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Odor-aided analysis for landfill site selection: study of DOKAP Region, Turkey
Environmental Science and Pollution Research ( IF 5.8 ) Pub Date : 2021-09-16 , DOI: 10.1007/s11356-021-16474-x
Volkan Yildirim 1 , Bayram Uzun 1 , Tugba Memisoglu Baykal 2 , Fatih Terzi 1 , Bura Adem Atasoy 1
Affiliation  

In our world, with the increase of factors such as the rapid and irresponsible consumption of natural resources, man-made environmental disasters, global warming, and pollution of water resources in our world, the need for more efficient storage and disposal of solid waste has arisen. The presentation of the data required to solve spatial problems such as storage, management, and location selection can be carried out extensively and effectively using geographic information systems (GIS). On the other hand, the unsatisfactory results obtained with GIS recently have made it mandatory to use spatial multiple criteria decision-making (S-MCDM) methods that include the decision-makers in the process. In this study, landfill site selection was carried out in eight provinces in the region under the responsibility of the Eastern Black Sea Project Regional Development Administration (DOKAP). GIS and S-MCDM were used together in this site selection process. A total of eight spatial data layers were used in the site selection application. Afterwards, storage areas determined as suitable via GIS analysis underwent additional evaluation, taking into account geological, seismic, and environmental factors as well as transportation costs. In addition to these multi-component evaluations, odor analyses were carried out on the proposed storage areas using the prevailing wind direction.



中文翻译:

垃圾填埋场选择的气味辅助分析:土耳其 DOKAP 地区的研究

在我们的世界中,随着自然资源的快速和不负责任的消耗、人为的环境灾难、全球变暖以及我们世界的水资源污染等因素的增加,对更有效地储存和处置固体废物的需求已经增加。出现。解决空间问题(如存储、管理和位置选择)所需的数据的呈现可以广泛而有效地使用地理信息系统 (GIS) 进行。另一方面,最近使用 GIS 获得的不令人满意的结果使得必须使用包括决策者在内的空间多标准决策 (S-MCDM) 方法。在这项研究中,垃圾填埋场选址在东黑海项目区域发展管理局 (DOKAP) 的负责下在该地区的 8 个省进行。在这个选址过程中,GIS 和 S-MCDM 一起使用。在选址应用程序中总共使用了八个空间数据层。之后,考虑到地质、地震和环境因素以及运输成本,通过 GIS 分析确定合适的存储区域进行了额外的评估。除了这些多组分评估外,还使用盛行风向对拟议的存储区域进行了气味分析。之后,考虑到地质、地震和环境因素以及运输成本,通过 GIS 分析确定合适的存储区域进行了额外的评估。除了这些多组分评估外,还使用盛行风向对拟议的存储区域进行了气味分析。之后,考虑到地质、地震和环境因素以及运输成本,通过 GIS 分析确定合适的存储区域进行了额外的评估。除了这些多组分评估外,还使用盛行风向对拟议的存储区域进行了气味分析。

更新日期:2021-09-16
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