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@ARTICLE{Knig:873148,
author = {König, Andrea and Neidhardt, Lisa and Viell, Jörn and
Mitsos, Alexander and Dahmen, Manuel},
title = {{I}ntegrated design of processes and products: {O}ptimal
renewable fuels},
journal = {Computers $\&$ chemical engineering},
volume = {134},
issn = {0098-1354},
address = {Amsterdam [u.a.]},
publisher = {Elsevier Science},
reportid = {FZJ-2020-00593},
pages = {106712},
year = {2020},
abstract = {Integrated product and process design aims at developing
innovative products that provide a desired functionality and
are produced efficiently. Tailor-made fuels from renewable
feedstocks pose a prominent, societally-relevant example. We
build upon the integrated design method from Dahmen and
Marquardt (2017) and combine it with the production pathway
screening tool from Ulonska et al. (2016). We thus design a
tailor-made fuel and its optimal production process by
minimizing economic and environmental criteria, i.e., cost
and global warming impact (GWI). We consider the production
of a tailor-made spark-ignition engine fuel from
lignocellulosic biomass. Simultaneous process and product
design yields optimal multi-component fuels that consist of
ethanol, isobutanol, butanone, cyclopentane, and
2-methylfuran with production costs of 18–22 $ per GJ and
GWI values of 38–61 kg per GJ. The proposed method and its
solution strategies are, in principle, universal and thus
also applicable to products other than fuels.},
cin = {IEK-10},
ddc = {660},
cid = {I:(DE-Juel1)IEK-10-20170217},
pnm = {153 - Assessment of Energy Systems – Addressing Issues of
Energy Efficiency and Energy Security (POF3-153)},
pid = {G:(DE-HGF)POF3-153},
typ = {PUB:(DE-HGF)16},
UT = {WOS:000517756500019},
doi = {10.1016/j.compchemeng.2019.106712},
url = {https://juser.fz-juelich.de/record/873148},
}