Bioresource Technology, 0960-8524

Tidskrift

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  1. Early prediction of Biochemical Methane Potential through statistical and kinetic modelling of initial gas production.

    Strömberg, S., Nistor, M. & Jing Liu, 2015, I : Bioresource Technology. 176, s. 233-241

    Forskningsoutput: TidskriftsbidragArtikel i vetenskaplig tidskrift

  2. Enhancing performance in anaerobic high-solids stratified bed digesters by straw bed implementation

    Svensson, M., Lovisa Björnsson & Bo Mattiasson, 2007, I : Bioresource Technology. 98, 1, s. 46-52

    Forskningsoutput: TidskriftsbidragArtikel i vetenskaplig tidskrift

  3. Economic and environmental assessment of propionic acid production by fermentation using different renewable raw materials.

    Tufvesson, P., Ekman, A., Roya Rezaei, Engdahl, K. & Tufvesson, L., 2013, I : Bioresource Technology. 149, s. 556-564

    Forskningsoutput: TidskriftsbidragArtikel i vetenskaplig tidskrift

  4. Strain-dependent variance in short-term adaptation effects of two xylose-fermenting strains of Saccharomyces cerevisiae

    van Dijk, M., Erdei, B., Mats Galbe, Nygård, Y. & Olsson, L., 2019, I : Bioresource Technology. 292, 121922.

    Forskningsoutput: TidskriftsbidragArtikel i vetenskaplig tidskrift

  5. A techno-economical comparison of three processes for the production of ethanol from pine

    von Sivers, M. & Guido Zacchi, 1995, I : Bioresource Technology. 51, 1, s. 43-52

    Forskningsoutput: TidskriftsbidragArtikel i vetenskaplig tidskrift

  6. Ethanol from lignocellulosics: A review of the economy

    von Sivers, M. & Guido Zacchi, 1996, I : Bioresource Technology. 56, 2-3, s. 131-140

    Forskningsoutput: TidskriftsbidragArtikel i vetenskaplig tidskrift

  7. Effects of substrate concentration on methane potential and degradation kinetics in batch anaerobic digestion

    Wang, B., Strömberg, S., Li, C., Ivo Achu, N., Nistor, M., Deng, L. & Jing Liu, 2015, I : Bioresource Technology. 194, s. 240-246

    Forskningsoutput: TidskriftsbidragArtikel i vetenskaplig tidskrift

  8. Cellulose accessibility determines the rate of enzymatic hydrolysis of steam-pretreated spruce.

    Wiman, M., Dienes, D. D., Hansen, M. A. T., van der Meulen, T., Guido Zacchi & Gunnar Lidén, 2012, I : Bioresource Technology. 126C, s. 208-215

    Forskningsoutput: TidskriftsbidragArtikel i vetenskaplig tidskrift

  9. Energy considerations for a SSF-based softwood ethanol plant

    Wingren, A., Mats Galbe & Guido Zacchi, 2008, I : Bioresource Technology. 99, 7, s. 2121-2131

    Forskningsoutput: TidskriftsbidragArtikel i vetenskaplig tidskrift