IEEP (2014). Available from http://www.ieep.eu/assets/963/KNOSSOS_Green_Economy_
Supporting_Briefing.pdf
Janzen DH (1973) Tropical agroecosystems. Science 182:1212–1219
Kern M (2002) Food, feed, fibre, fuel and industrial products of the future: challenges and
opportunities. Understanding the strategic potential of plant genetic engineering. J Agron
Crop Sci 188(5):291–305
Klinglmair M, Sala S, Brandão M (2013) Assessing resource depletion in LCA: a review of
methods and methodological issues. Int J Life Cycle Assess:1–13. https://doi.org/10.1007/
s11367-013-0650-9
Lainez M, González JM, Aguilar A, Vela C (2018) Spanish strategy on bioeconomy: towards a
knowledge based sustainable innovation. New Biotechnol 40:87–95. https://doi.org/10.1016/j.
nbt.2017.05.006
León JD, Osorio NW (2014) Role of litter turnover in soil quality in tropical degraded lands of
Colombia. Sci World J 2014:1–11
Li Z, Wang D, Sui P, Long P, Yan L, Wang X, Chen Y (2018) Effects of different agricultural
organic wastes on soil GHG emissions: during a 4-year field measurement in the North China
plain. Waste Manag 81:202–210. https://doi.org/10.1016/j.wasman.2018.10.008
Ludwig C, Matasci C, Edelmann X (2015) Natural resources – sustainable targets, technologies,
lifestyles and governance. Paul Scherrer Institute, Villigen PSI (CH)
Maqsood I, Li JB, Huang GH, Huang YF (2005) Simulation-based risk assessment of contaminated
sites under remediation scenarios, planning periods, and land-use patterns – a Canadian case
study. Stoch Environ Res Risk Assess 19:146–157
McCormick K, Kautto N (2013) The bioeconomy in Europe: an overview. Sustainability
(Switzerland) 5(6):2589–2608. https://doi.org/10.3390/su5062589
Murthy GS (2019) Systems analysis frameworks for biorefineries. In: Pandey A, Larroche C,
Dussap C et al (eds) Biofuels alternative feedstocks and conversion processes for the production
of liquid and gaseous biofuels. Elsevier, Amsterdam
Neelakantan S, Sondhi HS, Manocha A, Sarma SC (1978) Anaerobic fermentation of plant
materials into acids and biogas. Curr Sci 47(5):147–151. https://www.jstor.org/stable/24080420
EIP-AGRI Network (2015) Opportunities for agriculture and forestry in circular economy. Europe
Commission, Brussels
OECD (2008) Business for development 2008. Promoting commercial agriculture in Africa. OECD
Publications, Organisation for Economic Co-operation and Development, Paris
Pätäri S, Tuppura A, Toppinen A, Korhonen J (2016) Global sustainability megaforces in shaping
the future of the European pulp and paper industry towards a bioeconomy. Forest Policy Econ
66:38–46. https://doi.org/10.1016/j.forpol.2015.10.009
Pelli P, Kangas J, Pykäläinen J (2018) Service-based bioeconomy-multilevel perspective to assess
the evolving bioeconomy with a service lens. In: Towards a sustainable bioeconomy: principles,
challenges and perspectives, World sustainability series
Pertiwiningrum A, Hidayah N, Syamsiah S (2016) The use of sludge from cow manure biodigester
as fertilizer and carrier of Cordyceps sp. for white grub pest control. J Agric Sci Tech A 6
(3):149–153
Pertiwiningrum A, Fitriyanto N A, Agus C et al (2017) Utility of biogas sludge as media for White
Oyster Mushroom (Pleurotus florida). In: Proceeding the 7th international on tropical animal
production, Yogyakarta, 12–14 September 2017
Pertiwiningrum A, Hapsari DJ, Ratnaningrum P et al (2018) Effects of adding chicken blood meal
and fishmeal to sludge biogas as white oyster mushroom media. Pak J Biol Sci 21(1):29–37
Pertiwiningrum A, Wuri MA, Harto AW et al (2019) Heating value enhancement by biogas
purification using natural zeolite and rice straw-based biochar. Int J GEOMATE 16(55):80–85
Phelan PL (2009) Ecology-based agriculture and the next green revolution: is modern agriculture
exempt from the laws of ecology? In: Bohlen PJ, House G (eds) Sustainable agroecosystem
management: integrating ecology, economics, and society. CRC Press, Boca Raton, FL, pp
97–135
10 Tropical Biological Natural Resource Management Through Integrated. . .
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