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This contribution presents a thermal sensor, which is capable of simultaneously determining gas concentrations of a binary gas mixture under flow conditions and its flow rate.
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Figure 2 a Sn x N y NWs grown on Au/Si(111) at the optimum temperature of 450 °C using a Sn NH4Cl mixture under a flow of 250 sccm's NH3b high magnification SEM image of Sn x N y NWs.
Then, CuBr (22 mg, 0.16 mmol) was added to the frozen reaction mixture under nitrogen flow.
Thermolysis of that mixture under continuous flow at 110 °C with concomitant aerial oxidation, gave the quinone 44, from which our target 43 was readily derived.
After the solvent evaporation, the mixture was annealed under flow of argon at 675 °C for 2 h.
Coal particle combustion experiments were performed in a drop tube furnace (DTF) with oxygen concentration from 21%to100%0%, in N2 and CO2 mixtures, under quiescent flow conditions.
Two column experiments were conducted to assess the suitability of an organic carbon (OC) based reactive mixture and an Fe0-bearing organic carbon (FeOC) based reactive mixture, under controlled groundwater flow conditions.
Then the furnace was heated to 1150 °C under a mixture gas flow of N2 60 mL min−1) and H2(40 mL min−1).
Growth occurred by heating simple starting materials of boron powder, zinc oxide powder, and ethanol absolute at 1150 °C under a mixture gas flow of nitrogen and hydrogen.
The Cr(N,O) coatings were deposited under the mixture of constant flow of N2 and various flows of O2.
The Ti Si C N coatings were deposited under the mixture flow of N2 and C2H2.
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