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2020 | 29 | 3 |

Tytuł artykułu

Seasoning technologies of Gmelina arborea Roxb. lumber species grown at Bonga, SNNP, Ethiopia

Treść / Zawartość

Warianty tytułu

Języki publikacji

EN

Abstrakty

EN

Słowa kluczowe

Wydawca

-

Rocznik

Tom

29

Numer

3

Opis fizyczny

p.269-281,fig.,ref.

Twórcy

autor
  • Forest Products Development, Ethiopian Environment and Forest Research Institute, Innovation Research and Training Center, Addis Ababa, Ethiopia
autor
  • Forest Products Development, Ethiopian Environment and Forest Research Institute, Innovation Research and Training Center, Addis Ababa, Ethiopia
autor
  • Forest Products Development, Ethiopian Environment and Forest Research Institute, Innovation Research and Training Center, Addis Ababa, Ethiopia
autor
  • Forest Products Development, Ethiopian Environment and Forest Research Institute, Innovation Research and Training Center, Addis Ababa, Ethiopia

Bibliografia

  • [1] Altean, Laura O, Alfred T. and Christina H. (2007). Influence of Temperature on Cracking and Mechanical Properties of Wood During Drying, Bioresource 2 (4), pp. 789-811
  • [2] André L. C., Tiago H. A., Diego H. A., Júlio C.d., Tulio H. P., Francisco A.R. L. Shrinkage for Some Wood Species Estimated by Density. International Journal of Materials Engineering 2016, 6(2): pp 23-27
  • [3] Ani Sulaiman & S. G. Lim (1989). Some Lumber Characteristics of Gmelina Arborea Grown in a Plantation in Peninsular Malaysia. Journal of Tropical Forest Science 2(2): pp. 135-141.
  • [4] Berrocal A., Moya R., Rodríguez-Solis A. M. & Muñoz F., (2017). Drying of Plantation-grown Tectona Grandis Wood with daily-controlled drying rate schedules. Journal of Tropical Forest Science 29(1): 69-79
  • [5] Charu Arora and Vinita Tamirakar, (2017). Gmelena arborea: chemical constituents, pharmacological activities and applications. International Journal of Photomedicine 9(4), 528-542
  • [6] Eldeen I.M.S., Van Heerden F.R. and Van Staden J. (2007). Biological activities of cycloart-23-ene-3,25-diol isolated from the leaves of Trichilia dregeana. South African Journal of Botany 73, 366-371
  • [7] Gemechu, K., Tsegaye, B., and Mulugeta, L. (2018). Actual and Potential Industrial Uses of Eucalyptus Wood in Addis Ababa, Ethiopia. The International Journal of Engineering and Science 7(6), 74-79
  • [8] Getachew D., Wubalem T., Demil T. Worku F. Gemechu K. and Girma T. (2007). Performance of preservative treatments on 32 lumber tree species against Termites and Fungal attack at Bako South Western Ethiopia. Ethiopian Journal of Science, 30(2): 103-116
  • [9] Getachew D., Gemechu K., Worku F. and Yiheyis T., (2005). Some Physical Properties of Juniprous procera and Eucalyptus deglupta Sawn Lumbers. Ethiopian Journal of Natural Science, 7(2), 219-237
  • [10] Getachew Desalegn, AntenehTesfaye, Gemechu Kaba, Saifu Amanuel (2018). Seasoning Characteristics and Potential Uses of Gmelina arborea Lumber Tree Species Grown at Bonga. PP.352-375. ISBN: 978-99944-74-09-7. In: Ethiopian Environment and Forest Research Institute (2018). Proceedings of the 2nd Annual Research Outputs Dissemination Workshop. Yigardu Mulatu, Yalemsew Adela and Agena Anjullo (Eds). Bin International Hotel, Bishoftu, Ethiopia. 26-27 January, 2018, Bishoftu, Ethiopia.
  • [11] Getachew, D. and Wubalem, T. (2010). Major Characteristics and Potential Uses of Eucalyptus Lumber Species Grown in Ethiopia, Gil L, Tadesse W, Tolosana E & López R, Eds. (2010) Eucalyptus Species Management, History, Status and Trends in Ethiopia. Proceedings from the Congress held in Addis Ababa. September 15th-17th
