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48% oxygen excess showed the highest temperature with full conversion.
An oxygen excess is observed at low pressures.
Maximum power tracking is obtained using the optimal oxygen excess ratio which is also compared to the constant oxygen excess ratio.
In contrast, oxygen excess causes a disturbance on microbial interactions leading to Anammox bacteria loss.
Under oxygen excess conditions the catalyst was more active but its selectivity was lower.
The experiments were carried out at high space velocities and under oxygen excess conditions.
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It is worth pointing out that minimal disturbance of the TiO2 stoichiometry such as oxygen vacancies act as n-type dopants or oxygen-excess p-type dopants have a strong impact on the film's resistance and its dielectric properties[44, 45].
On the other hand, it was further proven that the same defects (e.g. oxygen vacancies, excess of oxygen) also affect the dielectric constant of TiO2[48, 49].
However, oxygen in excess to normal physiology has the potential to disrupt homeostasis and cause adverse effects.
The hyperaemic response to activation not only delivers glucose and oxygen in excess of demand, it also washes out lactate.
FNR cluster conversions were followed under pseudo-first-order conditions (with oxygen in excess) by measuring absorbance changes at 420 nm.
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