Bioenergy Crops in the Perspective of Climate Change
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-4954-0_1
Reference170 articles.
1. Adler PR, Grosso SJD, Parton WJ (2007) Life-cycle assessment of net greenhouse-gas flux for bioenergy cropping systems. Ecol Appl 17(3):675–691
2. Adler PR, Sanderson MA, Boateng AA, Weimer PJ, Jung HJG (2006) Biomass yield and biofuel quality of switchgrass harvested in fall or spring. Agron J 98(6):1518–1525
3. Agbor V, Zurzolo F, Blunt W, Dartiailh C, Cicek N, Sparling R, Levin DB (2014) Single-step fermentation of agricultural hemp residues for hydrogen and ethanol production. Biomass Bioenergy 64:62–69
4. Ale S, Femeena PV, Mehan S, Cibin R (2019) Environmental impacts of bioenergy crop production and benefits of multifunctional bioenergy systems. In: Bioenergy with carbon capture and storage. Academic Press, pp 195–217
5. Ameen A, Tang C, Liu J, Han L, Xie GH (2019) Switchgrass as forage and biofuel feedstock: effect of nitrogen fertilization rate on the quality of biomass harvested in late summer and early fall. Field Crop Res 235:154–162
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