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Chemical Thermodynamics of Tin - Volume 12 - OECD Nuclear ...

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A Discussion <strong>of</strong> selected references<br />

425<br />

Table A-75 (continued)<br />

T/K<br />

o<br />

C T 1 /<br />

( )<br />

o<br />

p, m<br />

–1<br />

J·K<br />

–1·mol<br />

C ( ) p, m<br />

T 2 o<br />

/<br />

–1<br />

J·K<br />

–1·mol<br />

S ( T)<br />

1 o<br />

m<br />

/<br />

–1<br />

J·K<br />

–1·mol<br />

S ( m<br />

/ H°(T) – H°(0 K) 1 / H°(T) – H°(0 K) 2 /<br />

J·K –1·mol –1 kJ·mol –1 kJ·mol –1<br />

1020.00 81.96 81.<strong>12</strong> 138.83 138.85 61.75 61.73<br />

1040.00 82.22 81.35 140.43 140.43 63.39 63.35<br />

1060.00 82.46 81.59 141.99 141.98 65.04 64.98<br />

1080.00 82.70 81.82 143.54 143.51 66.69 66.62<br />

1100.00 82.94 82.05 145.06 145.01 68.34 68.26<br />

1<strong>12</strong>0.00 83.17 82.28 146.55 146.49 70.01 69.90<br />

1140.00 83.39 82.51 148.03 147.95 71.67 71.55<br />

1160.00 83.61 82.73 149.48 149.39 73.34 73.20<br />

1180.00 83.82 82.96 150.91 150.80 75.02 74.86<br />

<strong>12</strong>00.00 84.03 83.18 152.32 152.20 76.69 76.52<br />

<strong>12</strong>20.00 84.24 83.40 153.71 153.58 78.38 78.18<br />

<strong>12</strong>40.00 84.44 83.61 155.08 154.93 80.06 79.85<br />

<strong>12</strong>60.00 84.64 83.82 156.44 156.27 81.75 81.53<br />

<strong>12</strong>80.00 84.83 84.03 157.77 157.60 83.45 83.21<br />

1300.00 85.03 84.24 159.09 158.90 85.15 84.89<br />

1320.00 85.22 84.44 160.39 160.19 86.85 86.58<br />

1340.00 85.40 84.63 161.67 161.46 88.56 88.27<br />

1360.00 85.59 84.83 162.94 162.71 90.27 89.96<br />

1380.00 85.77 85.01 164.19 163.95 91.98 91.66<br />

1400.00 85.95 85.20 165.42 165.18 93.70 93.36<br />

1420.00 86.<strong>12</strong> 85.37 166.64 166.39 95.42 95.07<br />

1440.00 86.30 85.54 167.85 167.58 97.14 96.78<br />

1460.00 86.47 85.71 169.04 168.76 98.87 98.49<br />

1480.00 86.64 85.86 170.22 169.93 100.60 100.20<br />

1500.00 86.81 86.01 171.38 171.09 102.34 101.92<br />

[2004GUR/GAV3]<br />

In this paper, the same experimental data have been reported as in [2004GUR/GAV2],<br />

and the heat capacity values <strong>of</strong> SnO 2 (cass) between 13.4 and 336.88 K were analysed by<br />

the same methods. In this paper however, the comparison <strong>of</strong> low- and high-temperature<br />

data is lacking.<br />

[2005GIE/POR]<br />

The kinetics <strong>of</strong> the disproportionation reaction <strong>of</strong> tin(II) oxide (SnO) to tin(IV) oxide<br />

(SnO 2 ) and tin metal (Sn) was studied ex-situ and in-situ by X-ray powder diffraction<br />

with synchrotron radiation. Depending on sample preparation and decomposition<br />

temperature an intermediate oxide Sn 2 O 3 was observed. From thermal<br />

CHEMICAL THERMODYNAMICS OF TIN, ISBN 978-92-64-99206-1, © <strong>OECD</strong> 20<strong>12</strong>

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