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生态学杂志 ›› 2026, Vol. 45 ›› Issue (2): 353-362.doi: 10.13292/j.1000-4890.202602.005

• 湿地生态与可持续利用专栏 • 上一篇    下一篇

赤水河流域水化学特征及其影响因子

简宏先,温婧,黄邦杰,王龙乐,房怀阳,杜宏伟*   

  1. (生态环境部华南环境科学研究所, 广东省水与大气污染防治重点实验室, 广州 510535)

  • 出版日期:2026-02-10 发布日期:2026-08-01

Hydrochemical characteristics and influencing factors in the Chishui River basin.

JIAN Hongxian, WEN Jing, HUANG Bangjie, WANG Longle, FANG Huaiyang, DU Hongwei*   

  1. (South China Institute of Environmental Sciences, Ministry of Ecology and Environment, Guangdong Provincial Key Laboratory of Water and Air Pollution Control, Guangzhou 510535, China).

  • Online:2026-02-10 Published:2026-08-01

摘要: 基于对赤水河流域物理化学指标(水温、pH、DO、电导率和浊度)、水化学环境关键参数(碳、氮、磷和硫)、重金属、抗生素和多环芳烃(PAHs)等潜在生态风险指标的观测数据,分析流域水环境指标空间分布特征及其影响因子。结果表明:赤水河流域整体水质良好;检出的8种重金属浓度为0~1120 μg·L-1,5种抗生素浓度为0~50 ng·L-1,16种PAHs总浓度为11.6~390.7 ng·L-1;水化学环境关键参数、抗生素和PAHs基本呈现上游到下游逐渐减小的空间分布趋势,重金属则相反;流域碳素和氮素主要受到工业和生活污水排放的影响,总磷和硫酸盐主要受到面源污染和矿产开采活动的影响;重金属砷(As)、锰(Mn)和铁(Fe)主要受到农业活动和生活污水排放影响,锌(Zn)和铅(Pb)主要受到交通污染影响,镍(Ni)主要受到矿产开采活动影响,铬(Cr)主要源自高本底值的土壤冲刷,铜(Cu)受到矿产开采和农业活动等多重影响;抗生素主要受到医疗和畜禽养殖废水排放影响;PAHs主要受到石油挥发、煤和木材等生物质燃烧以及交通污染的影响。本研究结果为长江上游典型流域水生态环境保护和濒危鱼类栖息地功能分析提供了重要的数据支撑。


关键词: 赤水河, 水化学因子, 重金属, 抗生素, 多环芳烃(PAHs)

Abstract: We examined the spatial variations and influencing factors of hydrochemical characteristics in the Chishui River, by measuring physical and chemical indicators (water temperature, pH, DO, conductivity, turbidity), key hydrochemical parameters (carbon, nitrogen, phosphorus, sulfur), and potential ecological risk indicators such as heavy metals, antibiotics and polycyclic aromatic hydrocarbons (PAHs). The results showed that the overall level of water quality in the Chishui River Basin was good. The concentrations of the detected eight heavy metals ranged from 0 to 1120 μg·L-1. The concentrations of the detected five antibiotics ranged from 0 to 50 ng·L-1. The total concentration of 16 PAHs was 11.6-390.7 ng·L-1. The key hydrochemical parameters, antibiotics and PAHs decreased from upstream to downstream, while heavy metals showed an opposite pattern. Carbon and nitrogen concentrations in the basin were mainly influenced by industrial and domestic wastewater discharges, while total phosphorus and sulfate concentrations were primarily affected by nonpoint source pollution and mining activities. Heavy metals, such as arsenic (As), manganese (Mn), and iron (Fe), were mainly influenced by agricultural activities and domestic sewage. Zinc (Zn) and lead (Pb) were primarily associated with traffic pollution. Nickel (Ni) was mainly affected by mining activities, chromium (Cr) largely originated from the erosion of naturally high background soils. Copper (Cu) was influenced by multiple factors including mining and agricultural activities. Antibiotics were mainly derived from medical and livestock farming wastewater, while PAHs were primarily attributed to petroleum volatilization, combustion of coal and biomass (such as wood), and traffic-related pollution. Our findings provide data support for the protection of water ecological environment and the analysis of habitat functions for endangered fish species in typical river basins of the upper Yangtze River.

Key words: Chishui River, hydrochemical factor, heavy metal, antibiotic, polycyclic aromatic hydrocarbons (PAHs)