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Baseline seasonal investigation of nutrients and trace metals in surface waters and sediments along the Saigon River basin impacted by the megacity of Ho Chi Minh (Vietnam)

机译:基线季节性调查表面水域中的营养素和痕量金属,沿着西贡河流域的群落受到胡志明(越南)的巨型河流

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摘要

The Saigon River, Southern Vietnam, crosses one of the most dynamic developing Megacity in Southeast Asia: Ho Chi Minh City (HCMC). The increased economic, industrial, and domestic developments may affect the environmental quality of water and halicutic resources. In this study, we evaluated the seasonal (dry and wet seasons) biogeochemical state of the Saigon River during two snapshot campaigns conducted along the river basin upstream from HCMC; the Saigon River was characterized by slightly acidic (pH 5.7-7.7) and oxygen-depleted water (dissolved oxygen (DO), 0.36-5.18 mg l(-1)). Nutrients (N-NH4 = 0.01-2.41, N-NO3 = 0.14-2.72, and P-PO4 = similar to 0-0.42 mg l(-1)), DOC (2.2-8.0 mg l(-1)), POC, and trace metal(oid) (As, Cd, Cr, Cu, Zn, and Hg) concentrations were low showing a good quality of the upstream river. In the urban center area, DO dropped to 0.03 mg l(-1) accompanied with a rise of nutrient concentrations (e.g., N-NH4, up to 17.7 mg l(-1)) likely originating from wastewater discharges. Trace metal concentrations also rose sharply (e.g., Cr and Hg rose up to 10-fold higher) in both water and sediments but remained under the World Health Organization (WHO) and Vietnamese concentration guidelines. In the downstream estuarine area, the intrusion of marine waters diluted water flowing from HCMC, leading water quality to return close to the state observed upstream from HCMC. In general, levels of nutrient and metal contaminations along the Saigon River during both seasons appear moderate regarding to Vietnamese and WHO guidelines although the urban area is highlighted as the major contributor for metal(oid) emissions. Finally, we showed that apart from wastewater and industrial discharges that affect the river quality, metal(oid) partitioning between solid and solution is controlled by the change in water geochemistry along the continuum during both seasons, such as DO (e.g., for As and Cr) and pH (e.g., for Pb) which drives their sorption/dissolution dynamics.
机译:越南南部番木河跨越东南亚最具活力的发达的巨大之一:胡志明市(HCMC)。经济,工业和国内发展增加可能会影响水和幼苗资源的环境质量。在这项研究中,我们在沿着HCMC上游河流盆地进行的两个快照竞选期间评估了西贡河的季节性(干湿季节)生物地球化学状态;西贡河以微酸性(pH5.7-7.7)和氧耗尽水(溶解氧(DO),0.36-5.18mg L(-1))为特征。营养素(N-NH4 = 0.01-2.41,N-NO3 = 0.14-2.72,P-PO4 =类似于0-0.42 mg L(-1)),DOC(2.2-8.0mg L(-1)),POC ,痕量金属(oid)(如,Cd,Cr,Cu,Zn和Hg)浓度低显示出上游河的质量很好。在市中心区域,伴随着营养浓度的升高(例如,N-NH4,高达17.7mg L(-1))的源自废水排放的0.03mg L(-1)。在水和沉积物中,痕量金属浓度也急剧(例如,Cr和Hg高达10倍),但仍留在世界卫生组织(WHO)和越南集中指南下。在下游河口地区,海水的侵入从HCMC流过流动的水,主要的水质靠近HCMC上游观察到的状态。通常,西贡河沿着西贡河流的营养和金属污染水平对于越南语和世卫组织指导方针,虽然城市地区被突出为金属(OID)排放的主要贡献者,但为谁指导。最后,我们表明,除了影响河流质量的废水和工业排放,固体和解决方案之间的金属(OID)分区是通过在两个季节的连续体内的水地球化学的变化来控制(例如,如和Cr)和推动其吸附/溶出动力学的pH(例如,Pb)。

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