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Exact(9)
Therefore, the maximum yield obtained in the present work, 53 t ha−1, falls in the expected range for organic system.
The highest total yield reported by these authors is therefore practically the same as the maximum yield obtained in the present work.
The maximum yield obtained from the process with heterogeneous catalyst was slightly lower than the process using NaOH as catalyst (97.24%).
The maximum yield obtained at the optimal conditions (1.1850 ± 0.0550%) was more than that achieved by hydro-distillation method (1.120 ± 0.0440%).
The maximum yield obtained was 2.74 mol H2/mol lactose consumed, which is comparable with the yield reached in other hydrogen production processes with Clostridium sp. or mixed cultures.
It was obtained using 30% methanol (v/v of oil), 0.4% catalyst (wt/wt of oil), at a reaction temperature 60 °C and reaction time of 1 h, whereas in transesterification with KOH, the maximum yield obtained was 89% where other optimized constant conditions were 40% methanol, 1.28 wt% catalyst, reaction temperature (60 °C) and 45 min of reaction time.
Similar(51)
It was predicted that maximum oil yield obtained at the extraction pressure of 38.2 MPa and temperature of 49.7 °C contained the maximum amount of carotenoids, squalene and sterols.
Maximum extract yield obtained was 4.32 ± 0.25% and 5.26 ± 0.11% (w/w) respectively for PS and NPS.
The maximum sugar yield obtained was 75.3% and glucose yield was 46.7% when pretreated with 0.2 M H2SO4 for 20 min at 180 °C.
The maximum bioethanol yield obtained under the optimised SSC conditions from untreated wheat straw/bran was far below industrially exploitable yields.
The maximum isomer yield obtained with the CBV720-based catalyst was around 61.8 wt% at 270 °C, where hydroisomerisation conversion was predominant.
Related(20)
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