125
References
Abo K, Sugimatsu K, Hori M, Yoshida G, Shimabukuro H, Yagi H, Nakayama A, Tarutani K
(2018) Quantifying the fate of captured carbon: from seagrass meadow to deep sea. In: Kuwae
T, Hori M (eds) Blue carbon in shallow coastal ecosystems: carbon dynamics, policy, and
implementation. Springer, Singapore, pp 251–271
Akimoto Y, Matsumura T (2010) Available past information on seaweed bed distribution and
changes in seaweed bed area in Japanese coastal waters. In: Fujita D, Murase N, Kuwahara
H (eds) Monitoring and maintenance of seaweed beds. Seizando-Shoten, Tokyo, pp 17–24 (in
Japanese)
Duarte CM, Chiscano CL (1999) Seagrass biomass and production: a reassessment. Aquat Bot
65:159–174
Endo T, Otani S (2018) Chapter 8. Carbon storage in tidal flats. In: Kuwae T, Hori M (eds) Blue
carbon in shallow coastal ecosystems: carbon dynamics, policy, and implementation. Springer,
Singapore, pp 129–151
Environmental Agency, Marine Parks Center of Japan (1994) The report of the marine biotic environment survey in the 4th National Survey on the Natural Environment, vol 2. Algal and seagrass beds (in Japanese)
Fisheries Agency (2015) Isoyake Taisaku Guidelines (Revised edition) http://www.jfa.maff.go.jp/j/
gyoko_gyozyo/g_hourei/pdf/isoyake1.pdf. Accessed 1 Apr 2017 (in Japanese)
Fisheries Agency, Marino-Forum 21 (2007) Natural regeneration guidelines for eelgrass (in
Japanese)
Forestry Agency (2015) http://www.rinya.maff.go.jp/j/kikaku/hakusho/26hakusyo/pdf/1hyousi.
pdf. Accessed 1 Apr 2017 (in Japanese)
Hasegawa N, Hori M, Mukai H (2007) Seasonal shifts in seagrass bed primary producers in a
cold-temperate estuary: dynamics of eelgrass Zostera marina and associated epiphytic algae.
Aquat Bot 86:337–345
Hasegawa N, Yoshida G, Hori M, Tarutani K, Nakaoka M, Watanabe, K (2013) Supplementary
information: collection and arrangement of past findings concerning eelgrass. Project report
“Development of technology for improving carbon sinks and absorption capacity of seaweed
beds and tidal flats”. Fisheries Research Agency, Atmosphere and Ocean Research Institute of
the University of Tokyo, Field Science Center for Northern Biosphere of Hokkaido University,
pp 99–103 (in Japanese)
Hori M, Hamaoka H, Yoshida G (2014) Survey and implementation of national evaluation of carbon absorption amount of seaweed bed/tidal flat. Project report “Development of technology
for improving carbon sinks and absorption capacity of seaweed beds and tidal flats”. Fisheries
Research Agency, Atmosphere and Ocean Research Institute of the University of Tokyo, Field
Science Center for Northern Biosphere of Hokkaido University, pp 51–59 (in Japanese)
Inoue T (2018) Carbon sequestration in mangroves. In: Kuwae T, Hori M (eds) Blue carbon in shallow coastal ecosystems: carbon dynamics, policy, and implementation. Springer, Singapore,
pp 73–99
Kawashima S (2004) Kombu. In: Ohno M (ed) Biology and technology of economic seaweeds.
Uchida Rokakuho Publishing Co Ltd, Tokyo, pp 59–85 (in Japanese)
Krause-Jensen D, Duarte CM (2016) Substantial role of macroalgae in marine carbon sequestration. Nat Geosci 9:737–742
Kumamoto Prefectural Fisheries Research Center (2010) Technical report for fiscal 2009.
