两种地中海橄榄树栽培品种的枝干木材的机械特性

IF 2.2 3区 农林科学 Q2 FORESTRY Journal of Wood Science Pub Date : 2024-08-17 DOI:10.1186/s10086-024-02153-1
Angelo Mammoliti, Maria Francesca Cataldo, Salvatore Francesco Papandrea, Andrea Rosario Proto
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In fact, there is still a lack of knowledge about olive wood characteristics and considering the valuable role of olive species in the Mediterranean area, the current study aimed to determine and compare the physical and mechanical properties of branches and stem wood of two olive tree cultivars, “Sinopolese” and “Ottobratica”, to provide information on this wood species. These two olive cultivars are commonly cultivated in the Calabria region (Southern Italy) for the extraction of oil from drupes, but large masses of wood are derived from their pruning. For the choice of parts, the stem was considered to become a branch when, above each branch intersection, it changed in diameter and direction of growth. The branches with a diameter lower than 20 cm were excluded. 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引用次数: 0

摘要

目前,人们对木材有着浓厚的兴趣,预计全球对这种材料的需求将大幅增长。因此,作为一种额外的供应来源,市场对果园木材的需求也在不断增长。出于这些原因,我们开展了多项研究,以评估通过果园修剪或拆卸获得的木材的特性。尽管修剪获得了大量原材料,但科学界尚未对橄榄木的机械特性进行全面研究,因此获得的木质材料通常被视为废料或木柴。事实上,人们对橄榄木材的特性仍然缺乏了解,考虑到橄榄树种在地中海地区的宝贵作用,目前的研究旨在确定和比较两个橄榄树栽培品种 "Sinopolese "和 "Ottobratica "的枝干和茎干木材的物理和机械特性,以提供有关该木材品种的信息。这两个橄榄树栽培品种通常在卡拉布里亚地区(意大利南部)种植,用于从核果中榨油,但在修剪过程中会产生大量木材。在选择部位时,当茎干在每个枝条交叉点上方的直径和生长方向发生变化时,就被认为是一个枝条。直径小于 20 厘米的枝条被排除在外。为此进行的测试包括粗糙度剖面;冲击波;振动分析;静态弹性模量;弯曲强度;耐磨性;静态硬度;足迹;压缩强度;平行于纹理的螺钉抽出阻力;垂直于纹理的螺钉抽出阻力。在栽培品种-树木部分与物理和机械性能之间进行了 MANOVA 分析。结果表明,两种栽培品种之间存在一些差异,主要与弹性模量和断裂模量、足迹、压缩强度和螺钉退出阻力等机械性能有关,一般来说,"Sinopolese "栽培品种的数值高于 "Ottobratica "栽培品种。在相同栽培品种的树木部分(茎干和枝条)之间,枝条在大多数测试中都表现出较高的结果,但只有在静态弹性模量、弯曲强度、静态硬度和螺钉抽出阻力方面因栽培品种不同而存在突出的统计差异。这一结果表明,即使考虑到从橄榄修剪活动中获得的大量木材,具有其特性的橄榄枝木也可以进行商业利用,这对当地农村经济来说是一个有效的机会。从物理和机械特性的角度扩大对橄榄木的了解,可以增加其在多个领域的使用,并通过支持对其最佳最终用途的决策,确保对木材资源的应用有更清醒的认识。
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Mechanical properties of branch and stem wood for two Mediterranean cultivars of olive tree
There is currently a strong interest in wood and the demand for this material is expected to grow significantly worldwide. Consequently, market demand for wood from fruit orchards is growing as an additional source of supply. For these reasons, several studies were conducted to evaluate the properties of wood derived by orchard pruning or dismantling. Despite the abundance of raw materials from pruning, the mechanical properties of olive wood have not been studied completely by the scientific community, so the woody material obtained is usually considered waste or firewood. In fact, there is still a lack of knowledge about olive wood characteristics and considering the valuable role of olive species in the Mediterranean area, the current study aimed to determine and compare the physical and mechanical properties of branches and stem wood of two olive tree cultivars, “Sinopolese” and “Ottobratica”, to provide information on this wood species. These two olive cultivars are commonly cultivated in the Calabria region (Southern Italy) for the extraction of oil from drupes, but large masses of wood are derived from their pruning. For the choice of parts, the stem was considered to become a branch when, above each branch intersection, it changed in diameter and direction of growth. The branches with a diameter lower than 20 cm were excluded. The tests conducted for this purpose were: Roughness profile; Impact wave; Vibrational analysis; Static modulus of elasticity; Bending strength; Abrasion resistance; Static hardness; Footprints; Compression strength; Screw withdrawal resistance parallel to grain; Screw withdrawal resistance perpendicular to grain. A MANOVA analysis was conducted between the Cultivar-Tree part and the physical and mechanical properties. The results showed some differences between the two cultivars principally related to mechanical properties such as moduli of elasticity and rupture, footprint, compression strength, and screw withdrawal resistances, where in general, the “Sinopolese” cultivar showed higher values than the “Ottobratica”. Between the tree parts (stem and branches) within the same cultivars, branches demonstrated higher results in the majority of the tests, but highlighting statistical differences only in terms of static modulus of elasticity, bending strength, static hardness and screw withdrawal resistances depending on the cultivar. This result suggests that the branch wood, with its characteristics, could be valorized in the commercial utilization representing a valid opportunity for the local rural economy, even considering the conspicuous amount of wood obtained from olive pruning activity. Expanding knowledge about olive wood in terms of physical and mechanical characteristics could increase its use in multiple sectors and ensure a more aware use of the application of the wood resources by supporting the decision on its best end use.
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来源期刊
Journal of Wood Science
Journal of Wood Science 工程技术-材料科学:纸与木材
CiteScore
5.40
自引率
10.30%
发文量
57
审稿时长
6 months
期刊介绍: The Journal of Wood Science is the official journal of the Japan Wood Research Society. This journal provides an international forum for the exchange of knowledge and the discussion of current issues in wood and its utilization. The journal publishes original articles on basic and applied research dealing with the science, technology, and engineering of wood, wood components, wood and wood-based products, and wood constructions. Articles concerned with pulp and paper, fiber resources from non-woody plants, wood-inhabiting insects and fungi, wood biomass, and environmental and ecological issues in forest products are also included. In addition to original articles, the journal publishes review articles on selected topics concerning wood science and related fields. The editors welcome the submission of manuscripts from any country.
期刊最新文献
Fracture predictions in impact three-point bending test of European beech Synthesis of condensed tannin model compounds regioselectively labeled with a 13C-stable isotope Mechanical properties of branch and stem wood for two Mediterranean cultivars of olive tree Effects of moisture content on the behaviour of Scots pine heartwood and sapwood under impact Chemical changes of polysaccharides in heat-treated European beech wood
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