首页> 外文期刊>The Journal of Applied Ecology >Restoration thinning accelerates structural development and carbon sequestration in an endangered Australian ecosystem
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Restoration thinning accelerates structural development and carbon sequestration in an endangered Australian ecosystem

机译:恢复变薄加速结构发展和碳封存澳大利亚濒危生态系统

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1. Restoration thinning involves the selective removal of stems in woody ecosystems to restore historical or ecologically desirable ecosystem structure and processes. Thinning may also accelerate carbon sequestration in dense regenerating forests. This study considers restoration thinning effects on both structural development and carbon sequestration in a regenerating forest ecosystem. 2. An experimental thinning trial was established in dense Acacia harpophylla regrowth in southern Queensland, Australia. The mean stem density prior to thinning was 17 000 stems ha)1. Four treatments (no thinning and thinning down to 1000, 2000 and 4000 stems ha)1) were applied in a randomized block design. Growth and mortality of a subset of stems was monitored for 2 years. Mixed-effects models and hierarchical Bayesian models (HBMs) were used to test for treatment effects and to explore relationships between neighbourhood density variables and the growth and mortality of stems. The HBMs were subsequently used to parameterise an individual-based simulation model of stand structural development and biomass accumulation over 50 years. 3. The circumference growth rates of stems in thinning treatments were significantly higher than in the control. Woody species diversity and grass cover were also significantly higher in thinning treatments and were strongly negatively correlated with canopy cover. The HBMs confirmed that both growth and mortality were density dependent to some extent. 4. The simulation model predicted a net gain in living above-ground biomass in some thinning treatments (compared with the control treatment) within 20 years after thinning. The 6000 stems ha)1 treatment was predicted to be the optimal thinning density for structural development towards the structure of a nearby mature reference forest. 5. Synthesis and applications. Naturally regenerating woody vegetation provides important habitat for native fauna in fragmented landscapes and represents an efficient means to reinstate habitat connectivity and increase forest area. Many regrowth ecosystems also have considerable potential as land-based carbon sinks. This study demonstrates that restoration thinning can be applied to accelerate stem growth and woody species recruitment and may also accelerate structural development and carbon sequestration in this extensive regrowth ecosystem. The application of restoration thinning to provide dual restoration and carbon benefits should be explored for a wider range of naturally regenerating woody ecosystems.
机译:1. 茎木质生态系统恢复历史或生态理想的生态系统结构和流程。在密集的加速碳封存再生森林。恢复变薄对两种结构的影响发展和碳封存再生森林生态系统。稀释试验成立于茂密的相思在南昆士兰harpophylla再生,澳大利亚。稀疏的17岁000茎公顷)1。(没有变薄,薄到1000、2000和4000公顷)茎1)被应用于随机块设计。茎被监控2年。模型和分层贝叶斯模型(hbm)被用来测试治疗效果和探索邻里之间的关系密度变量和的增长和死亡率茎。parameterise基于单独的仿真模型站结构发展和生物量积累超过50年。增长率变薄处理的茎明显高于对照组。物种多样性和草覆盖也在稀疏的治疗和显著更高与树冠强烈负相关封面。死亡率是密度在一定程度上的依赖。4. 生活在一些稀疏的地上生物量治疗(与控制治疗)在20年之后变薄。1公顷)治疗预测最优稀疏的密度结构发展向附近的一个成熟的结构参考森林。自然再生的木本植物,提供了原生动物在支离破碎的重要栖息地风景和代表一个有效的手段恢复的栖息地连接和增加森林面积。相当大的潜在的陆地碳下沉。变薄可以应用于加速遏制增长和伍迪物种招聘也可以加速结构发展和碳封存在这个广泛的再生生态系统。薄提供双重修复和碳福利应该为更广泛的探索自然再生伍迪的生态系统。

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