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Decomposition of nitrous acid and oxidation side reaction are suppressed in a closed reaction system.
Other features of the mechanism, such as closed reaction sequences and key species, may be identified by statistical analysis of the sequence of steps.
It is imperative that closed reaction vessels are utilized so that air bubbles are not trapped and back diffusion of oxygen is reduced to a minimum.
The polarographic technique for measuring mitochondrial oxidative changes requires the following four basic components: an oxygen electrode, a closed reaction vessel, a constant voltage source, and a recorder.
Heating the closed reaction vessel under microwave irradiation at 160 °C for 30 min is a very effective means of purifying the MWNTs.
Also, since the amplification and detection are performed in the same tube, unlike PCR, LAMP can be performed in closed reaction tubes and it minimizes any cross-contamination risk while using multiple samples [21, 23 25].
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The sharp distinctions in yield and compositions between closed reactions and gas flow reactions reflect relatively uniform substrate compositions under gas flow and changing compositions in closed reactions.
To replicate flow conditions without mass transport, samples were subjected to multiple closed reactions.
The effect is moderate under gas flow and substantial in closed reactions.
Figure 5 Concentrations (% mol) of C 1 -C 6 hydrocarbons generated in six sequential closed reactions, Floyd shale at 50°C (Table 2).
Figure 6 Concentrations (% mol) of C 1 -C 6 hydrocarbons generated in five sequential closed reactions, Mowry shale at 100°C (Table 3).
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