首页> 外文期刊>Physics and chemistry of the earth >Sensitivity of the mayfly Adenophlebia auriculata (Ephemeroptera: Leptophlebiidae) to MgSO4 and Na2SO4
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Sensitivity of the mayfly Adenophlebia auriculata (Ephemeroptera: Leptophlebiidae) to MgSO4 and Na2SO4

机译:Mayfly Adenophlebia auriculata(ephemeroptera:Leptophlebiidae)对MgSO4和Na2SO4的敏感性

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摘要

Acid mine drainage (AMD) continues to deteriorate water quality in freshwater ecosystems. Sulphates, a major salt component in AMD, can exacerbate AMD effects in freshwater because salts are toxic to aquatic life in high concentrations. Sulphates are predominant in South African AMD impacted freshwater ecosystems. In this study, the sensitivity of nymphs of the mayfly Adenophlebia auriculata (Ephemeroptera: Leptophlebiidae) was investigated by exposing the organisms to magnesium sulphate (MgSO4) and sodium sulphate (Na2SO4) as models of mining salinisation in short-term (96 h) and long-term (240 h) in static system tests. Short-term and long-term lethal concentrations of each salt were estimated using regression analyses. The results indicated that A. auriculata was more sensitive to MgSO4 (LC50 = 3.81 g/L) than Na2SO4 (LC50 = 8.78 g/L) after short-term exposures. However, this species became sensitive to Na2SO4 (LC10 = 0.19 g/L) but tolerant to MgSO4 (LC10 = 0.35 g/L) after long-term exposures. These results suggest that the 0.25 g/L sulphate compliance limit for South Africa is inadequate to protect A. auriculata from Na2SO4 toxicity in the long-term, yet it overprotects this species from MgSO4 exposures in the short-term. The findings of this study are an important major step in understanding the ecological effects of AMD to aquatic life. (c) 2017 Elsevier Ltd. All rights reserved.
机译:酸性矿山排水(AMD)继续在淡水生态系统中劣化水质。硫酸盐是AMD中的主要盐组分,可以加剧淡水中的AMD效应,因为盐对高浓度的水生寿命有毒。硫酸盐在南非AMD受影响的淡水生态系统中是占主导地位的。在这项研究中,通过将生物体暴露于硫酸镁(MgSO 4)和硫酸钠(Na 2 SO 4)作为硫酸镁(96小时)和硫酸钠(96小时)和长期(240小时)在静态系统测试中。使用回归分析估计每种盐的短期和长期致命浓度。结果表明,在短期曝光后,A.Auriculata对MgSO 4(LC50 = 3.81g / L)比Na 2 SO 4(LC50 = 8.78g / L)更敏感。然而,该物种对Na 2 SO 4(LC10 = 0.19g / L)敏感,但在长期曝光后耐受MgSO4(LC10 = 0.35g / L)。这些结果表明,南非的0.25克/升硫酸盐合规限额不足以在长期保护A. auriculata免受Na2SO4毒性保护。它在短期内从MgSO4暴露中超出了该物种。本研究的调查结果是了解AMD对水生生活的生态影响的重要重大步骤。 (c)2017 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Physics and chemistry of the earth》 |2017年第2017期|共5页
  • 作者单位

    Rhodes Univ Inst Water Res Unilever Ctr Environm Water Qual POB 94 Grahamstown Eastern Cape South Africa;

    Rhodes Univ Inst Water Res Unilever Ctr Environm Water Qual POB 94 Grahamstown Eastern Cape South Africa;

    Rhodes Univ Inst Water Res Unilever Ctr Environm Water Qual POB 94 Grahamstown Eastern Cape South Africa;

    Rhodes Univ Inst Water Res Unilever Ctr Environm Water Qual POB 94 Grahamstown Eastern Cape South Africa;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 地球物理学;
  • 关键词

    Ecosystems; Freshwater; Mining; Toxicity; Salinity;

    机译:生态系统;淡水;采矿;毒性;盐度;
  • 入库时间 2022-08-20 06:13:10

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