阿根廷中西部生物结壳影响下的季节和日土壤温度变化

Pub Date : 2023-10-10 DOI:10.21829/abm130.2023.2212
Ana Laura Navas Romero, Mario Herrera Moratta, Eduardo Martínez-Carretero, Barbara Vento, María C. Fernández-Belmonte
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引用次数: 0

摘要

背景与目的:生物结皮在地球表面起着重要的作用,对土壤参数有直接的影响。它们对土壤温度的影响被认为是最重要的影响之一,因为它们影响生态和水文过程,以及自然生态系统的多样性。虽然生物结皮对土壤表面的影响已经有了一些研究,但关于生物结皮对土壤温度影响的研究仍然很少。我们的目的是评估生物结皮对阿根廷中西部旱地土壤温度条件的影响。方法:在2017-2018年旱季和雨季,对阿根廷中西部蒙特植物地理区域3个站点的温量值进行记录。我们从总共30个随机选择的地块中收集样本。我们使用校准的数据记录仪Ibutton记录了有结皮区和无结皮区两个成对地块的每日温度值。采样共耗时18天,每个地点三天。关键结果:我们的研究结果表明,生物结壳会引起微土壤温度的变化。存在生物结壳的地区在干湿季节都表现出温度下降的趋势。在三个研究地点观察到这种效应。温度下降根据一天中的时间、研究地点和季节而变化。上午、中午和下午录得最高平均气温。结论:生物结皮的存在降低了阿根廷中西部旱地的土壤温度。观察到结壳区和未结壳区平均温度值有很大差异。在极度干旱地区,热减少更为明显。它们如何影响周围环境可能与多种因素有关,如微植物群落的组成、当地的气候和环境条件。
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Insights into variations of seasonal and daily soil temperatures under the effect of biocrusts in central-western Argentina
Background and Aims: Biocrusts play an essential role on the earth’s surface and have a direct influence on soil parameters. Their effects on soil temperature are considered one of the most important because they affect ecological and hydrological processes, as well as the diversity of natural ecosystems. Although there are several studies concerning biocrust effects on the soil surface, investigations about the effect of the biocrust on soil temperature are still scarce. Our objective was to evaluate the influence of biocrusts on soil temperature conditions in drylands of central-western Argentina. Methods: Temperature values were recorded in the Monte phytogeographic region in the central-western part of Argentina, in three sites, during the dry and wet seasons in 2017-2018. We collected samples from a total of 30 randomly selected plots. We recorded daily temperatures values in two paired plots with crusted and uncrusted zones using a calibrated data logger Ibutton. The sampling took 18 days in total, three days on each site.Key results: Our results indicate that biocrusts produce a change in micro-soil temperatures. Areas in which biocrusts are present show a temperature reduction both in the wet and dry seasons. This effect is observed in the three studied sites. Temperature reduction varies according to the time of the day, study site and season. The morning, noon, and afternoon recorded the highest mean temperatures.Conclusions: The presence of biocrusts reduces soil temperatures in drylands of central-western Argentina. Large differences in mean temperature values between crusted and uncrusted zones were observed. The thermal reduction was more notorious in the hyper-arid site. How they affect their surrounding environment can be related to multiple factors, such as the composition of the microphytic community, the local climate and environmental conditions.
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