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The newly-developed combustion reactor device with low-cost construction can effectively reduce the analysis cost, and can be used for the δ13Calkane analysis.
The experimental results show that the MR gives methanol conversions higher than traditional reactors (TRs) at each temperature investigated, confirming the good potential of the membrane reactor device for this interesting reaction system.
The catalytic membrane reactor device has a rapid response to changes in the ethanol water liquid mixture load; a constant hydrogen flow has been obtained after 2 s following variations of ±10%.
Therefore, this study provides a good starting point in the design of a membrane reactor device for the direct synthesis of PO where the main limitations such as propylene hydrogenation and water formation can be addressed.
The reactor device is able to reduce the carbon monoxide concentration in a realistic reformate gas from 1.5 vol.% to 10 ppm at an inlet oxygen to carbon monoxide ratio of 1.5, a WHSV of 240 L g−1 h−1, and within the temperature range of 230 240 °C.
In October 2014, the same team of Italian and Swedish researchers released a new paper, entitled Observation of abundant heat production from a reactor device and of isotopic changes in the fuel.
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For accurate experimental study, characterisation of the flow conditions within these new reactor devices is essential.
On both levels of power output, the RefBurn and ProxHeatex microstructured devices outperform the conventional systems, resulting in smaller and lighter reactor devices.
These events are relevant to mimic light harvesting and reactor devices known for photosynthesis in plants, and can be monitored by luminescence and flash photolysis methods.
The material loss of metallic surfaces through corrosion wear is a serious concern in many application sectors, ranging from bio-medical implants to marine, oil and gas field components to transport vehicle and nuclear reactor devices.
The study is limited to the chemical reactor devices of the fuel processor: a reformer burner (RefBurn) reactor, with coupling of endo- and exothermal reactions, and a preferential oxidation reactor with integrated heat exchangers (ProxHeatex device), which shows integration of reaction and heat exchange.
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