{"id":6524,"date":"2022-10-16T04:04:49","date_gmt":"2022-10-16T04:04:49","guid":{"rendered":"https:\/\/file.currentschoolnews.com\/?post_type=product&p=6524"},"modified":"2022-10-20T09:54:59","modified_gmt":"2022-10-20T09:54:59","slug":"influence-of-plantation-age-on-characteristics-of-gmelina-arborea-pdf","status":"publish","type":"product","link":"https:\/\/pastexamquestions.com\/product\/influence-of-plantation-age-on-characteristics-of-gmelina-arborea-pdf\/","title":{"rendered":"Influence of Plantation Age on Characteristics of gmelina Arborea (PDF)"},"content":{"rendered":"

– Influence of Plantation Age on Characteristics of gmelina Arborea (PDF) –<\/strong><\/span><\/p>\n

Download Influence of Plantation Age on Characteristics of gmelina Arborea (PDF)<\/strong><\/span>. Forestry and Wildlife students who are writing their projects can get this material to aid their research work.<\/span><\/span><\/p>\n

Abstract<\/b><\/span><\/h2>\n

The study examined the influence of age series on fibre characteristics of gmelina\u00a0 Arborea<\/em> established in the mamu forest reserve, Anambra state.<\/p>\n

Three gmelina Arborea<\/em> stand of 20,22, and 27 years old were used for the study. wood samples were collected from the core wood, inner wood and outer wood at 10%, 50% and 90% of the tree merchantable height<\/em> in accordance with the standard procedure (British standard<\/em> specification, bs 373 (1989).<\/p>\n

The study examined the anatomical characteristics<\/em> of gmelina Arborea wood in respect to their age series such as fibre length, fibre diameter, lumen width and cell wall thickness<\/em> were evaluated.<\/p>\n

The mean fibre length of the age series was 0.9676 mm, 1.0705 mm and <\/em>1.1363 mm for 20, 22 and\u00a0 27\u00a0 years respectively.\u00a0 the\u00a0\u00a0\u00a0 mean\u00a0 fibre\u00a0 diameter\u00a0 0.0256\u00a0 mm,\u00a0 0.0269\u00a0 mm and0.0249mm;mean lumen width 0.0293 mm, 0.0161 mm and 0.0179 mm;<\/p>\n

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Introduction<\/span><\/span><\/strong><\/span><\/h2>\n

Wood presents a unique challenge in use because of its variability and the directional nature<\/em> of its basic structure. These are the sources of some of its attractive features but they require also that they are handled and applied in ways appropriate for good end-use.<\/p>\n

The ways in which the structural features of the particular species determine their properties and limit the uses and applications can be studied more precisely (Jayeolaet al.,<\/em> 2009).<\/p>\n

Many attempts have been made to define wood quality (Keith 1985), but the definition proposed by (Mitchell 1961) appears to be the most widely cited: “Wood quality is the result of physical and chemical<\/em> characteristics possessed by a tree or a part of a tree that enable it to meet the property requirements for different end products”.<\/p>\n

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