Assessment of Deposited Red Clay Soil in Kirkuk City Using Remote Sensing Data and GIS Techniques

V. Salahalden, M. A. Shareef, Q. A. M. A. Nuaimy
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Abstract

This study investigates the physical characteristics of red clay using the IDW approach and linear regression modeling in an area of 268.12 km2, focusing on Kirkuk, Bor, and Jambor structures. Through the analysis of 52 soil samples and the integration of laboratory data with IDW and regression results, several significant findings have emerged. The IDW method combined with linear regression proves to be a cost-effective and efficient approach for obtaining soil property data and generating accurate digital maps of red clay’s physical features. The Silt concentration exhibits a wide range, while the gravel content remains relatively low, indicating the predominance of silt in the soil composition. Analysis of Atterberg limits reveals the soil’s behavior and consistency in response to moisture, with the plasticity index generally falling within the low to medium range due to the considerable silt content in most soil samples. The linear regression model highlights positive correlations between the liquid limit, plastic limit, and plasticity index. Moderately positive relationships exist between the liquid limit and clay content, as well as a weak positive association between the liquid limit and specific gravity. Dry density, on the other hand, shows no significant correlation with other physical variables, suggesting its independence from the measured parameters. The plastic limit demonstrates a stronger relationship with the clay content compared to the liquid limit. Additionally, weak positive correlations are found between the liquid limit, plastic limit, and specific gravity and water content, indicating the influence of moisture on these parameters. Furthermore, gravel exhibits a moderate positive correlation with sand and silt concentrations, while a strong positive correlation is observed between sand and silt contents, underscoring their close association with the soil composition.
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利用遥感数据和地理信息系统技术评估基尔库克市沉积的红粘土土壤
本研究采用 IDW 方法和线性回归模型,在 268.12 平方公里的区域内调查了红粘土的物理特征,重点是基尔库克、博尔和詹博尔结构。通过对 52 个土壤样本进行分析,并将实验室数据与 IDW 和回归结果相结合,得出了一些重要发现。事实证明,IDW 方法与线性回归相结合,是获取土壤特性数据和生成准确的红土物理特征数字地图的一种经济有效的方法。淤泥浓度范围较大,而砾石含量相对较低,表明淤泥在土壤成分中占主导地位。对阿特伯格极限的分析表明了土壤对水分的反应行为和稠度,由于大多数土壤样本中淤泥含量较高,因此塑性指数一般在中低范围内。线性回归模型强调了液限、塑限和塑性指数之间的正相关关系。液限与粘土含量之间存在中度正相关关系,液限与比重之间也存在微弱的正相关关系。另一方面,干密度与其他物理变量之间没有明显的相关性,这表明干密度与测量参数无关。与液限相比,塑限与粘土含量的关系更为密切。此外,液限、塑限与比重和含水量之间存在微弱的正相关关系,表明水分对这些参数的影响。此外,砾石与砂和淤泥的浓度呈中等正相关,而砂和淤泥的含量呈强正相关,这表明它们与土壤成分密切相关。
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来源期刊
Nature Environment and Pollution Technology
Nature Environment and Pollution Technology Environmental Science-Environmental Science (all)
CiteScore
1.20
自引率
0.00%
发文量
159
审稿时长
36 weeks
期刊介绍: The journal was established initially by the name of Journal of Environment and Pollution in 1994, whose name was later changed to Nature Environment and Pollution Technology in the year 2002. It has now become an open access online journal from the year 2017 with ISSN: 2395-3454 (Online). The journal was established especially to promote the cause for environment and to cater the need for rapid dissemination of the vast scientific and technological data generated in this field. It is a part of many reputed international indexing and abstracting agencies. The Journal has evoked a highly encouraging response among the researchers, scientists and technocrats. It has a reputed International Editorial Board and publishes peer reviewed papers. The Journal has also been approved by UGC (India). The journal publishes both original research and review papers. The ideology and scope of the Journal includes the following. -Monitoring, control and management of air, water, soil and noise pollution -Solid waste management -Industrial hygiene and occupational health -Biomedical aspects of pollution -Toxicological studies -Radioactive pollution and radiation effects -Wastewater treatment and recycling etc. -Environmental modelling -Biodiversity and conservation -Dynamics and behaviour of chemicals in environment -Natural resources, wildlife, forests and wetlands etc. -Environmental laws and legal aspects -Environmental economics -Any other topic related to environment
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