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Ecological impacts of small dams on South African rivers Part 1: Drivers of change - water quantity and quality

机译:小型水坝对南非河流的生态影响第1部分:变化的驱动力-水的数量和质量

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摘要

Impacts of large dams are well-known and quantifiable, while small dams have generally been perceived as benign, both socially and environmentally. The present study quantifies the cumulative impacts of small dams on the water quality (physico-chemistry and invertebrate biotic indices) and quantity (discharge) of downstream rivers in 2 South African regions. The information from 2 South African national databases was used for evaluating the cumulative impacts on water quality and quantity. Physico-chemistry and biological data were obtained from the River Health Programme, and discharge data at stream flow gauges was obtained from the Hydrological Information System. Multivariate analyses were conducted to establish broad patterns for cumulative impacts of small dams across the 2 regions - Western Cape (winter rainfall, temperate, south-western coast) and Mpumalanga (summer rainfall, tropical, eastern coast). Multivariate analyses found that the changes in macroinvertebrate indices and the stream's physico-chemistry were more strongly correlated with the density of small dams in the catchment (as a measure of cumulative impact potential) relative to the storage capacity of large dams. T-tests on the data, not including samples with upstream large dams, indicated that the high density of small dams significantly reduced low flows and increased certain physico-chemistry variables (particularly total dissolved salts) in both the regions, along with associated significant reductions in a macroinvertebrate index (SASS4 average score per taxon). Regional differences were apparent in the results for discharge reductions and the macroinvertebrate index. The results suggest that the cumulative effect of a high number of small dams is impacting the quality and quantity of waters in South African rivers and that these impacts need to be systematically incorporated into the monitoring protocol of the environmental water requirements.%Unilever Centre for Environmental Water Quality - Institute for Water Research (UCEWQ-IWR), Rhodes University,PO Box 94, Grahamstown, South Africa;Unilever Centre for Environmental Water Quality - Institute for Water Research (UCEWQ-IWR), Rhodes University,PO Box 94, Grahamstown, South Africa;Unilever Centre for Environmental Water Quality - Institute for Water Research (UCEWQ-IWR), Rhodes University,PO Box 94, Grahamstown, South Africa;
机译:大型水坝的影响是众所周知的并可量化的,而在社会和环境方面,小型水坝通常被认为是良性的。本研究量化了小水坝对南非两个地区下游河流水质(理化和无脊椎动物生物指数)和水量(流量)的累积影响。来自2个南非国家数据库的信息用于评估对水质和水量的累积影响。物理化学和生物学数据是从河流卫生计划中获得的,而流量表中的排放数据是从水文信息系统中获得的。进行了多变量分析,为横跨西开普省(冬季降雨,温带,西南海岸)和姆普马兰加省(夏季降雨,热带,东部海岸)两个地区的小水坝的累积影响建立了广泛的模式。多元分析发现,相对于大型水坝的储水能力,大型无脊椎动物指数的变化和河流的理化性质与流域中小型水坝的密度(作为累积撞击潜力的一种度量)的相关性更高。数据的T检验(不包括上游大型水坝的样本)表明,高密度的小型水坝显着减少了这两个区域的低流量,并增加了某些理化变量(尤其是总溶解盐),并伴有明显的减少。在大型无脊椎动物索引中(每个分类单元的SASS4平均得分)。减少排放量和无脊椎动物指数的结果存在明显的区域差异。结果表明,大量小水坝的累积影响正在影响南非河流的水质和水量,需要将这些影响系统地纳入环境需水量监测协议中。%Unilever Center for Environmental水质-罗得斯大学水科学研究所(UCEWQ-IWR),南非格雷厄姆斯市信箱94; Unilever环境水质中心-罗得斯大学水研究所(UCEWQ-IWR),罗兹大学水科学研究院,信箱,格雷姆斯敦94 ;南非; Unilever环境水质量中心-罗德大学水科学研究所(UCEWQ-IWR),南非Grahamstown邮政信箱94;

著录项

  • 来源
    《Water SA》 |2010年第3期|p.351-360|共10页
  • 作者单位

    Unilever Centre for Environmental Water Quality - Institute for Water Research (UCEWQ-IWR), Rhodes University,PO Box 94, Grahamstown, South Africa;

    Unilever Centre for Environmental Water Quality - Institute for Water Research (UCEWQ-IWR), Rhodes University,PO Box 94, Grahamstown, South Africa;

    Unilever Centre for Environmental Water Quality - Institute for Water Research (UCEWQ-IWR), Rhodes University,PO Box 94, Grahamstown, South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    cumulative impacts; regional comparison; macroinvertebrate indices; measures of small-dam impact potential; average score per taxon;

    机译:累积影响;区域比较;大型无脊椎动物指数;小水坝潜在影响的措施;每个分类单元的平均分数;
  • 入库时间 2022-08-18 02:09:06

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