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Soil gas, temperature, matric potential, and creeping bentgrass growth response to subsurface air movement on a sand-based golf green

机译:沙质高尔夫球果岭上的土壤气体,温度,基质势和弯曲草生长对地下空气运动的响应

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Creeping bentgrass (Agrostis palustris Huds.) is used on putting greens for its fine-leaf texture, consistent speed, smooth ball roll, and year-round color. In recent years bentgrass use has extended into the warmer climates of the southern United States. Being a C-3 plant, bentgrass is not well adapted to extended hot and humid environmental conditions. Subsurface air movement systems are now commercially available that can transport air through the root zone to alter soil conditions and potentially improve bentgrass survival. This research investigated the effects of subsurface air movement on the composition of soil gases, matric potential, temperature, and growth response of a sand-based creeping bentgrass golf green. Treatments included: air movement direction (evacuate, inject, and no air) and duration of air movement (0400-0600 HR, 1000-1800 HR, and 24 hours). Treatment combinations were imposed for 13 days. Subsurface air movement reduced CO2 at the 9-cm depth to values <0.0033 mol(.)mol(-1) when evacuating or injecting air, depending upon duration. Soil matric potentials at a 9-cm depth were decreased by a maximum of 96% when evacuating air for 24-hour duration compared to no-air plots. Soil temperatures at 9 cm were decreased approximate to1 to 1.5 degreesC when injecting air from 1000 to 1800 HR and 24-hour treatments and increased approximate to0.75 degreesC when evacuating air from 1000 to 1800 HR. Subsurface air movement did not improve creeping bentgrass turf quality or rooting. Although not effective in improving the growth response of creeping bentgrass, subsurface air movement may be a useful tool to improve soil gas composition, reduce excess soil moisture, and potentially reduce soil temperature(s) of heat-stressed creeping bentgrass golf greens.
机译:putting草(Agrostis palustris Huds。)可以在果岭上使用,其细叶质地,恒定的速度,光滑的滚球和全年的颜色都可用于果岭。近年来,草皮草的使用已扩展到美国南部较温暖的气候。作为C-3植物,本草不适合适应炎热潮湿的环境。地下空气流动系统现在可以在市场上买到,该系统可以将空气输送通过根部区域,以改变土壤条件并潜在地改善草丛的生存。这项研究调查了地下空气流动对土壤气体组成,基质势,温度以及以沙子为基础的creep草杂草高尔夫果岭的生长响应的影响。处理包括:空气流动方向(排空,注入和无空气)和空气流动的持续时间(0400-0600 HR,1000-1800 HR和24小时)。实施治疗组合13天。当排空或注入空气时,地下气体在9厘米深度处的CO2排放量会降低至<0.0033 mol(.mol)(-1),具体取决于持续时间。与不进行空气耕作的地块相比,在连续24小时排空空气时,在9厘米深度处的土壤基质潜力最多降低了96%。注入1000至1800 HR的空气并进行24小时处理后,9 cm处的土壤温度降低至大约1至1.5摄氏度,而从1000至1800 HR的空气排出时,土壤温度升高至大约0.75摄氏度。地下空气移动并不能改善bent草的草皮质量或生根。尽管不能有效地改善bent草的生长期生长响应,但地下空气移动可能是一种有用的工具,可改善土壤气体的组成,减少土壤中的多余水分并潜在地降低热应激的bent草高尔夫球果岭的土壤温度。

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