结合加剧的外源过程研究土壤资源管理技术

IF 1.3 Q4 ENGINEERING, ENVIRONMENTAL Journal of Ecological Engineering Pub Date : 2024-06-01 DOI:10.12911/22998993/186950
V. Kaminskyi, L. Kolomiiets, Volodymyr Bulgakov, Jyri Olt, V. Kaminska, Ivan Shevchenko, Y. Ihnatiev, A. Rucins
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引用次数: 0

摘要

土壤侵蚀属于景观破坏过程。它在很大程度上破坏了地质生态系统的平衡,从而产生一系列负面的地质生态后果。保护土壤免受侵蚀和提高坡地农业景观的肥力是整个环境问题的一部分。这就产生了许多急需科学和实用解决方案的热点问题。本文介绍了有关保护土壤免受侵蚀问题的最新研究成果。它讨论了侵蚀过程进展的区域模式。本文概述了综合侵蚀防护系统各组成部分对农业景观中土壤的抗侵蚀性和特性的影响的农业生态综合评估,以促进保护性耕作系统的开发和实施。这项研究以长期固定和远征实地考察的结果为基础,考察了以下问题:该地区的自然条件、融雪和雨水径流以及人工洒水造成的侵蚀过程的发展。研究结合使用了地貌学、制图学和形态学分析方法和手段。通过模拟典型侵蚀樱桃-诺泽姆土壤上的降雨量,并结合不同的农作物种植技术,确定了由此造成的侵蚀损失的定量特征。在外因过程不断加剧的情况下,需要利用这些特征对农田地区侵蚀过程的发展进行长期预测。经过测试的土壤保护农艺技术(深度为 10-12 厘米的地表下刀片耕作,同时深度为 40 厘米的切条耕作,深度为 20-22 厘米的地表下刀片耕作)显示出了很高的水土流失预防效率。与深度为 20-22 厘米的传统耕作相比,地表径流减少了 1.3-2.3 倍,土壤流失减少了 1.9-12.7 倍。因此,这些技术还优化了地表径流水渗入土壤的指数和条件。
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Research Into Soil Resource Management Technologies in Context of Aggravating Exogenic Processes
The erosion of soil falls into the class of landscape destruction processes. It disturbs the balance in the geo-ecosystem to a significant extent, thus generating the whole spectrum of negative geo-ecological after-effects. The protection of soils against erosion and the improvement of fertility in sloped agricultural landscapes are part of the overall environmental concern that has notably aggravated lately. This has given rise to a number of topical issues for which scientific and practical solutions are urgently required. The paper describes the state of the art in the research into the issue of the protection of soils against erosion. It discusses the regional patterns in the progress of erosion processes. The integrated agro-ecological assessment of the effect that various components of the inte - grated erosion protection system have on the erosion resistance and properties of soils in agricultural landscapes was outlined for the development and implementation of conservation cropping systems. The study is based on the results of the long-term stationary and expeditionary field research that addressed the following issues: the natural conditions of the territory and the development of erosion processes as a result of snowmelt and rain water run-off, as well as artificial sprinkling. The research was carried out using a combination of geomorphological, carto - graphic and pedomorphological analysis methods and approaches. By modelling rainfalls on typical eroded cher-nozem soils in combination with different agricultural crop growing technologies, the quantitative characteristics for the resulting erosion losses were determined. These characteristics are needed to make long-term forecasts of the development of erosion processes in agricultural land areas in the context of intensifying exogenic processes. The tested soil-protecting agronomic technologies (subsurface blade tillage to a depth of 10–12 cm with simultaneous slitting to a depth of 40 cm, subsurface blade tillage to a depth of 20–22 cm) demonstrated their high erosion prevention efficiency. They reduced the surface run-off by a factor of 1.3–2.3, the soil loss by a factor of 1.9–12.7 in comparison to the traditional ploughing to a depth of 20–22 cm. Accordingly, the indices and conditions of the surface run-off water infiltration into the soil were also optimised with these techniques.
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来源期刊
Journal of Ecological Engineering
Journal of Ecological Engineering ENGINEERING, ENVIRONMENTAL-
CiteScore
2.60
自引率
15.40%
发文量
379
审稿时长
8 weeks
期刊介绍: - Industrial and municipal waste management - Pro-ecological technologies and products - Energy-saving technologies - Environmental landscaping - Environmental monitoring - Climate change in the environment - Sustainable development - Processing and usage of mineral resources - Recovery of valuable materials and fuels - Surface water and groundwater management - Water and wastewater treatment - Smog and air pollution prevention - Protection and reclamation of soils - Reclamation and revitalization of degraded areas - Heavy metals in the environment - Renewable energy technologies - Environmental protection of rural areas - Restoration and protection of urban environment - Prevention of noise in the environment - Environmental life-cycle assessment (LCA) - Simulations and computer modeling for the environment
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