黄土-古土壤沉积物悬谷及其核侵蚀和侵蚀势评价研究

IF 0.9 4区 工程技术 Q3 NUCLEAR SCIENCE & TECHNOLOGY Nuclear Technology & Radiation Protection Pub Date : 2022-01-01 DOI:10.2298/ntrp2201065k
Kristina Kalkan, S. Forkapić, S. Marković, K. Bikit, R. Tošić, D. Mrdja, Nikola Milentijević
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引用次数: 0

摘要

本文采用两种不同的方法进行土壤侵蚀评估:核模型和侵蚀潜力法,也称为加夫里洛维奇方法。选取黄土高原的复杂河谷系统作为研究对象。放射性铯由于其相对较长的半衰期、在环境中可以忽略的更新以及与土壤颗粒的强结合能力,在许多研究中被认为是一种最佳的侵蚀示踪剂。在环境测试实验室中使用伽马能谱法作为一种精确和快速的测量技术来测定137Cs活性浓度,而不需要复杂的样品制备。利用WALLING软件,利用137Cs 2年(1963年和1986年)的剖面分布模型和扩散迁移模型对荒地的年侵蚀和沉积速率进行了估算。通过与侵蚀势模型的比较,验证了应用核模型的有效性。侵蚀势模型是最适合流谷侵蚀过程的经验模型。所得结果与调查区各土壤剖面年平均土壤侵蚀速率总体偏低的结果一致。相关性分析确定了坡度、地形曲率和植被指数对侵蚀模型的不同影响。
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Study of hanging valley in loess-paleosoil sediments with soil erosion assessment using nuclear and erosion potential methods
This paper is dealing with soil erosion assessment using two different approaches: nuclear model and erosion potential method, also known as Gavrilovic's method. Complex valley systems on Titel Loess Plateau were selected for investigation. Radiocaesium is favored in many studies as an optimal erosion tracer due to its relatively long half-life, negligible renewal in the environment and strongly binding ability onto soil particles. The use of gamma-spectrometry in environmental testing laboratories acts as a precise and fast measurement technique for determination of 137Cs activity concentrations, without the need for complicate preparation of samples. Annual erosion and deposition rates were estimated according to three conversion models for uncultivated land: the profile distribution model with two years of dominant fallout of 137Cs (1963 and 1986) and the diffusion and migration model using WALLING software. The applied nuclear models were validated by comparison with erosion potential model which is the most relevant empirical model for erosion processes in torrent valleys. The obtained results indicate a good agreement with overall low values of average annual soil erosion rates on all soil profiles in the investigated area. Correlation analysis has determined the different influence of slope, terrain curvature, and vegetation index on the erosion models.
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来源期刊
Nuclear Technology & Radiation Protection
Nuclear Technology & Radiation Protection NUCLEAR SCIENCE & TECHNOLOGY-
CiteScore
2.00
自引率
41.70%
发文量
10
审稿时长
6-12 weeks
期刊介绍: Nuclear Technology & Radiation Protection is an international scientific journal covering the wide range of disciplines involved in nuclear science and technology as well as in the field of radiation protection. The journal is open for scientific papers, short papers, review articles, and technical papers dealing with nuclear power, research reactors, accelerators, nuclear materials, waste management, radiation measurements, and environmental problems. However, basic reactor physics and design, particle and radiation transport theory, and development of numerical methods and codes will also be important aspects of the editorial policy.
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