AbstractThe sorption of both classic and emerging organic contaminants onto aquatic solids is a critic'/> Effects of lead, cadmium, chromium, and arsenic on the sorption of lindane and norfloxacin by river biofilms, particles, and sediments
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Effects of lead, cadmium, chromium, and arsenic on the sorption of lindane and norfloxacin by river biofilms, particles, and sediments

机译:铅,镉,铬和砷对河流生物膜,颗粒和沉积物吸附对林丹和诺氟沙星的影响

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摘要

AbstractThe sorption of both classic and emerging organic contaminants onto aquatic solids is a critical process that controls their fate in natural waters. Sorption is affected by numerous factors, including coexisting heavy metals. The mechanisms of the influence of heavy metals, especially those occurring in acid radical anions, are still unclear. Here, the effects of Pb, Cd, Cr, and As on the sorption of lindane and norfloxacin (NOR) onto natural biofilms, suspended particles, and sediments from one river were investigated following batch equilibration methods. In addition, changes in representative components that have important roles in sorption from these solids in the presence and absence of metals were characterized by spectrum analyses. The results indicated that sorption of lindane and NOR on the three solids in the absence of heavy metals was highly linear and nonlinear, respectively. Pb and Cd promoted and Cr and As suppressed hydrophobic lindane sorption on the three solids. This was because Pb and Cd enhanced but Cr and As weakened the hydrophobicity of these solids. Pb, Cd, Cr, and As decreased NOR sorption on sediments and suspended particles at pH?5.7~6.3. This was due to electrostatic competition between cationic Pb/Cd and NORH2+, and the combination of Cr/As acid radicals with NORH2+, which suppressed its ion-exchange adsorption. Pb, Cd, Cr, and As generally increased the sorption of NOR onto the biofilms at pH?5.7~6.3. Pb and Cd strengthened the flocculation of dissolved organic matter combined with NORH2+onto the biofilms. Cr and As enhanced the hydrophilicity of biofilms, and then increased their sorption of NOR with active hydrophilic groups. The mechanisms of how different heavy metals affect NOR sorption by biofilms were more complicated than the mechanisms affecting lindane sorption, as well as by sediments and particles.]]>
机译:<![CDATA [<摘要ID = “ABS1” 语言= “EN” OutputMedium = “全部”> <标题>抽象 <帕拉ID = “则Par1”>经典的和新出现的有机污染物在水生的吸着固体是控制其在自然水域命运的关键过程。吸附是由许多因素,包括共存重金属的影响。重金属,尤其是那些在酸自由基阴离子存在的影响的机制,目前仍不清楚。在此,铅,镉,铬,和As的林丹和诺氟沙星(NOR)上的生物膜自然,悬浮颗粒,并从一个河流沉积物吸附的影响进行了研究以下振荡平衡方法。此外,改变在具有在从在存在和不存在金属的这些固体吸附重要作用进行了表征分析光谱代表性组件。结果表明林丹即吸附和NOR上在不存在重金属的三种固体是高度线性的和非线性的,分别。 Pb和Cd促进和Cr和As抑制对三种固体疏水林丹吸附。这是因为铅和镉增强但Cr和作为削弱这些固体的疏水性。铅,镉,铬,和作为在pH降低NOR上的沉积物和悬浮颗粒吸着?5.7〜6.3。这是由于阳离子铅/镉和NORH <标> 2 <标> + ,和Cr的组合/作为酸基团与NORH <标> 2 <之间的静电竞争上标> + ,它抑制了它的离子交换吸附。铅,镉,铬,和如一般在pH升高的NOR到生物膜吸附?5.7〜6.3。 Pb和Cd的强化溶解的有机物质与NORH组合絮凝<标> 2 <标> + 到生物膜。 Cr和作为增强生物膜的亲水性,然后增加了他们的NOR活性亲水性基团吸附。如何不同重金属的机制影响NOR吸附由生物膜比机制进行了更复杂的影响林丹吸附,以及由沉积物和颗粒。 ]]>

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    Ministry of Education Key Lab of Groundwater Resources and Environment Jilin Province Key Lab of Water Resources and Aquatic Environment College of Environment and Resources Jilin University;

    Ministry of Education Key Lab of Groundwater Resources and Environment Jilin Province Key Lab of Water Resources and Aquatic Environment College of Environment and Resources Jilin University;

    Ministry of Education Key Lab of Groundwater Resources and Environment Jilin Province Key Lab of Water Resources and Aquatic Environment College of Environment and Resources Jilin University;

    Ministry of Education Key Lab of Groundwater Resources and Environment Jilin Province Key Lab of Water Resources and Aquatic Environment College of Environment and Resources Jilin University;

    Ministry of Education Key Lab of Groundwater Resources and Environment Jilin Province Key Lab of Water Resources and Aquatic Environment College of Environment and Resources Jilin University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 环境污染及其防治;环境科学、安全科学;
  • 关键词

    Pesticide; Organochlorine; Antibiotics; Quinolones; Heavy metal; Adsorption;

    机译:杀虫剂;有机氯;抗生素;喹诺酮类;重金属;吸附;

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