This study demonstrates the use of a milireactor as intensified technology for the continuous production of furfural via acid dehydration of xylose in a bi-phasic media. Very rapid extraction of furfural, aided by fast mass transfer rates, is key to prevent furfural subsequent degradation. Thus, by operating at elevated temperatures (i.e., 150-190 οC), it is possible to maintain high furfural selectivity (ca. 70%) at high xylose conversion (ca. 80%) and very short residence times (up to 2.5 min). A reaction mechanism is proposed based on the observed conversion-selectivity trends, and on the analysis of product distribution. The contribution of humins to the carbon balance is remarkably low due to the high furfural extraction rates achieved...
Furfural is a platform chemical that can be obtained from renewable resources. It can be produced by...
The production of furfural (FUR) from xylose was carried out using a biphasic batch reaction system....
MasterFurfural is important in biorefinery concept as a key derivative for the production of non-pet...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
This study demonstrates the use of a millireactor as intensified technology for the continuous produ...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
The dehydration of xylose gives furfural; however, furfural is rapidly decomposed and polymerized un...
Furfural (FUR) was produced from xylose using a biphasic batch reaction system. Water-immiscible org...
The production of furfural (FUR) from xylose was carried out using a biphasic batch reaction system....
Furfural (FUR) was produced from xylose using a biphasic batch reaction system. Water-immiscible org...
Furfural is a platform chemical that can be obtained from renewable resources. It can be produced by...
The production of furfural (FUR) from xylose was carried out using a biphasic batch reaction system....
MasterFurfural is important in biorefinery concept as a key derivative for the production of non-pet...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
This study demonstrates the use of a millireactor as intensified technology for the continuous produ...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
This study demonstrates the use of a milireactor as intensified technology for the continuous produc...
The dehydration of xylose gives furfural; however, furfural is rapidly decomposed and polymerized un...
Furfural (FUR) was produced from xylose using a biphasic batch reaction system. Water-immiscible org...
The production of furfural (FUR) from xylose was carried out using a biphasic batch reaction system....
Furfural (FUR) was produced from xylose using a biphasic batch reaction system. Water-immiscible org...
Furfural is a platform chemical that can be obtained from renewable resources. It can be produced by...
The production of furfural (FUR) from xylose was carried out using a biphasic batch reaction system....
MasterFurfural is important in biorefinery concept as a key derivative for the production of non-pet...