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The study shows that high performance electrodes can be designed from biogas slurry derived porous carbon.
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The facility will be designed to take the human waste and convert it into biogas.
When the price of DDGS was increased by more than 50%%, the 1G case exhibited a higher NPV than all the cases that were designed to produce biogas from the thin stillage.
The gas storage in the roofs of the digesters was designed for 6000 m3 of biogas.
A second experiment conducted in two biogas systems was designed to quantify the biochemical inactivation of schistosome ova in biogas chambers.
Novel laboratory biogas reactor prototypes were designed and constructed.
A typical biogas system with three utilization pathways, i.e., biogas upgrading, biogas combined heat and power (CHP), biogas solid oxide fuel cells (SOFCs) were designed.
All the technology was designed to run on the waste heat from the flue gases (490 °C) at the cogeneration unit linked to the 1 MWep biogas station.
To improve the biogas production from corn stovers, a new bionic reactor was designed and constructed.
A novel anaerobic reactor, jet biogas inter-loop anaerobic fluidized bed (JBILAFB), was designed and constructed.
The biogas plant applying the mesophilic wet fermentation technology (hereafter BGP_WF) was designed for a capacity of 537 kWel CHP.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com