TY - JOUR A1 - Naithani, V. K A1 - Klostermeyer, Henning A1 - Lange, H. R. A1 - [u.a.], A1 - Berndt, Heinz A1 - [u.a.], T1 - Preparation of peptide derivatives for porcine proinsulin-synthesis JF - Biological Chemistry Y1 - 1971 U6 - http://dx.doi.org/10.1515/bchm2.1971.352.1.1 SN - 1437-4315 VL - 352 IS - 1 SP - 2 EP - 3 PB - De Gruyter ER - TY - JOUR A1 - Berndt, Heinz A1 - Gattner, Hans-Gregor A1 - Zahn, Helmut T1 - Semisynthetisches Des-A1-glycin-Schafinsulin JF - Biological Chemistry Y1 - 1975 U6 - http://dx.doi.org/10.1515/bchm2.1975.356.2.1455 SN - 1437-4315 VL - 356 IS - 2 SP - 1469 EP - 1472 PB - De Gruyter CY - Berlin ER - TY - JOUR A1 - Poth, Sebastian A1 - Monzon, Magaly A1 - Tippkötter, Nils A1 - Ulber, Roland T1 - Lignocellulosic biorefinery: Process integration of hydrolysis and fermentation (SSF process) JF - Holzforschung N2 - The aim of the present work is the process integration and the optimization of the enzymatic hydrolysis of wood and the following fermentation of the products to ethanol. The substrate is a fiber fraction obtained by organosolv pre-treatment of beech wood. For the ethanol production, a co-fermentation by two different yeasts (Saccharomyces cerevisiae and Pachysolen tannophilus) was carried out to convert glucose as well as xylose. Two approaches has been followed: 1. A two step process, in which the hydrolysis of the fiber fraction and the fermentation to product are separated from each other. 2. A process, in which the hydrolysis and the fermentation are carried out in one single process step as simultaneous saccharification and fermentation (SSF). Following the first approach, a yield of about 0.15 g ethanol per gram substrate can be reached. Based on the SSF, one process step can be saved, and additionally, the gained yield can be raised up to 0.3 g ethanol per gram substrate. Y1 - 2011 N1 - 11th EWLP, Hamburg, Germany, August 16–19, 2010 VL - 65 IS - 5 SP - 633 EP - 637 PB - De Gruyter CY - Berlin ER -