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8/13/2019 Final Deva Graph
1/22
Fig .1
Ce(IV) (mol. dm-3)
Fig.2
[LA]Mol.dm-3
35
y = 6.2086x + 8.6857
R2= 0.0109
y = 0.1209x + 1.0391
R2
= 0.9183
0
2
4
6
8
10
12
14
0 0.01 0.02 0.03 0.04 0.05 0.06 0.07
y = 76.7x + 12.799
R2= 0.9738
y = 0.1209x + 1.0391
R2= 0.9183
0
5
10
15
20
25
0 0.01 0.02 0.03 0.04 0.05 0.06 0.07 0.0810-7(-d[ce(IV)/dtmol.dm
-3s-
1
10-4
[-d[Ce(IV)/dt]mol.d
m-3.
Sec
-
8/13/2019 Final Deva Graph
2/22
Fig.3
[LA]-1
Fig.4
[H2SO4]
37
y = 0.0042x + 0.507
R2= 0.9695
y = 0.1209x + 1.0391
R2= 0.9183
0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0 10 20 30 40 50 60
y = 0.0205x + 0.9128
R2= 0.6799
y = 0.1209x + 1.0391
R2= 0.9183
0
0.2
0.4
0.6
0.8
1
1.2
1.4
0 5 10 15 20 25
106
[-d[Ce(IV)/dt]mol.dm
-3.
Sec
-1
10-4 [
-d[Ce(IV)/dt]mol.dm
-3.
Sec-
8/13/2019 Final Deva Graph
3/22
Fig.5
[M] x 10-3
Fig.6
Ce4+
39
y = 1.3023x + 0.7657
R2= 0.8712
y = 0.1209x + 1.0391
R2= 0.9183
0
0.5
1
1.5
2
2.5
0 0.2 0.4 0.6 0.8 1
y = 146.65x + 0.6343
R2= 0.9106
y = 0.1209x + 1.0391
R2= 0.9183
0
0.5
1
1.5
2
2.5
0 0.001 0.002 0.003 0.004 0.005 0.006 0.007 0.008 0.009
-d[Ce]/dtx10-3
-d[Ce]/dtx10-3
8/13/2019 Final Deva Graph
4/22
Fig.7
[LA]
Fig.8
[LA]-1
41
y = 16.326x + 2.1524
R2= 0.9443
y = 0.1209x + 1.0391
R2= 0.9183
0
0.5
1
1.5
2
2.5
3
3.5
0 0.01 0.02 0.03 0.04 0.05 0.06 0.07
y = 0.0022x + 0.2926
R2= 0.7978
y = 0.1209x + 1.0391
R2= 0.9183
0
0.05
0.1
0.15
0.2
0.25
0.3
0.35
0.4
0.45
0 10 20 30 40 50 60
-d[Ce]/dtx10
-3
-d[Ce]/dtx10
3
8/13/2019 Final Deva Graph
5/22
Fig 9.
[LA]-1
Fig.10
[H2SO4]-1
43
y = -0.006x + 0.7049
R2= 0.1491
y = 0.1209x + 1.0391
R2= 0.9183
0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
0 10 20 30 40 50 60
y = 0.0028x + 0.3301
R2= 0.6258
y = 0.1209x + 1.0391
R2= 0.9183
0
0.05
0.1
0.15
0.2
0.25
0.3
0.35
0.4
0.45
0 5 10 15 20 25
-d([M]/dt)-1
x1
07
-d([M]/dt)-1
x10-3
8/13/2019 Final Deva Graph
6/22
Fig.11
[H2SO4]-1
Fig.12
Ce(IV)
45
y = 0.0152x + 0.5204
R2= 0.5987
y = 0.1209x + 1.0391
R2= 0.9183
0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1
0 5 10 15 20 25
y = 11.255x - 0.2003
R2= 0.9732
y = 0.1209x + 1.0391
R2= 0.9183
0
2
4
6
8
10
12
14
0 0.2 0.4 0.6 0.8 1
-d([M]/dt)-1
x10
7
104
[-d[Ce(IV)/dt](mol.dm
-3.S
ec
-1)-
7
8/13/2019 Final Deva Graph
7/22
Fig.13
7[LA]-1
Fig.14
[LA]-1
47
y = 21.863x + 0.8071
R2= 0.9957
y = 0.1209x + 1.0391
R2= 0.9183
0
0.5
1
1.5
2
2.5
0 0.01 0.02 0.03 0.04 0.05 0.06 0.07 0.08
y = 0.0104x + 0.3019
R2= 0.9258
y = 0.1209x + 1.0391
R2= 0.9183
0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1
0 10 20 30 40 50 60
10-3
[-d[Ce(IV)/dt]mol.dm-3.
