Agriculture Reference
In-Depth Information
51. Rehm GW (1984) Yield and quality of a warm-season grass mixture treated with N, P, and
atrazine. Agron J 76:731-734
52. Lee DK, Boe A (2005) Biomass production of switchgrass in Central South Dakota. Crop Sci
45:2583-2590
53. Clifton-Brown J, Chiang YC, Hodkinson TR (2008) Miscanthus: genetic resources and
breeding potential to enhance bioenergy production. In: Vermerris W (ed) Genetic improve-
ment of bioenergy crops. Springer, New York, pp 273-294
54. Jones MB, Walsh M (2011) Miscanthus —for energy and fi bre. James & James, London
55. Stewart JR, Toma Y, Fernandez FG, Nishiwaki A, Yamada T, Bollero G (2009) The ecology
and agronomy of Miscanthus sinensis , a species important to bioenergy crop development, in
its native range in Japan: a review. Glob Chang Biol Bioenergy 1(2):126-153
56. Scally L, Hodkinson TR, Jones MB (2001) Origins and taxonomy of Miscanthus . In: Jones
MB, Walsh M (eds) Miscanthus for energy and fi bre. James & James, London
57. Lewandowski I, Clifton-Brown JC, Scurlock JMO, Huisman W (2000) Miscanthus : European
experience with a novel energy crop. Biomass Bioenergy 19:209-227
58. Linde-Laursen I (1993) Cytogenetic analysis of Miscanthus 'Giganteus', an interspecifi c
hybrid. Hereditas 119:297-300
59. Hodkinson TR, Chase MW, Takahashi C, Leitch IJ, Bennett MD, Renvoize SA (2002) The
use of dna sequencing (ITS and trnL-F), AFLP, and fl uorescent in situ hybridization to study
allopolyploid Miscanthus (Poaceae). Am J Bot 89(2):279-286
60. Barney JN, DiTomaso JM (2008) Nonnative species and bioenergy: are we cultivating the
next invader? Bioscience 58(1):64-70
61. Quinn LD, Stewart JR, Yamada T, Toma Y, Saito M, Shimoda K et al (2012) Environmental
tolerances of Miscanthus sinensis in invasive and native populations. Bioenergy Res
5:139-148
62. Pyter R, Heaton E, Dohleman F, Voigt T, Long S (2009) Agronomic experiences with
Miscanthus × giganteus in Illinois, USA. In: Mielenz JR (ed) Biofuels: Methods and proto-
cols, vol 2009, New York: Human Press., pp 41-52
63. Heaton EA, Dohleman FG, Miguez F, Juvik JA, Lozovaya V, Widholm J et al (2010)
Miscanthus : a promising biomass crop. Adv Bot Res 56:75-135
64. Richter GM, Riche AB, Dailey AG, Gezan SA, Powlson DS (2008) Is UK biofuel supply
from Miscanthus water-limited? Soil Use Manag 24:235-245
65. Beale CV, Morison JIL, Long SP (1999) Water use effi ciency of C4 perennial grasses in a
temperate climate. Agric Forest Meteorol 96:103-115
66. Dressler U-B (1993) Produktivität, wasserhaushalt und nitratauswaschung von Miscanthus
sinensis “Giganteus” (Riesenchinaschilf). Mitteilungen der Gesellschaft für Pfanzenbau-
wissenschaften 6:201-204
67. McIsaac GF, David MB, Mitchell CA (2010) Miscanthus and switchgrass production in cen-
tral Illinois: impacts on hydrology and inorganic nitrogen leaching. J Environ Qual
39(5):1790-1799
68. Beale CV, Long SP (1997) The effects of nitrogen and irrigation on the productivity of C4
grasses Miscanthus × giganteus and Spartina cynosuroides . Asp Appl Biol 49:225-230
69. Mediavilla V, Lehmann J, Meister E, Stünzl H (1997) Biomasseproduktion mit Chinaschilf
und einheimischen. Gräsern Agrarforschung 4:295-298
70. Caslin B, Finnan J, Easson L (2012) Miscanthus best practices guidelines. Teagasc, Crops
Research Centre, Ireland and AFBI, Agri-Food and Bioscience Institute, Northern Ireland,
2010. http://www.afbini.gov.uk/miscanthus-best-practice-guidelines.pdf . Accessed 31 Oct 2012
71. Maughan M, Bollero G, Lee DK, Darmody R, Bonos S, Cortese L et al (2012) Miscanthus ×
giganteus productivity: the effects of management in different environments. Glob Chang
Biol Bioenergy 4(3):253-265
72. Finch JW, Riche AB (2010) Interception losses from Miscanthus at a site in south-east
England—an application of the Gash model. Hydrol Process 24:2594-2600
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