Lloyd, I. L., Morrison, R., Grayson, R. P., Cumming, A. M. J., D'Acunha, B., Galdos, M. V., Evans, C. D. and Chapman, P. J. 2024. Maize grown for bioenergy on peat emits twice as much carbon as when grown on mineral soil. Global Change Biology. Bioenergy. 16 (7), p. e13169. https://doi.org/10.1111/gcbb.13169
Ortega-Ramos, P., Cook, S. M. and Mauchline, A. L. 2022. How contradictory EU policies led to the development of a pest - the story of oilseed rape and the cabbage stem flea beetle. Global Change Biology. Bioenergy. 14 (3), pp. 258-266. https://doi.org/10.1111/gcbb.12922
Ortega-Ramos, P., Coston, D., Seimandi-Corda, G., Mauchline, A. L. and Cook, S. M. 2021. Integrated pest management strategies for cabbage stem flea beetle (Psylliodes chrysocephala) in oilseed rape. Global Change Biology. Bioenergy. 14 (3), pp. 267-286. https://doi.org/10.1111/gcbb.12918
Rosace, M. C., Veronesi, F., Briggs, S., Jeffery, S. and Cardenas, L. M. 2020. Legacy effects override soil properties for CO2 and N2O but not CH4 emissions following digestate application to soil. Global Change Biology. Bioenergy. 12, p. 445–457. https://doi.org/10.1111/gcbb.12688
Clifton-Brown, J., Harfouche, A., Casler, M. D., Jones, H. D., Macalpine, W. J., Murphy-Bokern, D., Smart, L. B., Adler, A., Ashman, C., Awty-Carroll, D., Bastien, C., Bopper, S., Botnari, V., Brancourt-Hulmel, M., Chen, Z., Clark, L. V., Cosentino, S., Dalton, S., Davey, C., Dolstra, O., Donnison, I., Flavell, R., Greef, J., Hanley, S. J., Hastings, A., Hertzberg, M., Hsu, T., Huang, L., Iurato, A., Jensen, E., Jin, X., Jørgensen, U., Kiesel, A., Kim, D., Liu, J., McCalmont, J. P., McMahon, B. G., Mos, M., Robson, P., Sacks, E. J., Sandu, A., Scalici, G., Schwarz, K., Scordia, D., Shafiei, R., Shield, I. F., Slavov, G., Stanton, B. J., Swaminathan, K., Taylor, G., Torres, A. F., Trindade, L. M., Tschaplinski, T., Tuskan, J., Yamada, T., Yu, C. Y., Zalesny, R., Zong, J. and Lewandowski, I. 2018. Breeding progress and preparedness for mass-scale deployment of perennial lignocellulosic biomass crops switchgrass, miscanthus, willow, and poplar. Global Change Biology. Bioenergy. https://doi.org/10.1111/gcbb.12566
Dale, V. H., Kline, K. L., Parish, E. S., Cowie, A. L., Emory, R., Malmsheimer, R. W., Slade, R., Smith, C. T., Wigley, T. B., Bentsen, N. S., Berndes, G., Bernier, P., Brandao, M., Chum, H. L., Diaz-Chavez, R., Egnell, G., Gustavsson, L., Schweinle, J., Stupak, I., Trianosky, P., Walter, A., Whittaker, C., Brown, M., Chescheir, G., Dimitriou, I., Donnison, C., Eng, A. G., Hoyt, K. P., Jenkins, J. C., Johnson, K., Levesque, C. A., Lockhart, V., Negri, M. C., Nettles, J. E. and Wellisch, M. 2017. Status and prospects for renewable energy using wood pellets from the southeastern United States. Global Change Biology. Bioenergy. 9 (8), pp. 1296-1305. https://doi.org/10.1111/gcbb.12445
Davey, C. L., Jones, L. E., Squance, M., Purdy, S. J., Maddison, A. L., Cunniff, J., Donnison, I. S. and Clifton-Brown, J. 2017. Radiation capture and conversion efficiencies of Miscanthus sacchariflorus, Miscanthus sinensis and their naturally occurring hybrid Miscanthus x giganteus. Global Change Biology. Bioenergy. 9 (2), pp. 385-399. https://doi.org/10.1111/gcbb.12331
Carruthers, J. M., Cook, S. M., Wright, G. A., Osborne, J. L., Clark, S. J., Swain, J. L. and Haughton, A. J. 2017. Oilseed rape (Brassica napus) as a resource for farmland insect pollinators: quantifying floral traits in conventional varieties and breeding systems. Global Change Biology. Bioenergy. 9 (8), pp. 1370-1379. https://doi.org/10.1111/gcbb.12438
McCalmont, J. P., Hastings, A., Mcnamara, N. P., Richter, G. M., Robson, P., Donnison, I. S. and Clifton-Brown, J. 2017. Environmental costs and benefits of growing Miscanthus for bioenergy in the UK. Global Change Biology. Bioenergy. 9 (3), pp. 489-507. https://doi.org/10.1111/gcbb.12294
Hallingbäck, H. R., Fogelqvist, J., Powers, S. J., Turrion-Gomez, J., Rossiter, R., Amey, J., Martin, T., Weih, M., Gyllenstrand, N., Karp, A., Lagercrantz, U., Hanley, S. J., Berlin, S. and Rönnberg-Wästljung, A-C. 2016. Association mapping in Salix viminalis L. (Salicaceae) - identification of candidate genes associated with growth and phenology. Global Change Biology. Bioenergy. 8 (3), pp. 670-685. https://doi.org/10.1111/gcbb.12280
Haughton, A. J., Bohan, D. A., Clark, S. J., Mallott, M. D., Mallott, V., Sage, R. and Karp, A. 2016. Dedicated biomass crops can enhance biodiversity in the arable landscape. Global Change Biology. Bioenergy. 8 (6), pp. 1071-1081. https://doi.org/10.1111/gcbb.12312
Hillier, J., Whittaker, C., Dailey, A. G., Aylott, M., Casella, E., Richter, G. M., Riche, A. B., Murphy, R., Taylor, G. and Smith, P. 2009. Greenhouse gas emissions from four bioenergy crops in England and Wales: integrating spatial estimates of yield and soil carbon balance in life cycle analyses. Global Change Biology. Bioenergy. 1 (4), pp. 267-281. https://doi.org/10.1111/j.1757-1707.2009.01021.x