Sec
-1
10
3[
-d[Ce(IV)/dt]mol.dm
-3
.Sec
-1Sec
-
8/13/2019 Final Deva Graph
8/22
Fig.15
Ce(IV)
Fig.16
[H2SO4]-1
49
y = 11.255x - 0.2003
R2= 0.9732
y = 0.1209x + 1.0391
R2= 0.9183
0
2
4
6
8
10
12
14
0 0.2 0.4 0.6 0.8 1
y = 0.0014x + 0.0879
R2= 0.4995
y = 0.1209x + 1.0391
R2= 0.9183
0
0.2
0.4
0.6
0.8
1
1.2
0 5 10 15 20 25
10-4
[-d[Ce(IV)/dt](mol.dm
-3.
Sec
-1)-
7
10-4
[-d[Ce(IV)/dt]mol.d
m-3.
Sec
-
8/13/2019 Final Deva Graph
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Fig.17
[LA]-1
Fig.18
[H2SO4]-1
51
y = 0.0332x - 0.5322
R2= 0.7985
y = 0.1209x + 1.0391
R2= 0.9183
0
0.2
0.4
0.6
0.8
1
1.2
0 10 20 30 40 50 60
y = 0.0077x + 0.3875
R2= 0.5778
y = 0.1209x + 1.0391
R2= 0.9183
0
0.1
0.2
0.3
0.4
0.5
0.6
0 5 10 15 20 25
104
[-d[Ce(IV)/dt](mol.dm
-3.Sec
-1)-
7
10
7[
-d[Ce(IV)/dt](mol
.dm
-3.
Sec
-1)-
7
8/13/2019 Final Deva Graph
10/22
Fig.19
Ce(IV) (mol. dm-3)
Fig.20
[CE(IV)]-1
(mol. dm-3
)-1
53
y = 1655.9x - 3.4975
R2= 0.9768
y = 0.1209x + 1.0391
R2= 0.9183
0
2
4
6
8
10
12
14
16
18
20
0 0.001 0.002 0.003 0.004 0.005 0.006 0.007 0.008 0.009
y = 1881.5x - 3.401
R2= 0.9359
y = 0.1209x + 1.0391
R2= 0.9183
0
5
10
15
20
25
0 0.001 0.002 0.003 0.004 0.005 0.006 0.007 0.008 0.009
10-4
[-d[Ce(IV)/dt]mol.dm-
3.
10-4
[-d[Ce(IV)/dt]mol.dm
-3.
Sec
-1
8/13/2019 Final Deva Graph
11/22
Fig.21
[LA] (mol. dm-3)
Fig.22
[LA] mol. dm-3
55
y = 21.864x + 0.8071
R2= 0.9957
y = 0.1209x + 1.0391
R2= 0.9183
0
0.5
1
1.5
2
2.5
3
3.5
0 0.01 0.02 0.03 0.04 0.05 0.06 0.07 0.08
y = 216.68x - 3.1826R = 0.95
y = 0.1209x + 1.0391R2= 0.9183
-2
0
2
4
6
8
10
12
0 0.01 0.02 0.03 0.04 0.05 0.06 0.07
10-3
[-d[Ce(IV)/dt]mol.dm
-3.
Sec
-1
8/13/2019 Final Deva Graph
12/22
Fig.23
[LA] mol. dm-3
Fig.24
[LA]-1
mol. dm-3
57
y = 0.01x + 0.3178
R2= 0.9538
y = 0.1209x + 1.0391
R2= 0.9183
00.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
0 10 20 30 40 50 60
y = 0.011x + 0.3162
R2= 0.9886
y = 0.1209x + 1.0391
R2
= 0.9183
0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.91
0 10 20 30 40 50 60
RPX10-8
10
3[
-d[Ce(IV)/dt]mol.dm
-3.
Sec
-1
8/13/2019 Final Deva Graph
13/22
Fig.25
[LA] mol. dm-3
Fig.26
[LA] mol. dm-3
59
y = 0.3152x - 4.6693
R2= 0.795
y = 0.1209x + 1.0391
R2= 0.9183
-2
0
2
4
6
8
10
12
0 10 20 30 40 50 60
y = 0.0193x + 0.1374
R2= 0.9917
y = 0.1209x + 1.0391
R2= 0.9183-1000
-500
0
500
1000
1500
2000
2500
3000
3500
4000
0 10 20 30 40 50 60
10
7[-d[Ce(IV)/dt]-1
(mol.dm
-3.sec
-1)-
1
8/13/2019 Final Deva Graph
14/22
Fig.27
[M] mol dm-3
Fig.28
[M] mol dm-3
61
y = 11.255x - 0.2003
R2= 0.9732
y = 0.1209x + 1.0391
R2= 0.9183
0
5
10
15
20
25
0 0.2 0.4 0.6 0.8 1
y = 0.0647x + 2.0518R = 0.8019
y = 0.1209x + 1.0391R2= 0.9183
0
0.5
1
1.5
2
2.5
3
0 2 4 6 8 1010-4[-d[Ce(IV)/dt]-1
(mol.dm
-3.
1
0-4[-d[Ce(IV)/dt]-1
(mol.dm-3.
