Impact of floating platforms on the limnological aspects of hydropower plant reservoirs

L. S. Vanzela, D. C. Pereira, L.D.S.C. Lima, K. Khan, C. F. Mansano
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Abstract

Floating platforms at the hydropower plant reservoirs are attractive sites for aquaculture, fishing and other recreational activities. However, the unregulated construction of these platforms may negatively affect the fauna, flora and water quality of reservoirs. Thus, this study aimed to evaluate the impact of floating platforms on the limnological aspects of Nova Ponte hydropower plant reservoirs at the Center-West of Minas Gerais State of Brazil. The obtained data were analyzed using the correlation and regression analysis. Dissolved oxygen, biochemical oxygen demand, chemical oxygen demand, total coliforms and thermotolerant bacteria were plotted against the density of floating platforms. The density of platforms significantly (p-value > 0.05) impacted the analyzed limnological aspects of reservoirs. Based on the present results, 4 floating platforms/km2 (1 platform per 25 hectares) of surface water should be the maximum density in order to avoid the deterioration of water quality of reservoirs. With 4 platforms/km2, the expected values in fishing period were estimated to be 5.4 mg/L for biochemical oxygen demand, 375 most probable number per 100 mL of sample for thermotolerant bacteria and 6.1 mg/L for chemical oxygen demand. In fishing-ban period, the expected values were estimated to be 4.1 mg/L for dissolved oxygen, 3.4 mg/L for biochemical oxygen demand, 379 most probable number per 100 mL of sample for thermotolerant bacteria and 4.2 mg/L for chemical oxygen demand. This finding provides important base-line information which could help policy makers to take effective measurements for the appropriate management of surface water resources.
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浮式平台对水电站水库水文方面的影响
水电站水库的浮动平台是水产养殖、捕鱼和其他娱乐活动的有吸引力的场所。然而,这些平台的建设不受监管,可能会对水库的动植物群和水质产生负面影响。因此,本研究旨在评估浮动平台对巴西米纳斯吉拉斯州中西部Nova Ponte水电站水库湖沼学方面的影响。使用相关和回归分析对所获得的数据进行分析。溶解氧、生化需氧量、化学需氧量、总大肠菌群和耐热细菌与浮式平台密度的关系。平台的密度显著影响了所分析的储层的湖沼学方面(p值>0.05)。根据目前的结果,4个浮式平台/km2(每25公顷1个平台)的地表水应为最大密度,以避免水库水质恶化。在4个平台/km2的情况下,捕捞期的预期值估计为5.4 mg/L的生化需氧量,375个最可能的数量/100 mL样品的耐热细菌和6.1 mg/L的化学需氧量。在禁渔期,溶解氧的预期值估计为4.1 mg/L,生化需氧量的预期值为3.4 mg/L,耐热细菌的最可能数为每100 mL样本379,化学需氧量的预计值为4.2 mg/L。这一发现提供了重要的基线信息,有助于决策者采取有效措施,对地表水资源进行适当管理。
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来源期刊
CiteScore
7.90
自引率
2.90%
发文量
11
审稿时长
8 weeks
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