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Temperature is the crucial parameter as limited conversion is observed below 180 °C and optimum conversion is attained around 220 °C.
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Since an esterification is an equilibrium limited reaction, full conversion is not possible unless one of the products is removed.
During cellulose hydrolysis by only CBH I, its accessibility to chain ends is very limited and cellulose conversion is very less.
When CBH I acts alone, its accessibility to chain ends is very limited and cellulose conversion is very less.
Evidence suggests that, within the body, ALA may be converted into EPA, but that this conversion is generally very limited in extent.
This increased rate of conversion is due to the limited availability of free H2O2.
It is found that when Yb3+ concentration is fixed to be 10 mol%, the influence of increasing Sm3+ concentration on the photothermal conversion effect is limited; but when Sm3+ is fixed to be 5 mol%, the photothermal conversion is enhanced greatly with the increase of Yb3+ concentration.
Conversion is often mysterious.
The conversion is good.
The conversion is not easy.
The Fazlin conversion is significant.
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