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首页> 外文期刊>Catena: An Interdisciplinary Journal of Soil Science Hydrology-Geomorphology Focusing on Geoecology and Landscape Evolution >Biogeomorphological influence of the Hawaiian silversword (Argyroxiphium sandwicense DC.) on soil erosion in Haleakala (Maui, Hawai'i)
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Biogeomorphological influence of the Hawaiian silversword (Argyroxiphium sandwicense DC.) on soil erosion in Haleakala (Maui, Hawai'i)

机译:夏威夷银剑(Argyroxiphium sandwicense DC。)对哈雷阿卡拉(毛伊岛,夏威夷)土壤侵蚀的生物地貌影响

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摘要

Soils were examined at 2505 m elevation in Haleakala's crater (Maui, Hawaii) beneath 50 adult Hawaiian silversword plants (Argyroxiphium sandwicense DC.); mean canopy diameter was 42.0 cm. Exposed volcanic Inceptisols (Andic Humitropepts) seem significantly eroded beyond the dense rosette crowns, but remain unaffected below plants. Rosettes are perched on isolated basal soil mounds or pedestals 27-121 mm high (mean: 77.5 mm). Geomorphic field response of soils below rosettes and adjacent (~100 cm apart) bare soils differs. Infiltration rates are higher under plants (mean: 158.7 mm/min) than in exposed control soils (60.0 mm/min). Soils below silverswords also show greater shear strength (146.1 g/cm2) and compressibility (2.795 kg/cm2) than unprotected soils (36.1 g/cm2, and 0.108 kg/cm2, respectively). Soil in the plant mounds contains more organic matter; this has influenced other pedological properties, which also differ substantially between sampling positions. Substrate under plants has a porosity ~53% higher than exposed soil, while bulk density is 62% higher in soil outside the plant crown. The observed microtopographic differences are ascribed to greater soil erosion by rainsplash and runoff outside the silversword canopy. The dense rosette crown effectively intercepts raindrops; soils beneath plants also have a high surface cohesiveness provided by a dense network of fine plant rootlets and partially decomposed organic material. Higher runoff rates occur on the less permeable substrate beyond rosettes, which is affected by soil crusting..
机译:在哈雷阿卡拉火山口(夏威夷毛伊岛)的2505 m高处检查了50株成年夏威夷银剑植物(Argyroxiphium sandwicense DC)下方的土壤。平均顶篷直径为42.0厘米。裸露的火山绝像(Andic Humitropeptepts)似乎在浓密的玫瑰花冠上方严重腐蚀,但在植物下方不受影响。莲座丛栖息在27-121毫米高(平均:77.5毫米)的孤立基底土丘或基座上。莲座丛下面的土壤和邻近的(相距约100 cm)裸土的地貌场响应是不同的。在植物(平均:158.7毫米/分钟)下的渗透率比在暴露的对照土壤中(60.0毫米/分钟)高。与未经保护的土壤(分别为36.1 g / cm2和0.108 kg / cm2)相比,银剑下面的土壤还表现出更大的剪切强度(146.1 g / cm2)和可压缩性(2.795 kg / cm2)。植物丘中的土壤含有更多的有机物;这影响了其他的教育特性,在采样位置之间也有很大的不同。植物底物的孔隙度比裸露土壤高约53%,而植物冠外的土壤堆积密度高62%。观察到的微观形貌差异归因于银剑冠层外的雨水飞溅和径流,造成了更大的土壤侵蚀。密密的玫瑰花冠能有效拦截雨滴。植物下方的土壤还具有由高细植物根和部分分解的有机物质组成的密集网络,具有较高的表面粘结力。较高的径流率发生在玫瑰丛上方,渗透性较低的基质上,这受土壤结皮的影响。

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