Bordalo A A, Nilsumranchit W, Chalermwat K
Laboratory of Hydrobiology, Institute of Biomedical Sciences, Porto, Portugal.
Water Res. 2001 Oct;35(15):3635-42. doi: 10.1016/s0043-1354(01)00079-3.
The Bangpakong River is the most important watershed in the Eastern part of Thailand. Water quality parameters were sampled from June 1998 through May 1999 at 11 sites along a 227 km gradient, covering the wet season (June-November) and the dry season (December-May). Surface water was collected at three different stations per site (close to the banks and in the middle of the river), and analyzed for temperature, dissolved oxygen, turbidity, suspended solids, pH. ammonia, fecal coliforms, biochemical oxygen demand and chemical oxygen demand as well as conductivity, phosphate, and heavy metals. The Scottish water quality index (WQI) was adaptated to the tropical environment. The averaged WQI was low (41%) and quality declined significantly during the dry season (ANOVA, p<0.001). Although the quality rose somewhat at middle sites, only 27% of the WQI values during wet season and 2.5% during dry season were higher than 50%, denoting poor environmental quality. Within each season, the main sources of variability were the differences between sites along the gradient (48% during the wet season, 63% during the dry season), whereas monthly variability represented less than 20% of the variability. The seasonal results show that the river is suitable only for tolerant fish and wildlife species and is of doubtful use for potable water supply during the dry season. As quality improves during the wet period, water can be used for the production of potable water, but only with advanced treatment, and for indirect and noncontact recreational activities. In the middle stretches of the river, higher water quality permits multiple uses at moderate cost.
邦巴功河是泰国东部最重要的流域。1998年6月至1999年5月期间,沿着227公里的梯度在11个地点采集了水质参数样本,涵盖雨季(6月至11月)和旱季(12月至5月)。每个地点在三个不同的站点(靠近河岸和河中央)采集地表水,并分析温度、溶解氧、浊度、悬浮固体、pH值、氨、粪大肠菌群、生化需氧量和化学需氧量以及电导率、磷酸盐和重金属。苏格兰水质指数(WQI)被适用于热带环境。平均WQI较低(41%),且在旱季水质显著下降(方差分析,p<0.001)。尽管中游站点的水质有所上升,但雨季期间只有27%的WQI值和旱季期间只有2.5%的WQI值高于50%,表明环境质量较差。在每个季节内,主要的变异性来源是沿梯度的站点之间的差异(雨季为48%,旱季为63%),而月度变异性占变异性的比例不到20%。季节性结果表明,这条河仅适合耐污的鱼类和野生动物物种生存,在旱季用于饮用水供应存疑。由于雨季水质有所改善,水可用于生产饮用水,但需要先进的处理,也可用于间接和非接触性的娱乐活动。在河流的中游地段,较高的水质允许以适度成本进行多种用途。