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Towards Developing a Functional-Based Approach for Constructed Peatlands Evaluation in the Alberta Oil Sands Region, Canada

机译:在加拿大艾伯塔省油砂地区开发基于功能的人工泥炭地评估方法

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Peatlands support vital ecosystem services such as water regulation, specific habitat provisions and carbon storage. In Canada, anthropogenic disturbance from energy exploration has undermined the capacity of peatlands to support these vital ecosystem services, and thus presents the need for their reclamation to a functional ecosystem. As attempts are now being made to implement reclamation plans on post-mining oil sands landscapes, a major challenge remains in the absence of a standard framework for evaluating the functional state of a constructed peatland. To address this challenge, we present a functional-based approach that can guide the evaluation of constructed peatlands in the Alberta oil sands region. We achieved this by conducting a brief review, which synthesized the dominant processes of peatland functional development in natural analogues. Through the synthesis, we identified the interaction and feedback processes that underline various peatland ecosystem functions and their quantifiable variables. By exploring the mechanism of key ecosystem interactions, we highlighted the sensitivity of microbially mediated biogeochemical processes to a range of variability in other ecosystem functions, and thus the appropriateness of using them as functional indicators of ecosystem condition. Following the verification of this concept through current pilot fen reclamation projects, we advocate the need for further research towards modification to a more cost-efficient approach that can be applicable to large-scale fen reclamation projects in this region.
机译:泥炭地支持重要的生态系统服务,例如水调节,特定的栖息地规定和碳储存。在加拿大,能源勘探的人为干扰削弱了泥炭地支持这些重要生态系统服务的能力,因此提出了将其恢复为功能性生态系统的需求。由于现在正在尝试在开采后的油砂地貌上实施填海计划,因此,在缺乏用于评估人工泥炭地功能状态的标准框架的情况下,主要挑战仍然存在。为了解决这一挑战,我们提出了一种基于功能的方法,可以指导对艾伯塔省油砂地区人工泥炭地的评估。我们通过进行简短的综述来实现这一目标,该综述总结了天然类似物中泥炭地功能开发的主要过程。通过综合,我们确定了交互作用和反馈过程,这些过程强调了泥炭地生态系统的各种功能及其可量化变量。通过探索关键的生态系统相互作用的机制,我们强调了微生物介导的生物地球化学过程对其他生态系统功能的一系列变化的敏感性,因此,将其用作生态系统状况的功能指标是适当的。在通过当前的试点fen填海工程验证了这一概念之后,我们主张需要进行进一步研究,以修改成本效益更高的方法,以适用于该地区的大规模fen填海工程。

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