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Lynne Wong's PhD thesis

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Table 5.13.<br />

Table 5.14.<br />

Equilibrium moisture content (on a dry basis) of dry leaf fibre<br />

199<br />

from R 570 aged 52 weeks and 36 weeks at various<br />

temperatures and water activities.<br />

Equilibrium moisture content (on a dry basis) of dry leaf fines<br />

200<br />

from R 570 aged 52 weeks and 36 weeks at various<br />

temperatures and water activities.<br />

Table 5.15. Equilibrium moisture content (on a dry basis) of green leaf 201<br />

fibre from R 570 aged 52 weeks and 36 weeks at various<br />

temperatures and water activities.<br />

Table 5.16. Equilibrium moisture content (on a dry basis) of green leaf 202<br />

fines from R 570 aged 52 weeks and 36 weeks at various<br />

temperatures and water activities.<br />

Table 5.17. Freundlich constants for primary and secondary equilibria of 206<br />

adsorption isotherms of cane components aged 52 weeks.<br />

Table 5.18. Freundlich constants for primary and secondary equilibria of 207<br />

adsorption isotherms of cane components aged 36 weeks.<br />

Table 5.19. Parameters of the sorption isotherm models, coefficient of 212<br />

determination R 2 , mean relative deviation modulus P, and<br />

standard errors of the estimate E s for isotherms of stalk fibre<br />

aged 52 and 36 weeks at 30, 45, 55 and 60 o C.<br />

Table 5.20. Parameters of the sorption isotherm models, coefficient of 213<br />

determination R 2 , mean relative deviation modulus P, and<br />

standard errors of the estimate E s for isotherms of stalk pith<br />

aged 52 and 36 weeks at 30, 45, 55 and 60 o C.<br />

Table 5.21. Parameters of the sorption isotherm models, coefficient of 214<br />

determination R 2 , mean relative deviation modulus P, and<br />

standard errors of the estimate E s for isotherms of rind fibre<br />

aged 52 and 36 weeks at 30, 45, 55 and 60 o C.<br />

Table 5.22. Parameters of the sorption isotherm models, coefficient of 215<br />

determination R 2 , mean relative deviation modulus P, and<br />

standard errors of the estimate E s for isotherms of rind fines<br />

aged 52 and 36 weeks at 30, 45, 55 and 60 o C.<br />

Table 5.23. Parameters of the sorption isotherm models, coefficient of 216<br />

determination R 2 , mean relative deviation modulus P, and<br />

standard errors of the estimate E s for isotherms of top fibre aged<br />

52 and 36 weeks at 30, 45, 55 and 60 o C.<br />

Table 5.24. Parameters of the sorption isotherm models, coefficient of 217<br />

determination R 2 , mean relative deviation modulus P, and<br />

standard errors of the estimate E s for isotherms of dry leaf fibre<br />

aged 52 and 36 weeks at 30, 45, 55 and 60 o C.<br />

(xxxv)

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