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Residence time is a critical parameter that strongly affects the product profile and overall yield achieved from thermochemical pretreatment of lignocellulosic biomass during production of liquid transportation fuels.
The present study is to evaluate and compare the prediction and simulating efficiencies of response surface methodology (RS M and artificial neural network (ANN) based models on fatty acid methyl esters (FAME) yield achieved from muskmelon oil (MMO) under ultrasonication by two step in situ process.
A comparison between the experimental neutron yield achieved from Pb irradiation using 885-MeV proton energy and simulation using the INCL4/ABLA showed that the simulation data of 15.37 n/p is well matched with experimental 14.8 with about 3.85% relative discrepancy ([42]; see Additional file 1).
A comparison between the experimental neutron yield achieved from Pb irradiation using 885 MeV proton energy and simulation using the INCL4/ABLA showed the simulation data of 15.37 n/p are well matched with experimental 14.8 with about 3.85 % relative discrepancy [42].
Thus, the CH4 yield achieved from C. vulgaris was comparable with previous results, but the yield from D. tertiolecta was very low.
The methane yield achieved from C. vulgaris degradation without bioaugmentation was 322 ml CH4/g VS, which is equivalent to 50% of the theoretical methane yield estimated by the carbohydrates, proteins, and lipid content of C. vulgaris and calculated according to Becker [ 23].
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It seems likely that the high sugar release yields achieved from willow and poplar biomass is due to abundance of the cellulose rich g-layers in TW tissue of RW (which are always present to some extent in short rotation coppice (SRC) willow stem sections) and that sugar release yield variation between genotypes is therefore due to variation in g-fibre abundance.
When the initial % TS concentration (w/w) was increased from 10%to15%5%, the glucose yield achieved after the initial 72 hours decreased from 77% to 69% w/w.
As a result, an l-rhamnose yield close to the maximum theoretical yield was achieved from naringin.
The highest butanol titer of 10.0 g/L and butanol yield of 27.0% (w/w, 66% of theoretical yield) were achieved from glucose in the ack knockout mutant overexpressing adhE2.
For example, a multiplex assay of anti-EpCAM and anti-MUC1 modified MNPs increased the capture of the low EpCAM expressing cell line BT-20 from the 45% yield achieved with anti-EpCAM alone to 78%.
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