The economics of converting coal to ethanol by a biological process is quite attractive. When processing 1500 tons of coal per day, the plant generates 85 million gallons of ethanol per year. The return on investment for the process is 110 percent and the payout is 0.9 years
Production of bioethanol from cellulosic biomass plays an important role to support energy policies....
Both plug-flow microreactor systems at WVU are now functioning. Screening runs on these systems were...
In a previous paper, conceptual process design, simulation, and mass and energy balances were presen...
The economics of ethanol production from switchgrass using Waterloo fast pyrolysis with a fermentati...
Research is continuing in an attempt to increase both the ethanol concentration and product ratio us...
Research is continuing in an attempt to increase both the ethanol concentration and product ratio us...
This report describes a two-step process that creates 1,550 lb/hr 1,3-butadiene from a feed of efflu...
This design report describes an up-to-date benchmark thermochemical conversion process that incorpor...
The technical feasibility of the biological conversion of coal synthesis gas to methane has been dem...
An integrated biomass-to-mixed alcohol process was demonstrated at the pilot scale, including indire...
The thermochemical conversion of coal and biomass to liquid transportation fuels from a synthesis ga...
Currently developing countries are facing fuel challenges yet at the same time waste corn stover re...
Bioethanol has been introduced on a large scale in several countries, for example, in Brazil, the Un...
Liquid transportation fuels can be produced by gasification of carbon containing biomass to syngas( ...
We have finished the kinetic study and the data reduction on the reduced Mo-Ni-K?C catalyst
Production of bioethanol from cellulosic biomass plays an important role to support energy policies....
Both plug-flow microreactor systems at WVU are now functioning. Screening runs on these systems were...
In a previous paper, conceptual process design, simulation, and mass and energy balances were presen...
The economics of ethanol production from switchgrass using Waterloo fast pyrolysis with a fermentati...
Research is continuing in an attempt to increase both the ethanol concentration and product ratio us...
Research is continuing in an attempt to increase both the ethanol concentration and product ratio us...
This report describes a two-step process that creates 1,550 lb/hr 1,3-butadiene from a feed of efflu...
This design report describes an up-to-date benchmark thermochemical conversion process that incorpor...
The technical feasibility of the biological conversion of coal synthesis gas to methane has been dem...
An integrated biomass-to-mixed alcohol process was demonstrated at the pilot scale, including indire...
The thermochemical conversion of coal and biomass to liquid transportation fuels from a synthesis ga...
Currently developing countries are facing fuel challenges yet at the same time waste corn stover re...
Bioethanol has been introduced on a large scale in several countries, for example, in Brazil, the Un...
Liquid transportation fuels can be produced by gasification of carbon containing biomass to syngas( ...
We have finished the kinetic study and the data reduction on the reduced Mo-Ni-K?C catalyst
Production of bioethanol from cellulosic biomass plays an important role to support energy policies....
Both plug-flow microreactor systems at WVU are now functioning. Screening runs on these systems were...
In a previous paper, conceptual process design, simulation, and mass and energy balances were presen...