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However, the most common production method of steam utilizes fossil fuels which generate greenhouse gases and ozone-depleting gases, necessitating the optimization of steam utilization.
In this study, an optimized process for in-depth exhaust steam utilization was proposed to further exploit the energy saving potential of CHP unit.
In addition, the effect on the electrolyzer cell by key operating parameters, such as current density, steam fraction, steam-to-carbon ratio, temperature, pressure, steam utilization and fuel utilization, is presented.
Such findings are critical for determining the rheology required for heat exchanger design; absorber designs and packing to accommodate solvents with gradient changes (e.g. viscosity, contact angle, surface tension), and stripper configurations without direct steam utilization or water reflux.
The results showed that, in the design condition, the exhaust steam utilization ratio in the novel system had a significant increment of 22.74% than that in the reference system, leading to a sharp increase of 16.26% in heating capacity and 0.83 MW in net electricity output, bringing about 5.06% improvement in net generating efficiency.
This washing has to be conducted either at high pressure (1-2.5 MPa), which poses a serious engineering challenge, or at ambient pressure, which has the drawback of increased steam utilization, due to the material having to be reheated to the higher temperature.
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This study investigated the utilization of available excess steam by the Kamojang geothermal power plant, which, owing to the vapor-domination of the steam, utilizes a dry steam cycle.
A higher number of heating exchangers reduces the exergy destruction of the heat transfer, increases the utilization of steam in the steam turbine and reduces the throttling losses of the control flap.
Owing to the deficiency of investigating steam explosion on energy utilization, in this study, we analyze the heat transfer mechanism and energy consumption of steam explosion process.
A strategy for processing unconventional oil that involves the utilization of steam (catalytic) cracking process, in a FCC-type configuration, and enhanced cracking catalyst with high hydrothermal stability is also analyzed.
Total generation efficiency (Eth) was analyzed from the standpoint of plant size, cell performance, working pressure/temperature, steam carbon ratio, fuel/air utilization ratios (Uf/Ua) and turbine inlet temperature (TIT).
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