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Effectiveness of the Miyawaki method in Mediterranean forest restoration programs

机译:宫胁方法在地中海森林恢复计划中的有效性

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In the 1980s, Professor Akira Miyawaki introduced a new and innovative reforestation approach in Japan with the challenge to restore indigenous ecosystems, and maintaining global environments, including disaster prevention and carbon dioxide (CO_2) mitigation. Here, natural vegetation successional stages (from bare soil to mature forest) are practically forced and reproduced, accelerating natural successional times. The Miyawaki method has been applied in the Far East, Malaysia, and South America; results have been very impressive, allowing quick environmental restorations of strongly degraded areas. However, these applications have always been made on sites characterized by high precipitation. The same method has never been used in a Mediterranean context distinguished by summer aridity and risk of desertification. A first test was carried out by the University of Tuscia, Department of Forest and Environment (DAF), 11 years ago in Sardinia (Italy) on an area where traditional reforestation methods had failed. For an appropriate Miyawaki application on this site, the original method was modified while maintaining its theoretical principles. Results obtained 2 and 11 years after planting are positive: having compared the traditional reforestation techniques, plant biodiversity using the Miyawaki method appears very high, and the new coenosis (plant community) was able to evolve without further operative support after planting. Therefore, the implementation of supplementary technique along with cost reduction might provide a new and innovative tool to foresters and ecological engineering experts for Mediterranean environmental reforestation program.
机译:在1980年代,宫胁彰教授在日本提出了一种新的创新性造林方法,以恢复本地生态系统和维护全球环境为挑战,包括防灾和减少二氧化碳(CO_2)。在这里,自然植被的演替阶段(从裸土到成熟的森林)实际上被强迫和繁殖,从而加快了自然演替的时间。 Miyawaki方法已在远东,马来西亚和南美使用。结果令人印象深刻,可以对严重退化的地区进行快速的环境修复。但是,这些应用总是在降水量高的地方进行的。在地中海地区,以夏季干旱和沙漠化风险为特征,从未使用过相同的方法。图西大学大学森林与环境系(DAF)于11年前在撒丁岛(意大利)对传统的造林方法失败的地区进行了首次测试。为了在该站点上适合宫城应用,在保留其理论原理的前提下对原始方法进行了修改。种植后2年和11年所获得的结果是积极的:与传统的造林技术相比,使用Miyawaki方法进行的植物生物多样性显得很高,并且在种植后无需进一步的操作支持,新的杂种优势(植物群落)就能够进化。因此,实施补充技术以及降低成本可能为林业工作者和生态工程专家提供一种针对地中海环境再造林计划的新的创新工具。

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