利用地理空间技术进行土壤质量分析和绘制各种土地利用图:案例研究

IF 2.3 Q2 REMOTE SENSING
C. T. Anuradha
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引用次数: 0

摘要

本手稿利用先进的地理空间技术,对印度马杜赖市各种土地用途的土壤质量分析和绘图进行了全面研究。土壤质量评估对于可持续土地管理以及城市规划和农业的知情决策至关重要。这项研究整合了地理空间数据、遥感图像和地面实况调查技术,以评估土壤特性并对土地用途进行分类,从而促进对城市土壤健康状况的全面了解。研究首先从代表不同土地用途的多个地点收集土壤样本,包括马杜赖的城市、城郊和农业区。通过实验室分析,测量土壤的各种属性,如 pH 值、有机质含量、养分含量和质地。同时,利用高分辨率卫星图像和地理信息系统 (GIS) 数据绘制详细的土地利用图,确定独特的模式和空间分布。土壤的 pH 值、有机质含量、养分含量和质地都得到了检测。根据这些特征在确定土壤质量方面的重要性,设计了土壤质量指数,并为每种土地利用类型绘制了土壤质量地图。绘制一致性指数图的目的是衡量土壤污染程度。通过统计和地理空间分析,手稿强调了不同土地利用类型中土壤特性的显著差异。它探讨了城市化对土壤质量的影响,揭示了城市地区土壤退化和污染的区域。此外,研究还确定了适合农业用途的肥沃土壤区域,并提出了土壤改良和可持续土地管理实践的潜在区域。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Soil quality analysis and mapping of various land uses using geospatial technology: a case study

This manuscript presents a comprehensive study on soil quality analysis and mapping across various land uses in the city of Madurai, India, leveraging advanced geospatial technology. Soil quality assessment is crucial for sustainable land management and informed decision-making in urban planning and agriculture. The study integrates geospatial data, remote sensing imagery, and ground-truthing techniques to evaluate soil properties and categorize land uses, facilitating a holistic understanding of the city’s soil health. The research begins by collecting soil samples from multiple locations representing diverse land uses, including urban, peri-urban, and agricultural areas within Madurai. Laboratory analyses are performed to measure various soil attributes such as pH, organic matter content, nutrient levels, and texture. Simultaneously, high-resolution satellite imagery and geographic information system (GIS) data are employed to create detailed land use maps, identifying distinct patterns and spatial distributions. The pH, amount of organic matter, amount of nutrients, and texture of the soil were all examined. Based on the significance of these characteristics in determining soil quality, a soil quality index was devised, and maps of soil quality were made for each type of land use. The consistency index map is created to gauge the level of soil contamination. Using statistical and geospatial analyses, the manuscript highlights significant variations in soil properties across different land use types. It explores the impact of urbanization on soil quality, revealing areas of soil degradation and pollution in urban zones. Furthermore, the study identifies regions with fertile soils suitable for agricultural purposes and suggests potential areas for soil improvement and sustainable land management practices.

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来源期刊
Applied Geomatics
Applied Geomatics REMOTE SENSING-
CiteScore
5.40
自引率
3.70%
发文量
61
期刊介绍: Applied Geomatics (AGMJ) is the official journal of SIFET the Italian Society of Photogrammetry and Topography and covers all aspects and information on scientific and technical advances in the geomatics sciences. The Journal publishes innovative contributions in geomatics applications ranging from the integration of instruments, methodologies and technologies and their use in the environmental sciences, engineering and other natural sciences. The areas of interest include many research fields such as: remote sensing, close range and videometric photogrammetry, image analysis, digital mapping, land and geographic information systems, geographic information science, integrated geodesy, spatial data analysis, heritage recording; network adjustment and numerical processes. Furthermore, Applied Geomatics is open to articles from all areas of deformation measurements and analysis, structural engineering, mechanical engineering and all trends in earth and planetary survey science and space technology. The Journal also contains notices of conferences and international workshops, industry news, and information on new products. It provides a useful forum for professional and academic scientists involved in geomatics science and technology. Information on Open Research Funding and Support may be found here: https://www.springernature.com/gp/open-research/institutional-agreements
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