Farzadkia Mahdi, Djahed Babak, Shahsavani Esmaeel, Poureshg Yousef
Department of Environmental Health Engineering, School of Public Health, Iran University of Medical Sciences, Tehran, Iran.
Environ Monit Assess. 2015 Apr;187(4):168. doi: 10.1007/s10661-015-4379-8. Epub 2015 Mar 7.
In recent years, the growth of population and increase of the industries around the tributaries of Yamchi Dam basin have led to deterioration of dam water quality. This study aimed to evaluate the quality of the Yamchi Dam basin water, which is used for drinking and irrigation consumptions using Canadian Water Quality Index (CWQI) model, and to determine the main water pollution sources of this basin. Initially, nine sampling stations were selected in the sensitive locations of the mentioned basin's tributaries, and 12 physico-chemical parameters and 2 biological parameters were measured. The CWQI for drinking consumptions was under 40 at all the stations indicating a poor water quality for drinking consumptions. On the other hand, the CWQI was 62-100 for irrigation at different stations; thus, the water had an excellent to fair quality for irrigation consumptions. Almost in all the stations, the quality of irrigation and drinking water in cold season was better. Besides, for drinking use, total coliform and fecal coliform had the highest frequency of failure, and total coliform had the maximum deviation from the specified objective. For irrigation use, total suspended solids had the highest frequency of failure and deviation from the objective in most of the stations. The pisciculture center, aquaculture center, and the Nir City wastewater discharge were determined as the main pollution sources of the Yamchi Dam basin. Therefore, to improve the water quality in this important surface water resource, urban and industrial wastewater treatment prior to disposal and more stringent environmental legislations are recommended.
近年来,亚姆奇大坝流域支流周边人口的增长和工业的增加导致了大坝水质的恶化。本研究旨在使用加拿大水质指数(CWQI)模型评估用于饮用和灌溉的亚姆奇大坝流域的水质,并确定该流域的主要水污染来源。最初,在上述流域支流的敏感位置选择了9个采样站,并测量了12个物理化学参数和2个生物学参数。所有站点用于饮用的CWQI均低于40,表明饮用水水质较差。另一方面,不同站点用于灌溉的CWQI为62 - 100;因此,该水用于灌溉的水质优良至良好。几乎在所有站点,寒冷季节的灌溉用水和饮用水质量更好。此外,对于饮用用途,总大肠菌群和粪大肠菌群的超标频率最高,且总大肠菌群与规定目标的偏差最大。对于灌溉用途,在大多数站点,总悬浮固体的超标频率和与目标的偏差最大。养鱼中心、水产养殖中心和尼尔市的废水排放被确定为亚姆奇大坝流域的主要污染源。因此,为改善这一重要地表水资源的水质,建议在排放前对城市和工业废水进行处理,并制定更严格的环境法规。