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Renewable energy scenario and environmental aspects of soil emission measurements

机译:可再生能源情景和土壤排放测量的环境方面

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European Commission has set clear targets for 2020 regarding energy and environment policy; these targets include 20% cut in greenhouse gas emissions against the 1990 levels. It is believed that adopted strategy has encouraged the renewable energy applications during the last two decades. Moreover, measurement deviations of carbon dioxide flux occurring in respiration chambers has been seen of a great importance to explain the biochemical parameters affecting the climate change issue. This is attributed on many occasions to chamber design constraints and the way they are coupled with the studied site location. This is illustrated by external disturbances whereby when they happen while gas measurements are taken measurement deviations become more evident. This paper surveys the different soil physical, biological and geotechnical parameters and links them to meteorological ones. Consequently it explores their direct and indirect effects to the produced soil efflux. Furthermore this paper proposes several soil temperature models according to the studied case constraints to see what affects soil efflux production. Moreover a clear understanding of what affects the measurement process was achieved through surveying all the internal and external pressure parameters and how they influence the chamber in relation to time. The conclusion is that respiration chamber designers need to preserve chamber internal temperature and pressure to be equal to the outer atmosphere for the case of stabile external conditions. For the case of unstable external conditions design counter measures are incorporated. Furthermore the appropriate gas sensor needs to be selected professionally with emphasis on the importance of installation location inside the chamber. Likewise soil bacterial type and soil temperature also has an influence on efflux production. (C) 2016 Elsevier Ltd. All rights reserved.
机译:欧盟委员会为能源和环境政策制定了2020年的明确目标。这些目标包括将温室气体排放量比1990年减少20%。据信,在过去的二十年中,采用的策略鼓励了可再生能源的应用。而且,已经看到在呼吸室中发生的二氧化碳通量的测量偏差对于解释影响气候变化问题的生化参数具有重要意义。在许多情况下,这归因于腔室设计的限制以及它们与研究现场位置的耦合方式。外部干扰说明了这一点,当在进行气体测量时发生外部干扰时,测量偏差会变得更加明显。本文调查了不同的土壤物理,生物和岩土参数,并将其与气象参数联系起来。因此,它探索了它们对产生的土壤外流的直接和间接影响。此外,本文根据研究的案例约束提出了几种土壤温度模型,以了解影响土壤外排产生的因素。此外,通过调查所有内部和外部压力参数以及它们如何随时间影响腔室,可以清楚地了解影响测量过程的因素。结论是,在外部条件稳定的情况下,呼吸腔设计人员需要保持腔室内的温度和压力等于外部大气。对于不稳定的外部条件,设计中包含了对策。此外,需要专业地选择合适的气体传感器,重点放在室内安装位置的重要性。同样,土壤细菌的类型和温度也对外排产生有影响。 (C)2016 Elsevier Ltd.保留所有权利。

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