印度东部贾坎德邦和西孟加拉邦德瓦尔卡河流域采石破碎对河流特征和植被健康的影响

Swades Pal, Indrajit Mandal
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引用次数: 15

摘要

位于印度东部Chotonagpur高原和恒河平原的德瓦卡河流域(3882.71 km2)受到采石和破碎生尘的严重影响。流域中部集水区共有石矿239座,石料破碎机组982台。每年大约产生258120吨灰尘,这些灰尘进入河流并覆盖在植物的叶子上。这一方面是河床淤积,泥沙负荷增加,水质下降,特别是总溶解固形物、pH值、水色增加,同时也使植被质量下降。植被质量的退化表现为NDVI值的下降(1990年NDVI最大值为0.70,2016年为0.48)。考虑到这些问题,本文拟基于6个主要驱动参数,以及粉尘对不同易损区河流形态、水质和植被质量的影响,进行粉尘易损区识别。采用加权线性组合法(arcgis环境下)对选取的参数进行组合,得到脆弱区域。采用半定量的层次分析法对各参数进行权重分配。结果表明,流域内579.64 km2(14.93%)为高度脆弱区,流域内581条河流长713 km,易出现高沙尘淤积、泥沙负荷增加、水质恶化等问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Impacts of Stone Mining and Crushing on Stream Characters and Vegetation Health of Dwarka River Basin of Jharkhand and West Bengal, Eastern India
Abstract Dwarka River basin (3882.71 km2) of Eastern India in the Chotonagpur Plateau and Gangetic Plain is highly affected by stone mining and crushing generated dust. In the middle catchment of this basin, there are 239 stone mines and 982 stone crushing units. These produce approximately 258120 tons of dust every year and this dust enters into the river and coats the leaves of plants. On the one hand, this is aggrading in the stream bed, increasing sediment load, decreasing water quality, specifically increasing total dissolved solid, pH, water colour, and it also degrades the vegetation quality. Vegetation quality is also degraded as indicated by decreasing of NDVI values (maximum NDVI in 1990 was 0.70 and in 2016 it was 0.48). Considering all these issues, the present paper intends to identify dust vulnerable zones based on six major driving parameters and the impact of the dust on river morphology, water quality and vegetation quality in different vulnerable zones. Weighted linear combination method (in Arc Gis environment) is used for compositing the selected parameters and deriving vulnerable zones. Weight to the each parameter is assigned based on analytic hierarchy process, a semi quantitative method. According to the results, 579.64 km2 (14.93%) of the catchment area is very highly vulnerable: Here 581 rivers have a length of 713 km and these riversare prone to high dust deposition, increased sediment load and water quality deterioration.
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