评估达奇甘溪流的健康状况:水质分析

Hafsa Farooq Chashoo, A. Abubakr, Monisa Malik, F. Bhat, B. A. Bhat, Irfan Ahmad Khan, Shazia Tariq, Farah Hanief
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引用次数: 0

摘要

随着全球人口的增加和气候变化对水循环的影响,水资源对人类生存的重要性日益突出。溪流的特点是单向流动,是研究跨时空尺度生态现象的宝贵系统。保持良好的水质对保护生物多样性、确保个人和公众健康、环境保护和可持续发展至关重要。分析水化学是监测溪流健康状况的重要工具,可深入了解污染物水平和潜在问题。本研究评估了印度克什米尔达奇加姆溪流水质的时空变化。研究人员在达奇加姆国家公园及周边地区直至达尔湖口的六个不同采样点收集了各种水质参数的数据,时间跨度长达一年。对 pH 值、溶解氧、电导率和营养物浓度等参数进行了分析,以评估溪流的健康状况并确定潜在的污染源。结果显示,采样参数具有明显的时空变异性,不同地点的元素浓度存在明显差异。从上游到下游,浓度呈明显上升趋势。从上游到下游地点观察到的污染水平的上升凸显了下游地区人为影响的加剧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Assessing the Health of Dachigam Stream: A Water Quality Analysis
As global populations rise and climate change impacts water cycles, the importance of water resources becomes increasingly critical for human sustenance. Streams, characterized by their unidirectional flow, are valuable systems for studying ecological phenomena across spatial and temporal scales. Maintaining good water quality is crucial for preserving biodiversity and ensuring individual and public health, environmental protection, and sustainable development. Analyzing water chemistry is a valuable tool for monitoring stream health, offering insights into pollutant levels and potential issues. This study assesses the spatiotemporal changes in water quality in the Dachigam stream in Kashmir, India. Data on various water quality parameters were collected over a year at six different sampling locations within the Dachigam National Park and surrounding areas up to the mouth of Dal lake. Parameters such as pH, dissolved oxygen, electrical conductivity, and nutrient concentrations were analyzed to evaluate stream health and identify potential sources of pollution. Results revealed significant spatiotemporal variability was evident in the sampled parameters, revealing notable differences in element concentrations across various sites. There was an observable trend of increasing concentrations from upstream to downstream locations. The observed escalation in pollution levels from upstream to downstream sites underscores heightened anthropogenic impacts in the downstream regions.
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