Soil temperature variations between a Typic Fragiudults and a Typic Paleudults in the Ozark Highlands of Missouri

Q4 Agricultural and Biological Sciences Journal of Agriculture of The University of Puerto Rico Pub Date : 2022-08-19 DOI:10.46429/jaupr.v105i2.20071
Jorge L. Lugo-Camacho, S. Indorante, J. Kabrick, M. Muñoz
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Abstract

Soil temperature measurements from a Soil Climate Analysis Network (SCAN) monitoring site in the Ozark Highlands Major Land Resource Area (MLRA 116A) were evaluated on landscapes comprising Typic Fragiudults (Scholten series) and Typic Paleudults (Poynor series). The five soil forming factors were similarfor both soils, with the major difference between the adjacent soils being a fragipan in the Scholten series. Air and soil temperatures were collected from a weather station of the USDA-Natural Resources Conservation Service near the border of the mesic soil temperature regime and udic soil moisture regime zone. The mean annual soil temperature observed in the Scholten soil (13.5° C) was0.5° C cooler than the mean annual soil temperature in the Poynor soil (14.0° C). This study showed little difference in mean soil temperatures between soiltypes from January to April and from August to December. During the months of May, June and July, the Poynor mean soil temperature was higher (by 1.1° C, 1.4° C and 1.2° C, respectively) than the Scholten mean soil temperature.According to this study, it is possible that the mean annual soil temperature of fragipan soils is cooler than adjacent soils with no fragipan properties. Thegreatest differences between mean soil temperature and mean air temperature were observed during the months of November (5.1° C for Scholten soil and 5.3°C for Poynor soil); December (5.0° C for Scholten soil and 4.9° C for Poynor soil); and January (4.5° C for Scholten soil and 4.4° C for Poynor soil). The smallestdifference was during the month of March (0° C for Scholten soil and 0.3° C for Poynor soil). This study also indicated that the mean annual soil temperature in the Ozark Highlands can vary by soil series depending on soil properties affecting heat transfer within pedons.
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密苏里州欧扎克高地典型脆弱成年区和典型古成年区土壤温度的变化
对Ozark高地主要土地资源区(MLRA 116A)土壤气候分析网络(SCAN)监测点的土壤温度测量结果进行了评估,评估了包括类型脆弱型(Scholten系列)和类型苍白型(Poynor系列)在内的景观。两种土壤的五个土壤形成因子相似,相邻土壤之间的主要差异是Scholten系列中的脆弱性。空气和土壤温度是从美国农业部自然资源保护局的一个气象站收集的,该气象站位于中温区和中温区边界附近。在Scholten土壤中观察到的年平均土壤温度(13.5°C)比Poynor土壤的年平均温度(14.0°C)低0.5°C。这项研究表明,1月至4月和8月至12月,不同土壤类型的平均土壤温度差异不大。在5月、6月和7月,Poynor平均土壤温度比Scholten平均土壤温度高(分别高1.1°C、1.4°C和1.2°C)。根据这项研究,脆弱性土壤的年平均土壤温度可能比没有脆弱性的邻近土壤更低。平均土壤温度和平均气温之间的差异在11月份最大(Scholten土壤为5.1°C,Poynor土壤为5.3°C);12月(Scholten土壤为5.0°C,Poynor土壤为4.9°C);和一月(Scholten土壤为4.5°C,Poynor土壤为4.4°C)。差异最小的是在三月(Scholten土壤为0°C,Poynor土壤为0.3°C)。这项研究还表明,奥扎克高地的年平均土壤温度可能因土壤系列而异,这取决于影响土壤内部传热的土壤特性。
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来源期刊
CiteScore
0.20
自引率
0.00%
发文量
64
审稿时长
6 months
期刊介绍: The Journal of Agriculture of the University of Puerto Rico issued biannually by the Agricultural Experiment Station of the University of Puerto Rico, Mayagüez Campus, for the publication of articles and research notes by staff members or others, dealing with scientific agriculture in Puerto Rico and elsewhere in the Caribbean and Latin America.
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