TY - JOUR
T1 - Fuzzy mixed-integer linear programming model for optimizing a multi-functional bioenergy system with biochar production for negative carbon emissions
AU - Ubando, Aristotle T.
AU - Culaba, Alvin B.
AU - Aviso, Kathleen B.
AU - Ng, Denny K.S.
AU - Tan, Raymond R.
N1 - Publisher Copyright:
© 2014 Springer-Verlag Berlin Heidelberg.
PY - 2014/12
Y1 - 2014/12
N2 - A multi-functional bioenergy system is an efficient way for producing multiple energy products from biomass, which results in near-zero carbon emissions. To achieve net negative carbon emissions, biochar production as carbon sequestration can be integrated in the system. A fuzzy mixed-integer linear programming model is developed to simultaneously design and optimize a multi-functional bioenergy system given multiple product demands, carbon footprint, and economic performance constraints. Case studies are presented involving multi-functional bioenergy systems with biochar production for carbon sequestration. The results show that net negative carbon footprint can be achieved in such systems.
AB - A multi-functional bioenergy system is an efficient way for producing multiple energy products from biomass, which results in near-zero carbon emissions. To achieve net negative carbon emissions, biochar production as carbon sequestration can be integrated in the system. A fuzzy mixed-integer linear programming model is developed to simultaneously design and optimize a multi-functional bioenergy system given multiple product demands, carbon footprint, and economic performance constraints. Case studies are presented involving multi-functional bioenergy systems with biochar production for carbon sequestration. The results show that net negative carbon footprint can be achieved in such systems.
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U2 - 10.1007/s10098-014-0721-z
DO - 10.1007/s10098-014-0721-z
M3 - Article
AN - SCOPUS:84920706337
SN - 1618-954X
VL - 16
SP - 1537
EP - 1549
JO - Clean Technologies and Environmental Policy
JF - Clean Technologies and Environmental Policy
IS - 8
ER -