利用谷歌地球引擎探索哥打市城市化和固体废物产生的空间动态。

IF 3 4区 环境科学与生态学 Q3 ENVIRONMENTAL SCIENCES
Porush Kumar, Mahendra Pratap Choudhary, Anil K. Mathur
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引用次数: 0

摘要

本文以哥打市为研究对象,探讨2000 - 2023年城市化、固体废弃物产生与环境变化的关系。利用谷歌Earth Engine (GEE)对土地利用和土地覆盖(LULC)分类、归一化植被指数(NDVI)、归一化差异修正水分指数(NDMWI)、归一化差异建筑指数(NDBI)、地表温度(LST)进行分析,预测到2043年的未来LULC变化。结果表明:建成区面积增加122.38%,固废产生量增加294.16%,城市温度显著增加24.6% (R2 = 0.9936);植被覆盖度和水资源减少,NDVI和NDMWI值显示环境退化。未来LULC对2043年的预测显示,城市扩张将继续,建成区面积预计将以自然资源为代价增加16.74%。为了减轻这些影响,该研究强调了可持续城市规划的必要性,包括绿色基础设施、先进的废物回收系统和缓解城市热岛的战略。这些发现为寻求平衡城市发展与环境可持续性和熟练的废物管理的政策制定者提供了重要的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Exploring spatial dynamics of urbanization and solid waste generation in Kota city using the Google Earth Engine

The current study investigates the relationship between urbanization, solid waste generation, and environmental changes in Kota city from 2000 to 2023. The study employs Google Earth Engine (GEE) to analyze land use and land cover (LULC) classification, normalized difference vegetation index (NDVI), normalized difference modified water index (NDMWI), normalized difference built-up index (NDBI), land surface temperature (LST), and predict future LULC changes up to 2043. The results show that the built-up area increased by 122.38%, correlated with a 294.16% increase in solid waste generation and a significant increase of 24.6% in urban temperature (R2 = 0.9936). Vegetation cover and water resources declined during this period, and NDVI and NDMWI values indicate environmental degradation. Future LULC forecasts for 2043 show that urban expansion will continue, with built-up areas expected to increase by 16.74% at the expense of natural resources. To mitigate these effects, the study emphasizes the need for sustainable urban planning, which includes green infrastructure, advanced waste recycling systems, and strategies to mitigate urban heat islands. These findings provide significant insights for policymakers who seek to balance urban growth with environmental sustainability and proficient waste management.

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来源期刊
Environmental Monitoring and Assessment
Environmental Monitoring and Assessment 环境科学-环境科学
CiteScore
4.70
自引率
6.70%
发文量
1000
审稿时长
7.3 months
期刊介绍: Environmental Monitoring and Assessment emphasizes technical developments and data arising from environmental monitoring and assessment, the use of scientific principles in the design of monitoring systems at the local, regional and global scales, and the use of monitoring data in assessing the consequences of natural resource management actions and pollution risks to man and the environment.
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