Soilscapes from Byers Peninsula, Maritime Antarctic: landform-lithology controls in soil formation.

IF 1.1 4区 综合性期刊 Q3 MULTIDISCIPLINARY SCIENCES Anais da Academia Brasileira de Ciencias Pub Date : 2025-01-13 eCollection Date: 2025-01-01 DOI:10.1590/0001-3765202420240583
Jônatas Pedro DA Silva, Márcio R Francelino, André Luiz L DE Faria, Heitor P Palma, Isabelle DE A Oliveira, José João L L DE Souza, Carlos Ernesto G R Schaefer
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Abstract

The Byers Peninsula, the largest ice-free area in Maritime Antarctica, is vital for studying landscape-scale natural processes due to its diverse periglacial landforms. This study aim to characterize the soils and environments of its southern sector, focusing on soil-landform-lithology interactions. Thirty-seven soil profiles were classified, collected, and chemically and physically analyzed. Principal component analysis explored relationships among variables in these profiles and 36 others from the Peninsula project database. The soils are generally shallow, with lithic or paralithic contact within the first meter. Four main soil groups were identified: patterned-ground soils on plateaus, ornithogenic soils, non-ornithogenic soils, and non-ornithogenic sodic and sandy soils on beaches and marine terraces. The Peninsula, divided into six geological units, represents a diverse periglacial morphogenetic system. Sixteen landform types were identified, each associated with different processes, topographies, lithologies, altitudes, and orientations, highlighting the importance of periglacial morphogenesis. Stable soilscapes, such as upper cryoplanation platforms, raised beaches, volcanic plugs, and ornithogenically influenced areas, show greater soil development and weathering. In contrast, dynamic periglacial landforms like scree stony slopes and talus exhibit minimal soil development and instability. The Byers Peninsula's pedodiversity is due to its varied lithologies, landforms, extensive ornithogenic influences from seabirds, and long-term vegetation establishment.

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南极海域拜尔斯半岛土壤景观:地形岩性对土壤形成的控制。
拜尔斯半岛是海洋南极洲最大的无冰区,由于其多样的冰缘地貌,对研究景观尺度的自然过程至关重要。本研究的目的是表征其南段的土壤和环境,重点是土壤-地貌-岩性的相互作用。对37个土壤剖面进行分类、收集,并进行化学和物理分析。主成分分析探讨了这些概况和半岛项目数据库中36个其他变量之间的关系。土壤一般较浅,在第一米内有岩屑或副岩屑接触。确定了四种主要的土壤类型:高原上的花纹土壤、鸟源性土壤、非鸟源性土壤以及海滩和海洋阶地上的非鸟源性碱土和沙土。该半岛分为六个地质单元,代表了一个多样化的冰缘形态形成体系。确定了16种地貌类型,每种地貌类型都与不同的过程、地形、岩性、海拔和方向有关,突出了冰缘地貌形成的重要性。稳定的土壤景观,如上部冰冻平台、凸起的海滩、火山塞和鸟类成因影响区,显示出更大的土壤发育和风化。相比之下,动态冰川周围地貌,如碎石石坡和距地,表现出最小的土壤发育和不稳定性。拜尔斯半岛的土壤多样性是由于其多样的岩性、地貌、广泛的海鸟造鸟影响和长期的植被建立。
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来源期刊
Anais da Academia Brasileira de Ciencias
Anais da Academia Brasileira de Ciencias 综合性期刊-综合性期刊
CiteScore
2.20
自引率
0.00%
发文量
347
审稿时长
1 months
期刊介绍: The Brazilian Academy of Sciences (BAS) publishes its journal, Annals of the Brazilian Academy of Sciences (AABC, in its Brazilianportuguese acronym ), every 3 months, being the oldest journal in Brazil with conkinuous distribukion, daking back to 1929. This scienkihic journal aims to publish the advances in scienkihic research from both Brazilian and foreigner scienkists, who work in the main research centers in the whole world, always looking for excellence. Essenkially a mulkidisciplinary journal, the AABC cover, with both reviews and original researches, the diverse areas represented in the Academy, such as Biology, Physics, Biomedical Sciences, Chemistry, Agrarian Sciences, Engineering, Mathemakics, Social, Health and Earth Sciences.
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