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Increasing the mass ratio from 0.8 had no significant effect on particle size distribution.
The study considers the effects of the carbon and polymer (CP) mass ratio from 0.43 to 9.0 on the film surface morphology, electrical resistance and electrochemical properties.
Moreover, specific capacitance increases with increasing the KOH to carbon mass ratio from 148 F g−1 for 1 1 163 F g−1 for 3 1 at 700 °C.
The studies evidenced that in the symmetric capacitors the positive electrode controlled the capacitive performance and an optimal mass ratio from 1.2 1 to 1.3 1 between the positive and the negative electrodes was found in the investigated conditions.
After preliminary experiments confirming the feasibility of the process, different operating conditions were studied: CO2-over-feed mass ratio from 25 up to 115, and pressure between 11 and 13 MPa, with an internal reflux due to a thermal gradient 323 338 K along the column, through an experimental design.
Results show that the ACs' specific surface area, total pore volume, specific capacitance, as well as energy density are maximized using an activation time from 6 to 10 min or KOH/peanut shell mass ratio from 0.6 to 2.0 under otherwise identical conditions.
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Activated carbons were prepared from rubber wood sawdust by chemical activation using ZnCl2 as an activation agent at 500 °C for 60 min with ZnCl2/dried rubber wood sawdust mass ratios from 1.0 to 2.0.
This was done for a range of mass ratios from 0.1 to 1.0.
In order to see the commercial feasibility of c-SiRH, the electrochemical performance of c-SiRH graphite c-SiRH graphite compositesgraphite mass ratios from 1:9 to 4:6 with examined.
The effects of three independent variables on the yield of crude bio-oil were examined, including the reaction temperature (varied from 255 °C to 350 °C), reaction time (varied from 0 min to 25 min) and solvent/feedstock mass ratio (varied from 2 1 to 12 1).
The saponification of free sterol studied by Yan et al. showed that the free sterol content in the feed solution after the saponification increased from 6.64 to 9.30% as the NaOH/SODD mass ratio increased from 0.17/1 to 0.33/1 (w/w) [21].
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