Applicability of Euglena gracilis for biorefineries demonstrated by the production of α-tocopherol and paramylon followed by anaerobic digestion

Grimm P, Risse JM, Müller J, Cholewa D, Beshay U, Friehs K, Flaschel E (2015)
Journal of Biotechnology 215: 72-79.

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Zeitschriftenaufsatz | Veröffentlicht | Englisch
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Journal of Biotechnology
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215
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72-79
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Grimm P, Risse JM, Müller J, et al. Applicability of Euglena gracilis for biorefineries demonstrated by the production of α-tocopherol and paramylon followed by anaerobic digestion. Journal of Biotechnology. 2015;215:72-79.
Grimm, P., Risse, J. M., Müller, J., Cholewa, D., Beshay, U., Friehs, K., & Flaschel, E. (2015). Applicability of Euglena gracilis for biorefineries demonstrated by the production of α-tocopherol and paramylon followed by anaerobic digestion. Journal of Biotechnology, 215, 72-79. doi:10.1016/j.jbiotec.2015.04.004
Grimm, P., Risse, J. M., Müller, J., Cholewa, D., Beshay, U., Friehs, K., and Flaschel, E. (2015). Applicability of Euglena gracilis for biorefineries demonstrated by the production of α-tocopherol and paramylon followed by anaerobic digestion. Journal of Biotechnology 215, 72-79.
Grimm, P., et al., 2015. Applicability of Euglena gracilis for biorefineries demonstrated by the production of α-tocopherol and paramylon followed by anaerobic digestion. Journal of Biotechnology, 215, p 72-79.
P. Grimm, et al., “Applicability of Euglena gracilis for biorefineries demonstrated by the production of α-tocopherol and paramylon followed by anaerobic digestion”, Journal of Biotechnology, vol. 215, 2015, pp. 72-79.
Grimm, P., Risse, J.M., Müller, J., Cholewa, D., Beshay, U., Friehs, K., Flaschel, E.: Applicability of Euglena gracilis for biorefineries demonstrated by the production of α-tocopherol and paramylon followed by anaerobic digestion. Journal of Biotechnology. 215, 72-79 (2015).
Grimm, Philipp, Risse, Joe Max, Müller, Jakob, Cholewa, Dominik, Beshay, Usama, Friehs, Karl, and Flaschel, Erwin. “Applicability of Euglena gracilis for biorefineries demonstrated by the production of α-tocopherol and paramylon followed by anaerobic digestion”. Journal of Biotechnology 215 (2015): 72-79.

3 Zitationen in Europe PMC

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Efficiency and biotechnological aspects of biogas production from microalgal substrates.
Klassen V, Blifernez-Klassen O, Wobbe L, Schlüter A, Kruse O, Mussgnug JH., J Biotechnol 234(), 2016
PMID: 27449486
Succinate and Lactate Production from Euglena gracilis during Dark, Anaerobic Conditions.
Tomita Y, Yoshioka K, Iijima H, Nakashima A, Iwata O, Suzuki K, Hasunuma T, Kondo A, Hirai MY, Osanai T., Front Microbiol 7(), 2016
PMID: 28066371

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