  • [12] Herajarvi H., (2009). Effect of drying technology on aspen wood properties. Silva Fennica 43(3): 433-445.
  • [13] Josue J., (2004). Some Wood Properties of Xylia xylocarpa Planted in Sabah. Sepilok Bulletin 1, 1-15.
  • [14] Loulidi I., Famiri A., Chergui M., Elghorba M., (2012). The physical and mechanical properties of Eucalyptus hybrid E. camaldulensis x E. grandis: Comparison with its parental species. International Journal of Engineering and Science Vol. 1, 01-07.
  • [15] Mahdi S., Hadi D., Hamid R.T., Sina H., Hadi G., and Mohammad A. H., (2013) The Impact of red heartwood on drying characteristics and mass transfer coefficients in beech wood. Austrian Journal of Forest Science, Seite 85 130. Jahrgang, Heft 2, S. 85-101
  • [16] Manahil Fadl Elseed Ibrahim Malik, Abdelazim Y, A, (2015) Effect of Growth Rate on Wood Density of Eucalyptus camaldulensis Wood of Coppice Origin Grown in White Nile State Sudan. Journal of Forest Products & Industries, 4(3), 86-93
  • [17] Mebrate Mihertu. 2004. Growth performance of some indigenous and exotic tree species in South-Western Ethiopia. Ethiopian Agricultural Research Organization. Report No. 58, EARO, Addis Ababa, Ethiopia.
  • [18] Megha S.S. and Sanjay P.S., (2015). Solar Drying Technologies: A review. International Refereed Journal of Engineering and Science Volume 4, Issue 4, 29-35.
  • [19] Mende, F. F., Shurupov I. A. Simple Camera for High-Quality Wood Drying. Engineering and Technology Vol. 2, No. 3, 2015, 95-117.
  • [20] Ofori J. and Brentuo B., (2010). Green moisture content, basic density, and characteristics of the wood of Alstonia boonei, Antrocaryon micraster, Bombax buonopozense, Dialium aubrevillei and Sterculia rhinopetala. Ghana Journal of Forestry Vol. 26, 41-49.
  • [21] Ogunsanwo, O.Y. and Amao-Onidundu, O.N, (2011). Selected Drying Characteristics of Plantation grown Gmelina arborea under an experimental solar drying kiln. Journal of Agriculture and Social Research Vol. 11, No. 2, 128-138
  • [22] Pierre B., Alireza K. and Cecilia B., (2016). Understanding effects of drying methods on wood mechanical properties at Ultra and Cellular levels. Wood and Fiber Science, 48(2), 1-12.
  • [23] Shahverdi, M.; Dashti, H.; Hossein, M.A. Establishing a kiln drying schedule for Poplar (Populus alba) lumber of 7 cm thickness. BioResources 2012, 7 (1), 26-37
  • [24] Shiferaw Alem. 2016. Status and trends of the processed wood products trade in Ethiopia. Department of Forest Botany, Dendrology and Geo-biocenology, Mendel University in Brno, Brno, Czech Republic. Journal of Sustainable Forestry, 2016, VOL. 35, NO. 4, 251-260. http://dx.doi.org/10.1080/10549811. 2016.1166968
  • [25] Taskini, J. (2007). Effect of Drying Methods on Wood Strength: A Comparison Between Microwave, Infrared, and Convectional Drying. Aerospace Mechanics Journal Vol. 3, No. 1, 83-90
  • [26] Zziwa, A.; Bukenya, M.; Sseremba, O. E.; Kyeyune, R.K. (2006). Non-traditional tree species used in the furniture industry in Masaka District, central Uganda. Uganda Journal of Agricultural Sciences 12(1): 29-37
  • [27] Zziwa, A.; Kaboggoza, J. R. S.; Mwakali, A.; Banana, A. Y.; Kyeyune, R. K. (2006). Physical and Mechanical Properties of Some Less Utilised Tropical Lumber Tree Species Growing in Uganda. Uganda Journal of Agricultural Sciences 12 (1): 29-37

Typ dokumentu

Bibliografia

Identyfikatory

Identyfikator YADDA

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