Technological and institutional innovations for marginalized smallholders in agricultural development. Springer International Publishing, Switzerland
von Braun J (2018) Bioeconomy – the global trend and its implications for sustainability and food
security. Glob Food Sec 19(October):81–83. https://doi.org/10.1016/j.gfs.2018.10.003
Wanner H (1970) Soil respiration, litter fall and productivity of tropical rain forest. J Ecol
58:543–547
Wihardjaka A, Ardiwinata AN, Yulianingsih E (2018) Status and mitigation of green house gas
emissionson rice field areas. In: Sudaryanto T et al (eds) Forum Komunikasi Profesor Riset:
Mewujudkan pertanian berkelanjutan: Agenda Inovasi Teknologi Kebijakan, 1st edn. IAARD
Press, Jakarta
Woźniak E, Twardowski T (2018) The bioeconomy in Poland within the context of the European
Union. New Biotechnol 40:96–102. https://doi.org/10.1016/j.nbt.2017.06.003
Wu C, Maurer C, Wang Y, Xue S, Davis DL (1999) Water pollution and human health in China.
Environ Health Perspect 107(4):251–256. https://doi.org/10.1289/ehp.99107251
Xu H-J, Yang X-R, Li S, Xue X-M, Chang S, Li H, Zhu Y-G (2019) Nitrogen inputs are more
important than denitrifier abundances in controlling denitrification-derived N2O emission from
both urban and agricultural soils. Sci Total Environ 650:2807–2817. https://doi.org/10.1016/J.
SCITOTENV.2018.10.001
Yu H, Roman E, Solvang WD (2018) A value chain analysis for bioenergy production from
biomass and biodegradable waste: a case study in northern Norway. In: Tsvetkov P
(ed) Energy systems and Environmen. IntechOpen, London
Zabaniotou A, Kamaterou P, Pavlou A, Panayiotou C (2018) Sustainable bioeconomy transitions:
targeting value capture by integrating pyrolysis in a winery waste biorefinery. J Clean Prod
172:3387–3397. https://doi.org/10.1016/j.jclepro.2017.11.077
Zahariev A (2014) Biogas from animal manure – perspectives and barriers in Bulgaria. Annu Res
Rev Biol 4(5):709–719. https://doi.org/10.9734/arrb/2014/6505
Zhu W, Wang S, Caldwell CD (2012) Pathways of assessing agroecosystem health and
agroecosystem management. Acta Ecol Sin 32(2012):9–17. https://doi.org/10.1016/j.chnaes.
2011.11.001
238
C. Agus et al.
von Braun J (2018) Bioeconomy – the global trend and its implications for sustainability and food
security. Glob Food Sec 19(October):81–83. https://doi.org/10.1016/j.gfs.2018.10.003
Wanner H (1970) Soil respiration, litter fall and productivity of tropical rain forest. J Ecol
58:543–547
Wihardjaka A, Ardiwinata AN, Yulianingsih E (2018) Status and mitigation of green house gas
emissionson rice field areas. In: Sudaryanto T et al (eds) Forum Komunikasi Profesor Riset:
Mewujudkan pertanian berkelanjutan: Agenda Inovasi Teknologi Kebijakan, 1st edn. IAARD
Press, Jakarta
Woźniak E, Twardowski T (2018) The bioeconomy in Poland within the context of the European
Union. New Biotechnol 40:96–102. https://doi.org/10.1016/j.nbt.2017.06.003
Wu C, Maurer C, Wang Y, Xue S, Davis DL (1999) Water pollution and human health in China.
Environ Health Perspect 107(4):251–256. https://doi.org/10.1289/ehp.99107251
Xu H-J, Yang X-R, Li S, Xue X-M, Chang S, Li H, Zhu Y-G (2019) Nitrogen inputs are more
important than denitrifier abundances in controlling denitrification-derived N2O emission from
both urban and agricultural soils. Sci Total Environ 650:2807–2817. https://doi.org/10.1016/J.
SCITOTENV.2018.10.001
Yu H, Roman E, Solvang WD (2018) A value chain analysis for bioenergy production from
biomass and biodegradable waste: a case study in northern Norway. In: Tsvetkov P
(ed) Energy systems and Environmen. IntechOpen, London
Zabaniotou A, Kamaterou P, Pavlou A, Panayiotou C (2018) Sustainable bioeconomy transitions:
targeting value capture by integrating pyrolysis in a winery waste biorefinery. J Clean Prod
172:3387–3397. https://doi.org/10.1016/j.jclepro.2017.11.077
Zahariev A (2014) Biogas from animal manure – perspectives and barriers in Bulgaria. Annu Res
Rev Biol 4(5):709–719. https://doi.org/10.9734/arrb/2014/6505
Zhu W, Wang S, Caldwell CD (2012) Pathways of assessing agroecosystem health and
agroecosystem management. Acta Ecol Sin 32(2012):9–17. https://doi.org/10.1016/j.chnaes.
2011.11.001
238
C. Agus et al.
