Subaqueous pedology and soil-landscape model evaluation in South River, Maryland, USA

Cedric Evan Park, Barret M. Wessel, Martin C. Rabenhorst
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Abstract

Using a subaqueous soil-landscape conceptual model previously developed in an adjacent subestuary, a subaqueous soil survey was undertaken for the South River subestuary of Chesapeake Bay. Using available bathymetry, subaqueous landforms and soil map units were delineated prior to the initiation of any field work. To evaluate the predictive usefulness of the conceptual model, the study area was subsequently sampled at 52 points along specified transects. The soils were described and classified, and the observed soils were compared to the predicted soils from the model using a bootstrapping analysis approach. We concluded that the conceptual model did provide significant positive guidance to generate a useful soil map in South River, by successfully predicting the distribution of soil material types. It did not, however, address the distribution of hypersulfidic materials prevalent in South River soils. The additional information gained on the soils and pedogenic processes gained during this study were incorporated into the final soil survey for the subestuary, and they were also used to refine the soil-landscape conceptual model to improve its potential usefulness in future mapping of western shore subestuaries of Chesapeake Bay.

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美国马里兰州南河水下土壤学与土壤景观模型评价
利用以前在邻近的子河段开发的水下土壤景观概念模型,对切萨皮克湾南河子河段进行了水下土壤调查。利用现有的测深技术,在任何实地工作开始之前,就划定了水下地貌和土壤图单元。为了评估概念模型的预测有效性,研究区域随后沿着指定的样带在52个点进行采样。对土壤进行了描述和分类,并采用自举分析方法将观测土壤与模型预测土壤进行了比较。我们的结论是,通过成功地预测土壤物质类型的分布,概念模型确实为生成南河有用的土壤图提供了重要的积极指导。然而,它没有解决在南河土壤中普遍存在的高硫化物物质的分布。在本次研究中获得的关于土壤和成土过程的额外信息被纳入到最终的土壤调查中,并且它们也被用于改进土壤景观概念模型,以提高其在未来切萨皮克湾西海岸子河段制图中的潜在实用性。
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