8/13/2019 Final Deva Graph
15/22
8/13/2019 Final Deva Graph
16/22
Fig.31
[H2SO4]-1
(mol. dm-3
)-1
Fig.32
[H2SO4]-1
(mol. dm-3
)-1
65
y = 0.0077x + 0.3875
R2= 0.5778
y = 0.1209x + 1.0391
R2= 0.9183
0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
0 5 10 15 20 25
y = 0.0036x + 0.3502
R2
= 0.5025
y = 0.1209x + 1.0391
R2= 0.9183
0
0.1
0.2
0.3
0.4
0.5
0.6
0.7
0.8
0.9
1
0 5 10 15 20 25
107[-d[Ce(IV)/dt]-1
(mol.dm
-3.s
ec
-1)-
1
10-4[-d[Ce(IV)/dt]-1
(mol.dm
-3.sec-1)-
1
8/13/2019 Final Deva Graph
17/22
Fig.33.
[Ce](IV) x 10-3
(mol. dm-3
)
Fig.34
[Ce](IV) x mol. dm-3
67
y = 0.1426x + 1.9274R = 0.7694
y = 0.1209x + 1.0391R2= 0.9183
0
0.5
1
1.5
2
2.5
3
3.5
0 2 4 6 8 10
y = 0.2557x + 6.4804R = 0.693
y = 0.1209x + 1.0391R2= 0.9183
7.25
7.3
7.35
7.4
7.45
7.5
7.55
3.4 3.5 3.6 3.7 3.8 3.9 4
RPx10-7
Rpx10-7
8/13/2019 Final Deva Graph
18/22
Variation Of Redutant
Fig.35
[LA] mol. dm-3
Fig.36
[LA] mol. dm-3
69
y = 224.51x - 5.187
R2= 0.9505
y = 0.1209x + 1.0391
R2= 0.9183
-2
0
2
4
6
8
10
12
0 0.01 0.02 0.03 0.04 0.05 0.06 0.07 0.08
y = 128.96x + 0.9273
R2= 0.9955
y = 0.1209x + 1.0391
R2= 0.9183
0
2
4
6
8
10
12
0 0.01 0.02 0.03 0.04 0.05 0.06 0.07 0.08
RP
X10-8
35oC
30oC
RP
X10-8
35
oC
30oC
8/13/2019 Final Deva Graph
19/22
Fig.37
[LA] mol. dm-3
Fig.38
[LA] mol. dm-3
71
y = 0.0813x - 1.2047
R2= 0.795
y = 0.1209x + 1.0391
R2= 0.9183
-0.5
0
0.5
1
1.5
2
2.5
3
3.5
0 10 20 30 40 50 60
y = 0.005x + 0.0356
R2= 0.9915
y = 0.1209x + 1.0391
R2= 0.9183
0
0.05
0.1
0.15
0.2
0.25
0.3
0 10 20 30 40 50 60
RP
-1X
10
8 35oC
30oC
RP
-1X
10
8
35oC
30oC
8/13/2019 Final Deva Graph
20/22
Fig.39
Fig.40
73
y = 0.656x + 2.9849
R2= 0.901
y = 0.1209x + 1.0391
R2= 0.9183
0
0.5
1
1.5
2
2.5
3
3.5
4
0 0.2 0.4 0.6 0.8 1
y = 1.4479x + 2.1799
R2= 0.9779
y = 0.1209x + 1.0391
R2= 0.9183
0
0.5
1
1.5
2
2.5
3
3.5
4
0 0.2 0.4 0.6 0.8 1
RP
X10-7
RP
X10-7
8/13/2019 Final Deva Graph
21/22
Fig.41
[H2SO4]-1(mol. dm-3)-1
Fig.42
[H2SO4]-1
(mol. dm-3
)-1
75
y = 0.002x + 0.1
R2= 0.5767
y = 0.1209x + 1.0391
R2= 0.9183
0
0.05
0.1
0.15
0.2
0.25
0 5 10 15 20 25
y = 0.0008x + 0.0956
R2= 0.114
y = 0.1209x + 1.0391
R2= 0.9183
0
0.05
0.1
0.15
0.2
0.25
0 5 10 15 20 25
RPx10
8
RPx10
8
8/13/2019 Final Deva Graph
22/22
VI. SUMMARY
1. Oxidation kinetics is followed in the presence and absence of monomer. Rate
constant is increased in both the cases.
2. Two temperatures 30oC & 35oC are followed as the temperature is increases the
rate of the reaction is also increases.
3. Rate of polymerization Rp is calculated as the temperature is increased rate of
polymerization is also increased.
4. The kinetics is followed in the presence of -cyclodextrin since -cyclodextrin It
holds reductant, oxidant and monomer in its cavity and so the reaction isincreased.
5. From the graph Rp increases as we change the concentration of monomer, oxidant,
reductant Rp also increases when the temperature increases. The rate of
polymerization is increases as the concentration of -cyclodextrin. If more amount
of -cyclodextrin the molecule are comes closer to one another and the rate of
polymerization is increases.
76