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A combined rain shelter and free-air CO2 enrichmentsystem to study climate change impacts on plants inthe field

机译:组合式雨棚和自由空气CO2富集系统,用于研究气候变化对田间植物的影响

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1. There is a clear need for field experiments to estimate the effects of global climate change like decreasing precipitation and rising atmospheric CO2 concentration. Adequate methods for controlled manipulations of these environmental parameters under field conditions are scarce, particularly in regard to multi-factor experiments. Here, we describe a new flexible rain shelter system, which can be assembled manually and easily be combined with further experimental treatments in field studies. 2. Frames of tents with a ground area of 12 m × 20 m were assembled on a field site after the sowing of the maize and sorghum crop and after the equipment for free-air CO2 enrichment has been set up. The tents were equipped with transparent tarpaulins, whichwere installed on the frames only in cases of high amounts of precipitations forecast. In autumn, the entire experimental equipment was removed from the field site. 3. The rain shelter tents were operated in the growing seasons 2008 and 2010 for 9 and 20days with 54 mm and 176 mm of precipitation excluded, respectively. In the months with rain shelters in operation, pronounced reductions in precipitation were achieved (2008: 39.5%, 2010: 58.6%). The tent frames did not affect temperature or CO2 concentration, but slightly decreased incident photosynthetic active radiation (PAR) by 6.6%. In times with tarpaulins installed, PAR decreased by 24.1%. Comparing times without and with tarpaulins installed, the fraction of time in which 1-min mean CO2 concentration was within ±20% limits of the setpoint was decreased from 99.7% to 97.8% in 2008 and from 99.0% to 96.7% in 2010, respectively. 4. The rain shelter tents provide a suitable and versatile tool for excluding precipitation from larger areas in the field without relevant disturbances to the soil and aerial environment except a slight decrease in incident radiation, which can be accounted for i.e. in the evaluation of plant growth data. Furthermore, they can be easily combined with further experimental treatments like free-air CO2 enrichment.
机译:1.显然需要进行野外实验来估计全球气候变化的影响,例如降水减少和大气中CO2浓度升高。缺乏在野外条件下控制这些环境参数的适当方法,尤其是在多因素实验方面。在这里,我们描述了一种新型的柔性雨棚系统,该系统可以手动组装,并且可以轻松地与野外研究中的进一步实验处理相结合。 2.在玉米和高粱作物播种后,并在设置了自由空气CO2浓缩设备之后,在田地上组装了一个地面面积为12 m×20 m的帐篷框架。帐篷装有透明的防水油布,只有在预计大量降雨的情况下,才将其安装在车架上。在秋天,整个实验设备被从现场移除。 3.雨棚帐篷在2008年和2010年的生长季节运行了9天和20天,分别排除了54 mm和176 mm的降雨。在设有雨棚的月份中,降水量明显减少(2008年:39.5%,2010年:58.6%)。帐篷框架不影响温度或CO2浓度,但使入射的光合有效辐射(PAR)略微降低了6.6%。在安装了防水油布的时期,PAR下降了24.1%。与不安装篷布和安装篷布的时间相比,平均1分钟内CO2浓度在设定值的±20%范围内的时间比例分别从2008年的99.7%降低至97.8%和2010年的99.0%降低至96.7% 。 4.雨棚帐篷提供了一种合适且用途广泛的工具,用于排除田间较大区域的降水,对土壤和空中环境没有相关干扰,但入射辐射略有减少,这可以在评估植物生长时加以考虑。数据。此外,它们可以轻松地与其他实验处理方法(例如自由空气CO2富集)结合使用。

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