首页> 外文期刊>Journal of the American Society for Horticultural Science >Early growth of muskmelon in mulched minitunnels containing a thermalwater tube. I. Carbon dioxide concentrations in the tunnel
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Early growth of muskmelon in mulched minitunnels containing a thermalwater tube. I. Carbon dioxide concentrations in the tunnel

机译:在装有热水管的覆盖小型隧道中,甜瓜的早期生长。一,隧道内二氧化碳浓度

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Temperature modification is the most investigated environmental factor considered to affect muskmelon (Cucumis melo L. Reticulatus Group) growth in a mulched minitunnel production system. Until now, effects on CO2 concentrations within the tunnel have been ignored. Experiments on production of 'Earligold' netted muskmelon were conducted in 1997, 1998, and 1999 to determine daily CO2 concentrations for 10 mulched minitunnel and thermal water tube combinations. Carbon dioxide concentrations under nonperforated (clear or infrared-blocking polyethylene) tunnels were significantly higher (three to four times) than that of ambient air. Soil respiration under the plastic mulch was primarily responsible for increased CO2 levels in the tunnel. Daily CO2 concentrations in the tunnels varied little during early muskmelon growth, but fluctuated widely as the plants developed. Ventilation significantly decreased CO2 concentrations in the tunnels but levels remained significantly above the control and perforated tunnel treatments. When using mulched minitunnels for muskmelon production, daily CO2 concentrations should be recognized as a significant factor influencing growth.
机译:温度变化是研究最多的环境因素,被认为会影响覆盖式微型隧道生产系统中甜瓜(Cucumis melo L. Reticulatus Group)的生长。到目前为止,对隧道内二氧化碳浓度的影响一直被忽略。在1997年,1998年和1999年进行了生产“ Earligold”网状甜瓜的实验,以确定10个覆盖的微型隧道和热水管组合的每日CO2浓度。在无孔(透明或红外线阻挡的聚乙烯)隧道下的二氧化碳浓度比周围空气高得多(三到四倍)。地膜覆盖下的土壤呼吸作用主要是导致隧道中二氧化碳含量增加的原因。香瓜早期生长期间,隧道中的每日CO2浓度变化不大,但随着植物的生长而波动很大。通风显着降低了隧道中的二氧化碳浓度,但水平仍显着高于对照和穿孔隧道处理。当使用覆盖的迷你隧道生产甜瓜时,应将每日的CO2浓度视为影响生长的重要因素。

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