samiaji, Joko
AU - Warneke, Thorsten
ED - Jennerjahn, Tim C.
ED - Rixen, Tim
ED - Irianto, Hari Eko
ED - Samiaji, Joko
TI - 4 - Carbon cycle in tropical peatlands and coastal seas
PY - 2021
SP - 83-142
DO - 10.1016/B978-0-12-815050-4.00011-0
SN - 978-0-12-815050-4
BT - Science for the Protection of Indonesian Coastal Ecosystems (SPICE)
AB - This chapter provides background information on peat and more specifically on Indonesian peatlands and their role in the global carbon cycle and summarizes information on human-induced CO2 emissions caused by peat oxidation and fires. In contrast to these so-called on-site CO2 emissions, not much was known about off-site CO2 emissions prior to the joint Indonesian–German project Science for the Protection of Indonesian Coastal Ecosystems (SPICE). Off-site CO2 emissions are CO2 emissions caused by the mobilization of peat carbon along the land–ocean continuum, which were studied by us in the framework of SPICE. Our results allowed us to establish comprehensive carbon budgets showing that peatland preservation and restoration are crucial measures to combat global warming and mitigate climate change impacts caused. e.g., by sea level rise. Furthermore, we conducted socioeconomic experiments and used the established carbon budget to demonstrate the economic conflict that arises between restoration and transformation of peatlands into plantations.
ER -