0
5
10
15
20
25
30
35
40
45
50
1970
2000
2030
2060
2090
2120
2150
2180
2210
2240
2270
2300
y
t
i
c
a
p
a
c
n
o
i
t
a
r
e
n
e
g
y
t
i
c
i
r
o
t
c
e
l
E
(GWe)
A.D.
LWR
15FRs
8
3
2
2
0%
5%
10%
15%
20%
2050
2100
2150
2200
2250
2300
MA content (wt%)
0
50
100
150
200
250
300
350
400
1970
2000
2030
2060
2090
2120
2150
2180
2210
2240
2270
2300
Pu inventory (t)
A.D.
-310t
LWR
FR
Storage
0
10
20
30
40
50
60
70
80
90
1970
2000
2030
2060
2090
2120
2150
2180
2210
2240
2270
2300
MA inventory (t)
A.D.
-50t
LWR
Waste
FR
Storage
Fig. 19.7 Result of fast reactor (FR) scenario
222
K. Nishihara et al.
5
10
15
20
25
30
35
40
45
50
1970
2000
2030
2060
2090
2120
2150
2180
2210
2240
2270
2300
y
t
i
c
a
p
a
c
n
o
i
t
a
r
e
n
e
g
y
t
i
c
i
r
o
t
c
e
l
E
(GWe)
A.D.
LWR
15FRs
8
3
2
2
0%
5%
10%
15%
20%
2050
2100
2150
2200
2250
2300
MA content (wt%)
0
50
100
150
200
250
300
350
400
1970
2000
2030
2060
2090
2120
2150
2180
2210
2240
2270
2300
Pu inventory (t)
A.D.
-310t
LWR
FR
Storage
0
10
20
30
40
50
60
70
80
90
1970
2000
2030
2060
2090
2120
2150
2180
2210
2240
2270
2300
MA inventory (t)
A.D.
-50t
LWR
Waste
FR
Storage
Fig. 19.7 Result of fast reactor (FR) scenario
222
K. Nishihara et al.
