30
Phytotechnology with Biomass Production
Kabi, F., Bareeba, F. B., Havrevoll, Ø., & Mpofu, I. D. T. (2005). Evaluation of protein degradation characteristics and metabolisable protein of elephant grass (Pennisetum
purpureum) and locally available protein supplements. Livestock Production
Science, 95(1), 143–153. https://doi.org/10.1016/j.livprodsci.2004.12.013.
Kasprzyk, A., Leszczuk, A., Domaciuk, M., & Szczuka, E. (2013). Stem morphology
of the Sida hermaphrodita (L.) Rusby (Malvaceae). Modern Phytomorphology, 4,
25–25.
Kausar, S., Mahmood, Q., Raja, I. A., Khan, A., Sultan, S., Gilani, M. A., & Shujaat, S.
(2012). Potential of Arundo donax to treat chromium contamination. Ecological
Engineering, 42, 256–259. https://doi.org/10.1016/j.ecoleng.2012.02.019.
Kharytonov, M., Pidlisnyuk, V., Stefanovska, T., Babenko, M., Martynova, N., & Rula,
I. (2019). The estimation of Miscanthus × giganteus’ adaptive potential for cultivation on the mining and post-mining lands in Ukraine. Environmental Science and
Pollution Research, 26(3), 2974–2986.
Kocoń, A., & Matyka, M. (2012). Phytoextractive potential of Miscanthus × giganteus
and Sida hermaphrodita growing under moderate pollution of soil with Zn and
Pb. Journal of Food, Agriculture and Environment, 10(2 part 3), 1253–1256. https://
www.cabdirect.org/cabdirect/abstract/20123224099.
Kołodziej, B., Antonkiewicz, J., & Sugier, D. (2016). Miscanthus × giganteus’ as a biomass
feedstock grown on municipal sewage sludge. Industrial Crops and Products, 81,
72–82. https://doi.org/10.1016/j.indcrop.2015.11.052.
Krzywy-Gawrońska, E. (2012). The effect of industrial wastes and municipal sewage
sludge compost on the quality of virginia fanpetals (Sida hermaphrodita Rusby)
biomass Part 1. Macroelements content and their uptake dynamics. Polish Journal
of Chemical Technology, 14(2), 9–15. https://doi.org/10.2478/v10026-012-0064-7.
Kvak, V., Stefanovska, T., Pidlisnyuk, V., Alasmary, Z., & Kharytonov, M. (2018). The
long-term assessment of Miscanthus × giganteus cultivation in the Forest-Steppe
zone of Ukraine. INMATEH-Agricultural Engineering, 54(1), 113–120. https://
www.cabdirect.org/cabdirect/abstract/20183366934.
Laperche, V., Traina, S. J., Gaddam, P., & Logan, T. J. (1996). Chemical and mineralogical characterizations of Pb in a contaminated soil: Reactions with synthetic apatite. Environmental Science & Technology, 30(11), 3321–3326. https://doi.
org/10.1021/es960141u.
Lasat, M. (1999). Phytoextraction of metals from contaminated soil: A review of plant/
soil/metal interaction and assessment of pertinent agronomic issues. Journal of
Hazardous Substance Research, 2(1). https://doi.org/10.4148/1090-7025.1015.
Lewandowski, I., Clifton-Brown, J. C., Scurlock, J. M. O., & Huisman, W. (2000).
Miscanthus: European experience with a novel energy crop. Biomass and
Bioenergy, 19(4), 209–227. https://doi.org/10.1016/S0961-9534(00)00032-5.
Lewandowski, I., Clifton-Brown, J., Trindade, L. M., van der Linden, G. C., Schwarz, K.-U.,
Müller-Sämann, K., Anisimov, A., Chen, C.-L., Dolstra, O., Donnison, I. S., Farrar,
K., Fonteyne, S., Harding, G., Hastings, A., Huxley, L. M., Iqbal, Y., Khokhlov, N.,
Kiesel, A., Lootens, P., … Kalinina, O. (2016). Progress on optimizing Miscanthus
biomass production for the European bioeconomy: Results of the EU FP7 Project
OPTIMISC. Frontiers in Plant Science, 7. https://doi.org/10.3389/fpls.2016.01620.
Lewandowski, I., Schmidt, U., & Faaij, A. P. C. (2005). Perennial crops are the most
sustainable option for biomass production–A comparison of the efficiency and
multiple land use options of perennial and annual biomass crops. Industrial
Ecology for a Sustainable Future (Abstract Book Oral Sessions), 144–146.
