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The maximum delignification obtained was 85.69%.
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The extent of delignification obtained at 3 and 30 wt% is comparable to that reported in the literature [ 7, 17, 18].
The optimum conditions for the maximum delignification (85%) of bagssse comprise of temperature (388 K), hydrotrope concentration (30% w/w), and bagasse loading (5 wt%) in 240 min.
After being pretreated with ILMa (mass ratio of toluene: ethanol: 1-ethyl-3-methylimidazolium acetate ([Emim]Ac) = 0.35:0.3:0.35) at 70 °C for 12 h, the maximum delignification of 63.6% was observed.
Simplex centroid based optimization of the selected mixture (i.e., combination 31) resulted in a concoction composed of Saccharum spontaneum (0.2031), Saccharum officinarum tops (0.1968), Ricinus communis (0.6000) with maximum delignification 80.13%.
Conditions for the ammonia pretreatment process were optimized for the maximum delignification of SB considering three important process variables: ammonia concentration, temperature and time at three different levels.
Taguchi experimental design (Taguchi method, L8 orthogonal array) was used to optimize the maximum delignification considering three independent variables (ammonia concentration, temperature and time) at two levels with center point (Table 1).
Maximum acceleration and maximum velocity were obtained from these graphs with the graph tracer.
Maximum temperatures obtained ranged 46.8 54.5 °C.
The maximum error obtained is 40 50 %.
Peak force, maximum force obtained during stance.
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