泰国林塔洪河水质模拟及溶解氧变化情景

C. Tran, Chatpet Yossapol, N. Tantemsapya, P. Kosa, Phatsakrit Kongkhiaw
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引用次数: 2

摘要

在过去的十年里,林塔洪河的溶解氧(DO)在干旱季节逐渐达到零值,导致水质不适合作为那空叻差玛镇的原水。点源和扩散源排放含有机物和营养物的污染物是造成河流水质恶化的主要原因。为了找出影响河流水质的来源,建立了一维稳流系统水质模型QUAL2Kw,并对其进行了仿真。利用林塔洪河7个监测站2008 - 2017年的水质数据对模型进行了校准和验证。该模型应用于模拟关键时期的各种水质参数,以与泰国指定的地表水质量标准(最低溶解氧在4 mg/L或以上;最大生化需氧量(BOD)、硝酸盐氮和氨氮分别在2.0、5.0和0.5 mg/L或以下)。研究河段从Lam Takhong大坝流经城市中心区,流经Chaloem Phra Kiat区的Mun河,全长122公里。一些河段已经出现了溶解氧损伤的预警,这是研究的重点。通过负荷情景和上游溶解氧改性情景来评估溶解氧浓度的变化。QUAL2Kw模型的结果表明,有机物分解和再生不良是造成损伤的主要原因。局部氧合作用引起河流沿线溶解氧水平波动,河流下游溶解氧浓度下降,部分值降至满足泰国地表水水质第四类标准(DO大于2 mg/L, BOD 5 <4 mg/L)。QUAL2Kw模型适合模拟当前和未来的河流水质,帮助水资源管理者为林塔康河制定适当的政策方案。
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Water Quality Simulation and Dissolved Oxygen Change Scenarios in Lam Takhong River in Thailand
Dissolved oxygen (DO) in Lam Takhong River gradually reaches zero value during the dry season on several occasions in the past decade causing the unsuitable quality for use as the raw water for Nakhon Ratchasima Town. Discharges of point sources and diffuse sources containing pollutants with organics and nutrients are the major cause of water quality deterioration in the river. To find the sources of impact on the water quality in the river, a one- dimensional steady-flow systems river water quality model, QUAL2Kw, was constructed and simulated. The model was calibrated and validated using the water quality data from 2008 to 2017 for the Lam Takhong River by seven monitoring stations. The modelling was applied to simulate various water quality parameters during the critical period to compare to the designated surface water quality criteria third class in Thailand (minimum dissolved oxygen at or above 4 mg/L; maximum biochemical oxygen demand (BOD), nitrate-nitrogen, and ammonia-nitrogen at or below 2.0, 5.0 and 0.5 mg/L, respectively). The study reach of the river flows 122 km from Lam Takhong Dam to the Mun River at Chaloem Phra Kiat district through the urban central area. Several segments of the river have been alarmed for many constituents with the dissolved oxygen impairment is the focus of the study. The scenarios of loads and upstream dissolved oxygen modification were conducted to assess the change of dissolved oxygen concentration. The result of the QUAL2Kw model showed that the decomposition of organic matter and a poor reaeration were the primary cause of the impairment. The local oxygenation causes fluctuations in dissolved oxygen levels along the river and the dissolved oxygen concentration decreases downstream of the river with some values fell the meet the fourth class of surface water quality criteria in Thailand (DO above 2 mg/L and BOD 5 <4 mg/L). The QUAL2Kw model is suitable for simulating the current and future river water quality and help water resources managers to issue the appropriate policy options for the Lam Takhong River.
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来源期刊
CiteScore
5.40
自引率
9.50%
发文量
59
审稿时长
20 weeks
期刊介绍: The Journal of Sustainable Development of Energy, Water and Environment Systems – JSDEWES is an international journal dedicated to the improvement and dissemination of knowledge on methods, policies and technologies for increasing the sustainability of development by de-coupling growth from natural resources and replacing them with knowledge based economy, taking into account its economic, environmental and social pillars, as well as methods for assessing and measuring sustainability of development, regarding energy, transport, water, environment and food production systems and their many combinations.
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