Phytotechnology with Biomass Production
Kabi, F., Bareeba, F. B., Havrevoll, Ø., & Mpofu, I. D. T. (2005). Evaluation of protein degradation characteristics and metabolisable protein of elephant grass (Pennisetum
purpureum) and locally available protein supplements. Livestock Production
Science, 95(1), 143–153. https://doi.org/10.1016/j.livprodsci.2004.12.013.
Kasprzyk, A., Leszczuk, A., Domaciuk, M., & Szczuka, E. (2013). Stem morphology
of the Sida hermaphrodita (L.) Rusby (Malvaceae). Modern Phytomorphology, 4,
25–25.
Kausar, S., Mahmood, Q., Raja, I. A., Khan, A., Sultan, S., Gilani, M. A., & Shujaat, S.
(2012). Potential of Arundo donax to treat chromium contamination. Ecological
Engineering, 42, 256–259. https://doi.org/10.1016/j.ecoleng.2012.02.019.
Kharytonov, M., Pidlisnyuk, V., Stefanovska, T., Babenko, M., Martynova, N., & Rula,
I. (2019). The estimation of Miscanthus × giganteus’ adaptive potential for cultivation on the mining and post-mining lands in Ukraine. Environmental Science and
Pollution Research, 26(3), 2974–2986.
Kocoń, A., & Matyka, M. (2012). Phytoextractive potential of Miscanthus × giganteus
and Sida hermaphrodita growing under moderate pollution of soil with Zn and
Pb. Journal of Food, Agriculture and Environment, 10(2 part 3), 1253–1256. https://
www.cabdirect.org/cabdirect/abstract/20123224099.
Kołodziej, B., Antonkiewicz, J., & Sugier, D. (2016). Miscanthus × giganteus’ as a biomass
feedstock grown on municipal sewage sludge. Industrial Crops and Products, 81,
72–82. https://doi.org/10.1016/j.indcrop.2015.11.052.
Krzywy-Gawrońska, E. (2012). The effect of industrial wastes and municipal sewage
sludge compost on the quality of virginia fanpetals (Sida hermaphrodita Rusby)
biomass Part 1. Macroelements content and their uptake dynamics. Polish Journal
of Chemical Technology, 14(2), 9–15. https://doi.org/10.2478/v10026-012-0064-7.
Kvak, V., Stefanovska, T., Pidlisnyuk, V., Alasmary, Z., & Kharytonov, M. (2018). The
long-term assessment of Miscanthus × giganteus cultivation in the Forest-Steppe
zone of Ukraine. INMATEH-Agricultural Engineering, 54(1), 113–120. https://
www.cabdirect.org/cabdirect/abstract/20183366934.
Laperche, V., Traina, S. J., Gaddam, P., & Logan, T. J. (1996). Chemical and mineralogical characterizations of Pb in a contaminated soil: Reactions with synthetic apatite. Environmental Science & Technology, 30(11), 3321–3326. https://doi.
org/10.1021/es960141u.
Lasat, M. (1999). Phytoextraction of metals from contaminated soil: A review of plant/
soil/metal interaction and assessment of pertinent agronomic issues. Journal of
Hazardous Substance Research, 2(1). https://doi.org/10.4148/1090-7025.1015.
Lewandowski, I., Clifton-Brown, J. C., Scurlock, J. M. O., & Huisman, W. (2000).
Miscanthus: European experience with a novel energy crop. Biomass and
Bioenergy, 19(4), 209–227. https://doi.org/10.1016/S0961-9534(00)00032-5.
Lewandowski, I., Clifton-Brown, J., Trindade, L. M., van der Linden, G. C., Schwarz, K.-U.,
Müller-Sämann, K., Anisimov, A., Chen, C.-L., Dolstra, O., Donnison, I. S., Farrar,
K., Fonteyne, S., Harding, G., Hastings, A., Huxley, L. M., Iqbal, Y., Khokhlov, N.,
Kiesel, A., Lootens, P., … Kalinina, O. (2016). Progress on optimizing Miscanthus
biomass production for the European bioeconomy: Results of the EU FP7 Project
OPTIMISC. Frontiers in Plant Science, 7. https://doi.org/10.3389/fpls.2016.01620.
Lewandowski, I., Schmidt, U., & Faaij, A. P. C. (2005). Perennial crops are the most
sustainable option for biomass production–A comparison of the efficiency and
multiple land use options of perennial and annual biomass crops. Industrial
Ecology for a Sustainable Future (Abstract Book Oral Sessions), 144–146.