Kumamoto Prefectural Fisheries Research Center (in Japanese)
Kurashima A (2010) Productivity of Eisenia and Ecklonia bed. In: Fujita D, Murase N, Kuwahara
H (eds) Monitoring and maintenance of seaweed beds. Seizando-Shoten, Tokyo, pp 115–120
(in Japanese)
Kuwae T, Kanda J, Kubo A, Nakajima F, Ogawa H, Sohma A, Suzumura M (2018) CO 2 uptake
in the shallow coastal ecosystems affected by anthropogenic impacts. In: Kuwae T, Hori M
(eds) Blue carbon in shallow coastal ecosystems: carbon dynamics, policy, and implementation. Springer, Singapore, pp 295–319
4 Carbon Sequestration by Seagrass and Macroalgae in Japan: Estimates and Future…
References
Abo K, Sugimatsu K, Hori M, Yoshida G, Shimabukuro H, Yagi H, Nakayama A, Tarutani K
(2018) Quantifying the fate of captured carbon: from seagrass meadow to deep sea. In: Kuwae
T, Hori M (eds) Blue carbon in shallow coastal ecosystems: carbon dynamics, policy, and
implementation. Springer, Singapore, pp 251–271
Akimoto Y, Matsumura T (2010) Available past information on seaweed bed distribution and
changes in seaweed bed area in Japanese coastal waters. In: Fujita D, Murase N, Kuwahara
H (eds) Monitoring and maintenance of seaweed beds. Seizando-Shoten, Tokyo, pp 17–24 (in
Japanese)
Duarte CM, Chiscano CL (1999) Seagrass biomass and production: a reassessment. Aquat Bot
65:159–174
Endo T, Otani S (2018) Chapter 8. Carbon storage in tidal flats. In: Kuwae T, Hori M (eds) Blue
carbon in shallow coastal ecosystems: carbon dynamics, policy, and implementation. Springer,
Singapore, pp 129–151
Environmental Agency, Marine Parks Center of Japan (1994) The report of the marine biotic environment survey in the 4th National Survey on the Natural Environment, vol 2. Algal and seagrass beds (in Japanese)
Fisheries Agency (2015) Isoyake Taisaku Guidelines (Revised edition) http://www.jfa.maff.go.jp/j/
gyoko_gyozyo/g_hourei/pdf/isoyake1.pdf. Accessed 1 Apr 2017 (in Japanese)
Fisheries Agency, Marino-Forum 21 (2007) Natural regeneration guidelines for eelgrass (in
Japanese)
Forestry Agency (2015) http://www.rinya.maff.go.jp/j/kikaku/hakusho/26hakusyo/pdf/1hyousi.
pdf. Accessed 1 Apr 2017 (in Japanese)
Hasegawa N, Hori M, Mukai H (2007) Seasonal shifts in seagrass bed primary producers in a
cold-temperate estuary: dynamics of eelgrass Zostera marina and associated epiphytic algae.
Aquat Bot 86:337–345
Hasegawa N, Yoshida G, Hori M, Tarutani K, Nakaoka M, Watanabe, K (2013) Supplementary
information: collection and arrangement of past findings concerning eelgrass. Project report
“Development of technology for improving carbon sinks and absorption capacity of seaweed
beds and tidal flats”. Fisheries Research Agency, Atmosphere and Ocean Research Institute of
the University of Tokyo, Field Science Center for Northern Biosphere of Hokkaido University,
pp 99–103 (in Japanese)
Hori M, Hamaoka H, Yoshida G (2014) Survey and implementation of national evaluation of carbon absorption amount of seaweed bed/tidal flat. Project report “Development of technology
for improving carbon sinks and absorption capacity of seaweed beds and tidal flats”. Fisheries
Research Agency, Atmosphere and Ocean Research Institute of the University of Tokyo, Field
Science Center for Northern Biosphere of Hokkaido University, pp 51–59 (in Japanese)
Inoue T (2018) Carbon sequestration in mangroves. In: Kuwae T, Hori M (eds) Blue carbon in shallow coastal ecosystems: carbon dynamics, policy, and implementation. Springer, Singapore,
pp 73–99
Kawashima S (2004) Kombu. In: Ohno M (ed) Biology and technology of economic seaweeds.
Uchida Rokakuho Publishing Co Ltd, Tokyo, pp 59–85 (in Japanese)
Krause-Jensen D, Duarte CM (2016) Substantial role of macroalgae in marine carbon sequestration. Nat Geosci 9:737–742
Kumamoto Prefectural Fisheries Research Center (2010) Technical report for fiscal 2009.
Kumamoto Prefectural Fisheries Research Center (in Japanese)
Kurashima A (2010) Productivity of Eisenia and Ecklonia bed. In: Fujita D, Murase N, Kuwahara
H (eds) Monitoring and maintenance of seaweed beds. Seizando-Shoten, Tokyo, pp 115–120
(in Japanese)
Kuwae T, Kanda J, Kubo A, Nakajima F, Ogawa H, Sohma A, Suzumura M (2018) CO 2 uptake
in the shallow coastal ecosystems affected by anthropogenic impacts. In: Kuwae T, Hori M
(eds) Blue carbon in shallow coastal ecosystems: carbon dynamics, policy, and implementation. Springer, Singapore, pp 295–319
4 Carbon Sequestration by Seagrass and Macroalgae in Japan: Estimates and Future…
