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Controlling cyanobacterial blooms through effective flocculation and sedimentation with combined use of flocculants and phosphorus adsorbing natural soil and modified clay

机译:通过絮凝剂和吸附磷的天然土壤和改性粘土的有效结合,通过有效的絮凝和沉降来控制蓝藻水华

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摘要

Eutrophication often results in blooms of toxic cyanobacteria that hamper the use of lakes and reservoirs. In this paper, we experimentally evaluated the efficacy of a metal salt (poly-aluminium chloride, PAC) and chitosan, alone and combined with different doses of the lanthanum modified bentonite Phoslock (R) (LMB) or local red soil (LRS) to sediment positively buoyant cyanobacteria from Funil Reservoir, Brazil, (22 degrees 30'S, 44 degrees 45'W). We also tested the effect of calcium peroxide (CaO2) on suspended and settled cyanobacterial photosystem efficiency, and evaluated the soluble reactive P (SRP) adsorbing capacity of both LMB and LRS under oxic and anoxic conditions. Our data showed that buoyant cyanobacteria could be flocked and effectively precipitated using a combination of PAC or chitosan with LMB or LRS. The SRP sorption capacity of LMB was higher than that of LRS. The maximum P adsorption was lowered under anoxic conditions especially for LRS ballast. CaO2 addition impaired photosystem efficiency at 1 mg L-1 or higher and killed precipitated cyanobacteria at 4 mg L-1 or higher. A drawback was that oxygen production from the peroxide gave positive buoyancy again to the settled flocs. Therefore, further experimentations with slow release pellets are recommended. (C) 2015 Elsevier Ltd. All rights reserved.
机译:富营养化经常导致有毒蓝藻繁殖,从而阻碍湖泊和水库的利用。在本文中,我们通过实验评估了金属盐(聚氯化铝,PAC)和壳聚糖单独使用,以及与不同剂量的镧改性膨润土Phoslock(R)(LMB)或局部红壤(LRS)结合使用的功效。来自巴西Funil水库的沉积物呈阳性浮力蓝细菌(22度30'S,44度45'W)。我们还测试了过氧化钙(CaO2)对悬浮和沉降的蓝细菌光系统效率的影响,并评估了LMB和LRS在有氧和无氧条件下的可溶性反应性P(SRP)吸附能力。我们的数据表明,使用PAC或壳聚糖与LMB或LRS的组合可以使浮力蓝藻聚集并有效沉淀。 LMB的SRP吸附能力高于LRS。在缺氧条件下,尤其是对于LRS镇流器,最大的P吸附降低。添加CaO2会损害1 mg L-1或更高的光系统效率,并杀死4 mg L-1或更高的沉淀蓝细菌。缺点是过氧化物产生的氧气再次使沉降的絮凝物产生正浮力。因此,建议进一步试验缓释微丸。 (C)2015 Elsevier Ltd.保留所有权利。

著录项

  • 来源
    《Water Research》 |2016年第15期|26-38|共13页
  • 作者单位

    Univ Estado Rio De Janeiro, Dept Plant Biol, Lab Ecol & Physiol Phytoplankton, Rua Sao Francisco Xavier 524 PHLC Sala 511a, BR-20550900 Rio De Janeiro, Brazil;

    Univ Estado Rio De Janeiro, Dept Plant Biol, Lab Ecol & Physiol Phytoplankton, Rua Sao Francisco Xavier 524 PHLC Sala 511a, BR-20550900 Rio De Janeiro, Brazil;

    Univ Estado Rio De Janeiro, Dept Plant Biol, Lab Ecol & Physiol Phytoplankton, Rua Sao Francisco Xavier 524 PHLC Sala 511a, BR-20550900 Rio De Janeiro, Brazil;

    Wageningen Univ, Dept Environm Sci, Aquat Ecol & Water Qual Management Grp, POB 47, NL-6700 AA Wageningen, Netherlands;

    Wageningen Univ, Dept Environm Sci, Aquat Ecol & Water Qual Management Grp, POB 47, NL-6700 AA Wageningen, Netherlands;

    Univ Fed Rio de Janeiro, Museu Nacl, BR-20940040 Rio De Janeiro, Brazil;

    Univ Estado Rio De Janeiro, Dept Plant Biol, Lab Ecol & Physiol Phytoplankton, Rua Sao Francisco Xavier 524 PHLC Sala 511a, BR-20550900 Rio De Janeiro, Brazil;

    Wageningen Univ, Dept Environm Sci, Aquat Ecol & Water Qual Management Grp, POB 47, NL-6700 AA Wageningen, Netherlands|Netherlands Inst Ecol NIOO KNAW, Dept Aquat Ecol, POB 50, NL-6700 AB Wageningen, Netherlands;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Cyanobacteria bloom; Eutrophication control; Geo-engineering in lakes; Lake restoration; Local red soil; Phosphorus mitigation;

    机译:蓝藻水华;富营养化控制;湖泊中的地球工程;湖泊修复;局部红壤;磷的缓解;
  • 入库时间 2022-08-17 13:41:49

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