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Lynne Wong's PhD thesis

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Page<br />

Table 6.4.<br />

Table 6.5.<br />

Table 6.6.<br />

Table 6.7.<br />

The GAB model maximum net heat of sorption, q st , and entropy<br />

257<br />

of sorption, S d , at the corresponding EMC/% db for the nine<br />

cane components aged 52 and 36 weeks.<br />

Characteristic parameters obtained from the net isosteric<br />

260<br />

heat-entropy relationship for the nine cane components of<br />

R 570 aged 52 and 36 weeks.<br />

Comparison of the calculated bound water (primary, secondary<br />

261<br />

and tertiary) with the Brix-free water values of the nine cane<br />

components of R 570 of two ages.<br />

Separation of the total adsorbed water (m) into hydrated water<br />

268<br />

(m h ) and dissolved water (m s ) as given by the Hailwood-<br />

Horrobin model for the nine cane components of R 570 aged 52<br />

and 36 weeks at various temperatures.<br />

Table 6.7. (Contd.) 269<br />

Table 6.7. (Contd.) 270<br />

Table 6.8.<br />

Table 6.9.<br />

Separation of the total adsorbed water (m) into hydrated water<br />

271<br />

(m h ) and dissolved water (m s ) as given by the Hailwood-<br />

Horrobin model for the reconstituted cane stalk and dry leaf and<br />

green leaf of R 570 of two ages at various temperatures.<br />

Brix-free water and fibre saturation point bound water in fibres<br />

276<br />

of cane components of R 570.<br />

Table A 4.1. Determination of Brix-free water values for cane fibres by 314<br />

polarimetry.<br />

Table A 4.2. Determination of Brix-free water in cane. 316<br />

(xxxviii)

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