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A hot-blast warming facility for simulating global warming in low-stature crop systems and its application case to assess elevated temperature effects on rice in Central China

机译:一种热风加温设施,用于模拟低位作作物系​​统的全球变暖及其应用案例,以评估中国中部水稻温度效应的升高

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To study the impact of climate warming on crops, it is crucial to have a warming equipment suitable for their field environment. A facility is needed that can provide suitable combinations of different temperatures at reasonable cost for large plots. Here, an additional field warming facility option named the hot-blast warming facility (HBWF), which comprised heaters, blowers, wind breaks, and a control board was developed. An application case based on HBWF was carried out to assess elevated temperature effects on rice in Central China during 2015 and 2016. We tested four elevated temperature treatments on four rice cultivars under paddy field conditions and measured yield and its components. Heating convection air directly, the facility could increase the temperature of the rice canopy up to 1–2 °C, which could properly simulate global warming. Considering the costs, the HBWF reduced the operating costs because of its relatively lower power consumption (0.164 kW/m2), which was 80% lower than that of Free Air Temperature Increase. Our results demonstrate that the HBWF could build a 25 m2 homogeneous heating area and had little effect on the relative humidity under a paddy field environment. Warming treatments significantly reduced the grain yield by 4.4–22.7% in 2015, and 30.8–61.9% in 2016, compared to the control. The main contribution to the significant decrease of the grain yields was the decrease in seed setting rate. Moreover, a reduction of 1000-grain weight led to the decline in grain yield. The increasing ranges of the temperature simulated by HBWF were stable in different years, however, whether the elevated treatments demonstrated significant difference on rice growth mainly decided by the basic atmospheric temperature (as the control) during the growth period. The new warming facility is suitable for field trials to assess elevated temperature combinations and provides an extra equipment option for use in elevated temperature research in the future.
机译:为研究气候变暖对作物的影响,具有适合其现场环境的加热设备至关重要。需要一种设施,可以以合理的成本提供适当的不同温度的组合。在此,开发了一种额外的现场升温设施选项,该设施选项包括加热器,鼓风机,风断和控制板的热爆暖设施(HBWF)。进行了基于HBWF的应用案例,以评估2015年和2016年中部地区稻米的升高效应。我们在稻田条件下对四种水稻品种进行了四种升高的温度处理,并测量产量及其组分。加热对流空气直接,设施可以将水稻冠层的温度提高到1-2°C,这可以正确模拟全球变暖。考虑到成本,HBWF降低了运营成本,因为其功耗相对较低(0.164千瓦/平方米),其低于自由空气温度的80%。我们的结果表明,HBWF可以构建25平方米的均匀加热区域,对稻田环境下的相对湿度几乎没有影响。与对照相比,加热治疗在2015年将粮食产量显着降低4.4-22.7%,2016年的30.8-61.9%。对谷物产量显着降低的主要贡献是种子设定率的降低。此外,减少1000粒重量导致籽粒产量下降。通过HBWF模拟的温度的增加范围在不同年份中稳定,但是升高的处理是否对水稻生长的显着差异主要由生长期期间基本大气温度(作为对照)决定。新的变暖设施适用于现场试验,以评估升高的温度组合,并提供额外的设备选项,以便将来在高温研究中使用。

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