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Pure sodium hydride can be formed at temperatures above 350 °C (660 °F) by exposing sodium to hydrogen gas at a high flow rate.
The flow conditions changed between low flow rate and high flow rate.
It is well known that high flow rate accelerates analysis and sharpens peaks.
A high flow rate of 3.5 4 ml/h was implied during the electrospraying process.
At high flow rate, rapid elution and high peaks with insufficient separation were obtained.
Extremely high flow rate operation (e.g. 10 mL min−1) can be achieved without device failure.
It was observed that the high flow rate would offset the buoyancy effects.
Improved permeability of the monolith could realize sample loading with high flow rate.
Similarly, the high flow rate of the H2 supplies less of the Si component to the liquid catalysts since such a high flow rate dilutes the precursor concentration in the gas phase.
We suggest that the high flow rate immediately prior to the explosive activity induced the increase in the subsurface porosity.
A high flow rate of CO2 was utilized to promote mixture of the organic solution with scCO2.
More suggestions(17)
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