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Simulated climate change: are passive greenhouses a valid microcosm for testing the biological effects of environmental perturbations?

机译:模拟气候变化:被动式温室是测试环境扰动生物效应的有效缩影吗?

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AbstractThis paper considers the use of passive greenhouse apparatus in field experiments investigating the biological consequences of climate change. The literature contains many accounts of such experiments claiming relevance of greenhouse treatment effects to global change scenarios. However, inadequacies in microclimate monitoring, together with incomplete understanding of greenhouse modes of action, cast doubt upon such claims. Here, treatment effects upon temperature (magnitude, range, variation, rates of change), moisture (humidity, precipitation, soil water content), light (intensity, spectral distribution), gas composition, snow cover, and wind speed are reviewed in the context of Intergovernmental Panel on Climate Change (IPCC) predictions. It is revealed that greenhouses modify each of these potentially limiting factors in a complex and interactive manner, but that the relationship between this modification and forecast conditions of climate change is poor. Interpretation of biological responses, and their extrapolation to predictive models, is thus unreliable. In order that future greenhouse experiments may overcome criticisms of artefact and lack of rigour, two amendments to methodology are proposed: (1) objective‐orientated design of greenhouse apparatus (2) multiple controls addressing individual environmental factors. The importance of a priori testing of microclimate treatment effects is stresse
机译:摘要本文考虑了被动温室设备在研究气候变化的生物学后果的田间实验中的应用。文献中有许多关于此类实验的描述,声称温室处理效果与全球变化情景相关。然而,小气候监测的不足,加上对温室作用方式的不完全了解,使人们对这种说法产生了怀疑。在这里,在政府间气候变化专门委员会(IPCC)预测的背景下,回顾了处理对温度(幅度、范围、变化、变化率)、湿度(湿度、降水、土壤含水量)、光照(强度、光谱分布)、气体成分、积雪和风速的影响。研究表明,温室以复杂和交互的方式改变了这些潜在的限制因素,但这种变化与气候变化的预测条件之间的关系很差。因此,对生物反应的解释及其对预测模型的推断是不可靠的。为了使未来的温室实验能够克服对人工制品和缺乏严谨性的批评,提出了两种方法论的修正:(1)以目标为导向的温室设备设计(2)针对单个环境因素的多重控制。强调对微气候处理效果进行先验测试的重要性

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