Carbon dioxide mitigation potential of seaweed aquaculture beds (SABs)

© 2016, Springer Science+Business Media Dordrecht. Seaweed aquaculture beds (SABs) that support the production of seaweed and their diverse products, cover extensive coastal areas, especially in the Asian-Pacific region, and provide many ecosystem services such as nutrient removal and CO2assimilatio...

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Main Authors: Calvyn F.A. Sondak, Put O. Ang, John Beardall, Alecia Bellgrove, Sung Min Boo, Grevo S. Gerung, Christopher D. Hepburn, Dang Diem Hong, Zhengyu Hu, Hiroshi Kawai, Danilo Largo, Jin Ae Lee, Phaik Eem Lim, Jaruwan Mayakun, Wendy A. Nelson, Jung Hyun Oak, Siew Moi Phang, Dinabandhu Sahoo, Yuwadee Peerapornpis, Yufeng Yang, Ik Kyo Chung
Format: Journal
Published: 2018
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http://cmuir.cmu.ac.th/jspui/handle/6653943832/56448
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spelling th-cmuir.6653943832-564482018-09-05T03:26:27Z Carbon dioxide mitigation potential of seaweed aquaculture beds (SABs) Calvyn F.A. Sondak Put O. Ang John Beardall Alecia Bellgrove Sung Min Boo Grevo S. Gerung Christopher D. Hepburn Dang Diem Hong Zhengyu Hu Hiroshi Kawai Danilo Largo Jin Ae Lee Phaik Eem Lim Jaruwan Mayakun Wendy A. Nelson Jung Hyun Oak Siew Moi Phang Dinabandhu Sahoo Yuwadee Peerapornpis Yufeng Yang Ik Kyo Chung Agricultural and Biological Sciences © 2016, Springer Science+Business Media Dordrecht. Seaweed aquaculture beds (SABs) that support the production of seaweed and their diverse products, cover extensive coastal areas, especially in the Asian-Pacific region, and provide many ecosystem services such as nutrient removal and CO2assimilation. The use of SABs in potential carbon dioxide (CO2) mitigation efforts has been proposed with commercial seaweed production in China, India, Indonesia, Japan, Malaysia, Philippines, Republic of Korea, Thailand, and Vietnam, and is at a nascent stage in Australia and New Zealand. We attempted to consider the total annual potential of SABs to drawdown and fix anthropogenic CO2. In the last decade, seaweed production has increased tremendously in the Asian-Pacific region. In 2014, the total annual production of Asian-Pacific SABs surpassed 2.61 × 106 t dw. Total carbon accumulated annually was more than 0.78 × 106 t y−1, equivalent to over 2.87 × 106 t CO2y−1. By increasing the area available for SABs, biomass production, carbon accumulation, and CO2drawdown can be enhanced. The conversion of biomass to biofuel can reduce the use of fossil fuels and provide additional mitigation of CO2emissions. Contributions of seaweeds as carbon donors to other ecosystems could be significant in global carbon sequestration. The ongoing development of SABs would not only ensure that Asian-Pacific countries will remain leaders in the global seaweed industry but may also provide an added dimension of helping to mitigate the problem of excessive CO2emissions. 2018-09-05T03:26:27Z 2018-09-05T03:26:27Z 2017-10-01 Journal 15735176 09218971 2-s2.0-85001955843 10.1007/s10811-016-1022-1 https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85001955843&origin=inward http://cmuir.cmu.ac.th/jspui/handle/6653943832/56448
institution Chiang Mai University
building Chiang Mai University Library
country Thailand
collection CMU Intellectual Repository
topic Agricultural and Biological Sciences
spellingShingle Agricultural and Biological Sciences
Calvyn F.A. Sondak
Put O. Ang
John Beardall
Alecia Bellgrove
Sung Min Boo
Grevo S. Gerung
Christopher D. Hepburn
Dang Diem Hong
Zhengyu Hu
Hiroshi Kawai
Danilo Largo
Jin Ae Lee
Phaik Eem Lim
Jaruwan Mayakun
Wendy A. Nelson
Jung Hyun Oak
Siew Moi Phang
Dinabandhu Sahoo
Yuwadee Peerapornpis
Yufeng Yang
Ik Kyo Chung
Carbon dioxide mitigation potential of seaweed aquaculture beds (SABs)
description © 2016, Springer Science+Business Media Dordrecht. Seaweed aquaculture beds (SABs) that support the production of seaweed and their diverse products, cover extensive coastal areas, especially in the Asian-Pacific region, and provide many ecosystem services such as nutrient removal and CO2assimilation. The use of SABs in potential carbon dioxide (CO2) mitigation efforts has been proposed with commercial seaweed production in China, India, Indonesia, Japan, Malaysia, Philippines, Republic of Korea, Thailand, and Vietnam, and is at a nascent stage in Australia and New Zealand. We attempted to consider the total annual potential of SABs to drawdown and fix anthropogenic CO2. In the last decade, seaweed production has increased tremendously in the Asian-Pacific region. In 2014, the total annual production of Asian-Pacific SABs surpassed 2.61 × 106 t dw. Total carbon accumulated annually was more than 0.78 × 106 t y−1, equivalent to over 2.87 × 106 t CO2y−1. By increasing the area available for SABs, biomass production, carbon accumulation, and CO2drawdown can be enhanced. The conversion of biomass to biofuel can reduce the use of fossil fuels and provide additional mitigation of CO2emissions. Contributions of seaweeds as carbon donors to other ecosystems could be significant in global carbon sequestration. The ongoing development of SABs would not only ensure that Asian-Pacific countries will remain leaders in the global seaweed industry but may also provide an added dimension of helping to mitigate the problem of excessive CO2emissions.
format Journal
author Calvyn F.A. Sondak
Put O. Ang
John Beardall
Alecia Bellgrove
Sung Min Boo
Grevo S. Gerung
Christopher D. Hepburn
Dang Diem Hong
Zhengyu Hu
Hiroshi Kawai
Danilo Largo
Jin Ae Lee
Phaik Eem Lim
Jaruwan Mayakun
Wendy A. Nelson
Jung Hyun Oak
Siew Moi Phang
Dinabandhu Sahoo
Yuwadee Peerapornpis
Yufeng Yang
Ik Kyo Chung
author_facet Calvyn F.A. Sondak
Put O. Ang
John Beardall
Alecia Bellgrove
Sung Min Boo
Grevo S. Gerung
Christopher D. Hepburn
Dang Diem Hong
Zhengyu Hu
Hiroshi Kawai
Danilo Largo
Jin Ae Lee
Phaik Eem Lim
Jaruwan Mayakun
Wendy A. Nelson
Jung Hyun Oak
Siew Moi Phang
Dinabandhu Sahoo
Yuwadee Peerapornpis
Yufeng Yang
Ik Kyo Chung
author_sort Calvyn F.A. Sondak
title Carbon dioxide mitigation potential of seaweed aquaculture beds (SABs)
title_short Carbon dioxide mitigation potential of seaweed aquaculture beds (SABs)
title_full Carbon dioxide mitigation potential of seaweed aquaculture beds (SABs)
title_fullStr Carbon dioxide mitigation potential of seaweed aquaculture beds (SABs)
title_full_unstemmed Carbon dioxide mitigation potential of seaweed aquaculture beds (SABs)
title_sort carbon dioxide mitigation potential of seaweed aquaculture beds (sabs)
publishDate 2018
url https://www.scopus.com/inward/record.uri?partnerID=HzOxMe3b&scp=85001955843&origin=inward
http://cmuir.cmu.ac.th/jspui/handle/6653943832/56448
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