The Effect of Mechanical Conditioning on Physical Conditions of Miscanthus Plants
- 1 Department of Agricultural and Biological Engineering, The Pennsylvania State University, Pennsylvania, United States
- 2 Department of Agricultural and Biological Engineering, The Pennsylvania State University, Pennsylvania, United States
Abstract
Miscanthus is an emerging dedicated energy crop, which can provide excel lent yield on marginal lands. However, this crop is more difficult to harvest than many conventional energy crops such as corn stover and switchgrass due to its tall and rigid stalks. Crop samples for laboratory studies were col lected from the field and the effects of roll spacing, roll speed, and crop input of a mechanical conditioning device on the physical conditions of miscanthus were studied in a lab setting. Test results showed that mechanical conditioning is effective to change the physical conditions of miscanthus to make baling possible or easier. Results also showed that the roll spacing had the most significant impact on the physical conditions of miscanthus, shown by a 115% increase in conditioning over a 0.95 cm (75%) reduction in roll spacing. Increased roll spacing and speed were shown to decrease the amount of torque required to condition the miscanthus.
- US Department of Energy (2007) Energy Independence and Security Act. Vol. 51. US DOE.
- National Renewable Energy Laboratory (2014) NREL Biomass Research—Glossary of Biomass Terms. National Renewable Energy Laboratory. http://www.nrel.gov/biomass/glossary.html
- Liu, Q., Mathanker, S.K., Zhang, Q. and Hansen, A.C. (2012) Biomechanical Properties of Miscanthus Stems. Transactions of the ASABE, 55, 1125-1131. https://doi.org/10.13031/2013.42231
- Taylor, R.K. (1992) Mechanically Conditioning Alfalfa Hay. Manhattan, Kansas USA: Cooperative Extension Service, Kansas State University.
- Redcay, S., Koirala, A. and Liu, J. (2018) Effects of Roll and Flail Conditioning Systems on Mowing and Baling of Miscanthus × giganteus Feedstock. Biosystems Engineering, 172, 134-143. https://doi.org/10.1016/j.biosystemseng.2018.06.009
- Nixon, P. and Bullard, M. (2003) Optimisation of Miscanthus Harvesting and Storage Strategies. Technical Report No. B-CR-00745-00-00; URN-03-1633. Energy Power Resources Ltd., Bio-Renewables Ltd., United Kingdom.
- Fasick, G.T. and Liu, J. (2020) Lab Scale Studies of Miscanthus Mechanical Conditioning and Bale Compression. Biosystems Engineering, 200, 366-376. https://doi.org/10.1016/j.biosystemseng.2020.10.011