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The MOR zeolite catalyzes decomposition of the methyl iodide through formation of surface methoxy species (SMS), which subsequently reacts with water in the mixed gas stream to form methanol, and with methanol to form dimethyl ether, which are both detected downstream in the effluent.
Compared with the air atmosphere, the mixed gas stream is oxygen deficient.
Therefore, ZnO nanowires grown in the mixed gas stream exhibit better activity than ZnO nanowires grown in air atmosphere.
The ZnO nanowires grown in the mixed gas stream exhibit better photocatalytic activity than the ZnO nanowires grown in air atmosphere due to the abundant oxygen vacancies too.
So, the photocatalytic activity of ZnO nanowires (grown in the mixed gas stream) is higher than that of the ZnO nanowires (grown in air atmosphere).
Figure 3 The room-temperature PL spectra of ZnO nanowires.a Grown in air atmosphere b grown in the mixed gas stream.
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The data showed that this enzyme-based membrane reactor could effectively separate CO2 at low concentration from mixed gas streams.
This paper reported the results of developing a novel hollow fiber membrane reactor contained immobilized enzyme for selective separation of low concentration CO2 from mixed gas streams.
Pd and PdCu alloy membranes are promising candidates for separating hydrogen from mixed gas streams due in part to their infinite selectivity to hydrogen separation.
Here we investigate the capture of methyl iodide from complex mixed gas streams by combining chemical analysis of the effluent gas stream with in depth characterization of the recovered sorbent.
Dense Pd-based membranes have received significant attention for their ability to separate with near-perfect selectivity H2 from mixed gas streams, such as those generated in advanced fossil energy conversion processes.
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