資料4.二酸化炭素海底下地層貯留の生態影響評価について

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1 pco pco 2 340ppm pco 2 GEOSECS Geochemical Ocean Sections Study Nakano et al.(2006) 1 pco 2 500m 500ppm 1,000m 1,000ppm 1,000m pco ,000m pco 2 1 Nakano, Y., H. Kimoto, S. Watanabe, K. Harada, Y.W. Watanabe..Simultaneous Vertical Measurements of In Situ ph and CO2 in the Sea Using Spectrophotometric Profilers. J. Oceanogr., 62, 71-81, ,

2 CO 2 CCS IPCC IPCC CO 2 CO 2 CO 2 CO 2 CO2 CO 2 CO 2 CO 2 CO 2 CO 2 CO 2 IPCC pco 2 50,000 70,000ppm CO 2 pco 2 CO 2 Illex illecebrosus -2-

3 pco 2 6,500ppm CO 2 1 CO 2 LC 50 :24 Test species 24h LC50 (pco2 ppm) Fish Pagrus major (Eggs, Larvae, Juveniles) 13,300 52,700 Sillago japonica (Larvae, Juveniles) 26,300 48,200 Paralichthys olivaceus (Eggs, Juveniles) 28,400 50,000 Euthynnus affinis (Eggs) 94,300 Cephalopod Sepia lycidas (Juveniles) 83,700 Sepioteuthis lessoniana (Juveniles) 58,700 Decapod Penaeus japonicaus(juveniles) > 150,000 Copepoda Subarctic shallow species 15,000 (mean value) Subarctic deep species Could not determine, Highly tolerant Subtropical shallow species 53,000 (mean value) Subtropical deep species 86,000 (mean value) Hayashi et al.(2004) gKikkawa et al.(2004) 5 CO 2 ph ph ph CO 2 Kikkawa et al.(2006) 6 CO 2 IPCC CO Hayashi, M., J. Kita, A. Ishimatsu.. Comparison of the acid-base responses to CO2 and acidification in Japanese flounder (Paralichthys olivaceus). Mar. Pollut. Bull., 49, , Kikkawa, T., J. Kita, A. Ishimatsu.. Comparison of the lethal effect of CO2 and acidification on red sea bream(pagrus major). Mar. Pollut. Bull., 48, , Kikkawa, T., T. Sato, J. Kita, A. Ishimatsu.. Acute toxicity of temporally varying seawater CO2 conditions on juveniles of Japanese sillago (Sillago japonica). Mar. Pollut. Bull., 52, ,

4 CO 2 coralline algae CO 2 560ppm pco 2 560ppm CO 2 2 pco 2 1,000ppm ph7.6 pco 2 CO 2 500ppm Kurihara et al.(2004) 7 (Acartia erythraea) pco2 365ppm 5,365ppm +5,000ppm 10,365ppm +10,000ppm 8 +5,000ppm +10,000ppm Watanabe et al.(2006) 8 Mayer et al.(1994) CO2 4,900ppm CO2 CO2 5,000ppm CO2 500ppm 7 Kurihara, H., S. Shimode and Y. Shirayama.. Effects of raised CO2 concentration on the egg production rate and early development of two marine copepods (Acartia steueri and Acartia erythrae). Mar. Pollut. Bull., 49, , Watanabe, Y., A. Yamaguchi, H. Ishida, T. Harimoto, S. Suzuki, Y. Sekido, T. Ikeda, Y. Shirayama, M.M. Takahashi, T. Ohsumi and J. Ishizaka.. Lethality of increasing CO2 levels on deep-sea copepods in the western North Pacific. J. Oceanogr., 62, ,

5 CO 2 CO 2 500ppm 340ppm pco 2 840ppm pco 2 500ppm CO 2 CO 2 500ppm CO 2 1,000m ( ) RITE p

6 RITE m 1,000m 100 kw 20 7, m 25m 15m 1md 10md p

7 200md 1md md IPCC CO very likely likely RITE RITE(2006) RITE(2004) 1md 0.4(10-4 kg/m 2 /s) 10md 2.8(10-4 kg/m 2 /s) 0.05m/s 0.1m/s -7-

8 200m 500m 200m 200m 500m m m 0.01m 0.02m 500m 200m 500m 200m m -8-

9 RITE(2006) CO2 m/s m m (10-4 kg/m 2 /s) RITE(2006) pco 2 pco 2 ppm pco 2 pco 2 pco2 10md 200m 500m pco 2 500ppm 200m pco 2 500ppm pco 2-9-

10 pco2 pco2 pco2 IPCC CO very likely likely % CO 2 200m 10 2 ppm 500m ppm pco 2 IPCC -10-

11 pco 2 pco 2 ph -11-

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