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首页> 外文期刊>HortScience >Water Use and Growth of Hibiscus acetosella 'Panama Red' Grown with a Soil Moisture Sensor-controlled Irrigation System
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Water Use and Growth of Hibiscus acetosella 'Panama Red' Grown with a Soil Moisture Sensor-controlled Irrigation System

机译:土壤水分传感器控制灌溉系统种植的芙蓉对虾'巴拿马红'的水分利用和生长

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Efficient water use is becoming increasingly important for horticultural operations to satisfy regulations regarding runoff along with adapting to the decreasing availability of water to agriculture. Generally, best management practices (BMPs) are used to conserve water. However, BMPs do not account for water requirements of plants. Soil moisture sensors can be used along with an automated irrigation system to irrigate when substrate volumetric water content (theta) drops below a set threshold, allowing for precise irrigation control and improved water conservation compared with traditional irrigation practices. The objective of this research was to quantify growth of Hibiscus acetosella 'Panama Red' (PP#20,121) in response to various theta thresholds. Experiments were performed in a greenhouse in Athens, GA, and on outdoor nursery pads in Watkinsville and Tifton, GA. Soil moisture sensors were used to maintain theta above specific thresholds (0.10, 0.15, 0.20, 0.25, 0.30, 0.35, 0.40, and 0.45 m(3).m(-3)). Shoot dry weight increased from 7.3 to 58.8 g, 8.0 to 50.6 g, and from 3.9 to 35.9 g with increasing theta thresholds from 0.10 to 0.45 m(3).m(-3) in the greenhouse, Watkinsville, and Tifton studies, respectively. Plant height also increased with increasing theta threshold in all studies. Total irrigation volume increased with increasing theta threshold from 1.9 to 41.6 L/plant, 0.06 to 23.0 L/plant, and 0.24 to 33.6 L/plant for the greenhouse, Watkinsville, and Tifton studies, respectively. Daily light integral (DLI) was found to be the most important factor influencing daily water use (DWU) in the greenhouse study; DWU was also found to be low on days with low DLI in nursery studies. In all studies, increased irrigation volume led to increased growth; however, water use efficiency (grams of shoot dry weight produced per liters of water used) decreased for theta thresholds above 0.35 m(3).m(-3). Results from the greenhouse and nursery studies indicate that sensor-controlled irrigation is feasible and that theta thresholds can be adjusted to control plant growth.
机译:为了满足有关径流的法规以及适应农业用水量的减少,有效用水对园艺运营变得越来越重要。通常,最佳管理实践(BMP)用于节约用水。但是,BMP不能解决植物对水的需求。土壤湿度传感器可与自动灌溉系统一起使用,以在基质体积水含量(theta)降至设定阈值以下时进行灌溉,与传统的灌溉方式相比,可实现精确的灌溉控制并改善节水效果。这项研究的目的是量化木槿醋酸纤维'巴拿马红'(PP#20,121)响应各种theta阈值的生长。实验是在佐治亚州雅典市的温室中,以及在佐治亚州沃特金斯维尔和蒂夫顿的室外育苗垫上进行的。土壤湿度传感器用于维持theta高于特定阈值(0.10、0.15、0.20、0.25、0.30、0.35、0.40和0.45 m(3).m(-3))。在温室,Watkinsville和Tifton研究中,随着theta阈值分别从0.10增加到0.45 m(3).m(-3),芽干重从7.3增加到58.8 g,从8.0增加到50.6 g,从3.9增加到35.9 g。 。在所有研究中,植物高度也随着θ阈值的增加而增加。对于温室,Watkinsville和Tifton研究,总灌溉量随着theta阈值分别从1.9 / 41.6 L /株,0.06至23.0 L /株和0.24至33.6 L /株而增加。在温室研究中,发现每日光积分(DLI)是影响每日用水量(DWU)的最重要因素。在托儿所研究中,在DLI较低的日子里,DWU也较低。在所有研究中,增加灌溉量导致增长。但是,对于theta阈值超过0.35 m(3).m(-3)而言,水分利用效率(每升水所产生的枝干重量克数)降低。温室和苗圃研究的结果表明,传感器控制的灌溉是可行的,可以调节theta阈值来控制植物的生长。

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