Open Access
Issue
E3S Web Conf.
Volume 304, 2021
2nd International Conference on Energetics, Civil and Agricultural Engineering (ICECAE 2021)
Article Number 03005
Number of page(s) 6
Section Agricultural Engineering
DOI https://doi.org/10.1051/e3sconf/202130403005
Published online 21 September 2021
  1. E.R. Sharma, D.B. Amatya, Degradation of forest resources in Nepal, The Nepal Journal of Forestry 1, 74–81 (1978) [Google Scholar]
  2. A. Movsisyans, Pastures, use of pastures, Science, Moscow (1969). [Google Scholar]
  3. T. Atsbha, A. Estifanos, T. Tesfay, S. Wayu, A. Baraki, Improving the Productivity of Degraded Pasture Land Through Legume Forages over Sowing, International Journal of Science, Technology and Society 5(3), 33–36 (2017) [Google Scholar]
  4. J. Orefice, R.G. Smith, J. Carroll, et al., Forage productivity and profitability in newly-established open pasture, silvopasture, and thinned forest production systems, Agroforest Syst 93, 51–65 (2019) [Google Scholar]
  5. S.R. Khalikov, O.V. Skidan, V.M. Mikityuk, Directions for the development of pasture animal husbandry in Ukraine, International Conference on Scientific Basis of Rational Use of Pastures, Tashkent State Agrarian University, Tashkent (2009) [Google Scholar]
  6. W. Alsharif, M.M. Saad, H. Hirt, Desert Microbes for Boosting Sustainable Agriculture in Extreme Environments. Frontiers in Microbiology 11, 1666 (2020) [CrossRef] [PubMed] [Google Scholar]
  7. C. Pornaro, V. Vincenzi, S. Furin, M. Fazzini, L. Minarelli, S. Macolino, Seasonal changes in dry matter yield from Karst pastures as influenced by morphoclimatic features, PLoS ONE 13(9), e0204092 (2018) [CrossRef] [PubMed] [Google Scholar]
  8. F.P. O'Mara, The role of grasslands in food security and climate change. Annals of Botany 110 (6) 1263–1270 (2012) [CrossRef] [PubMed] [Google Scholar]
  9. N.M. Capstaff, A.J. Miller, Improving the Yield and Nutritional Quality of Forage Crops, Frontiers in Plant Science 9, 535 (2018) [CrossRef] [PubMed] [Google Scholar]
  10. E. Anu., V. Risio, Local and regional processes in low-productive mountain plant communities: The roles of seed and microsite limitation in relation to grazing, Oikos 2, 360–368 (2005) [Google Scholar]
  11. V. Rein, K. Niina, P. Argaadi, S. Are, K. Lagle, Seemnesegu koosselsu moju seguk Lulvide saagile, Trans-Tartu 220, 129–131 (2005) [Google Scholar]
  12. Q. Wang, B. Li, Preliminary data from studies on the biomass of Artemisia Ordositsa in communities in the sandy lands of the Ordos Plateau in China, Zhiwu Shengtai Xuebao 4, 347–353 (1994) [Google Scholar]
  13. B. Bolortsetseg, G. Tuvaansuren, The potential impacts of climate change on pasture and cattie production in Mongolia, Water, Air, and Soil Pollut. 1(2), 95–105 (1996) [Google Scholar]
  14. G. Rippstem, C. Lascano, T. Decaens, La production fourragere dans les savanes d’Amerique du Sud intertropicale, Fourrages 145, 33–52 (1996) [Google Scholar]
  15. N. Kaushal, K. Bhandari, K.H.M. Siddique, H. Nayyar, Food crops face rising temperatures: An overview of responses, adaptive mechanisms, and approaches to improve heat tolerance, Cogent Food & Agriculture 2, 1 (2016) [Google Scholar]

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