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Adsorption of polyamine chelated copper ions onto gangue minerals and high capacity adsorbents.

机译:多胺螯合的铜离子在脉石矿物和高容量吸附剂上的吸附。

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摘要

The effluent quality from mining & processing operations is monitored to ensure that maximum allowable limits are not exceeded. Recently, copper concentration levels in the effluent discharge flows of a copper and nickel mining company in Ontario have indicated increasing trends. A chemical particular to the problem is use of diethylenetriamine (DETA) in the process.;Adsorption tests were conducted to investigate the ability of various adsorbents to remove and retain copper complexed with DETA and triethylenetetramine (TETA) in solutions. The tests were divided into two sections: gangue adsorbents (silica and pyrrhotite) and high capacity adsorbents (natural bentonite, peat, zeolite Y and zeolite ZSM-5).;Pyrrhotite as a sulphide gangue had a greater adsorption capacity than silica for the concentration range studied. At 1 ppm initial concentration, over 80% of copper chelate was removed by minus 400 mesh pyrrhotite compared to 72% of the same size silica. Freundlich and Langmuir isotherm models of adsorption are applicable. However, the Langmuir adsorption isotherm was found to more closely represent the experimental data with a maximum adsorption capacity of 129.9 microg/g for copper complexed with DETA on pyrrhotite.;For the high capacity adsorbents, natural bentonite, zeolite Y and peat each worked well at removing the copper chelates. Zeolite Y had the highest capacity for copper chelates and a maximum adsorption capacity of 55.9 mg/g. Freundlich and Langmuir adsorption isotherm models were studied with the Langmuir isotherm model more closely representing the experimental data.;Studies were also conducted on the effect of temperature. This led to a thermodynamic analysis of adsorption and estimation of activation energies. The standard free energies estimated for adsorption of copper chelated on adsorbents studied were nearly always negative, typically varying from around -2 kJ/mol to -7 kJ/mol with increasing temperature. The activation energy was found to be highest for the natural bentonite system suggesting a strong adsorption (e.g. 40.5 kJ/mol for CuTETA). Desorption experiments on the peat indicated very poor reversal for the process, confirming that the adsorption of copper chelates on high capacity adsorption was indeed very strong. Settling experiments indicated copper chelates were highly effective as coagulants on bentonite.
机译:监测采矿和加工过程中的废水质量,以确保不超过最大允许限值。最近,安大略省一家铜和镍采矿公司的废水排放流中的铜浓度水平显示出上升趋势。对该问题特别重要的化学方法是在该过程中使用二亚乙基三胺(DETA)。进行吸附测试以研究各种吸附剂去除和保留与DETA和三亚乙基四胺(TETA)络合的铜的能力。试验分为两个部分:脉石吸附剂(二氧化硅和黄铁矿)和高容量吸附剂(天然膨润土,泥煤,Y型沸石和ZSM-5型沸石);作为硫化物脉石的硅藻土在浓度上的吸附能力比二氧化硅高。研究范围。初始浓度为1 ppm时,负400目黄铁矿可去除80%以上的螯合铜,而相同尺寸的二氧化硅则为72%。 Freundlich和Langmuir等温吸附模型适用。然而,发现Langmuir吸附等温线更能代表实验数据,与黄铁矿上的DETA络合的铜最大吸附容量为129.9 microg / g;对于高容量吸附剂,天然膨润土,Y型沸石和泥煤均能很好地发挥作用在去除铜螯合物。沸石Y具有最高的螯合铜容量,最大吸附容量为55.9 mg / g。研究了Freundlich和Langmuir吸附等温线模型,以Langmuir等温线模型更接近地代表了实验数据。;还对温度的影响进行了研究。这导致了吸附的热力学分析和活化能的估计。估计用于研究的吸附剂上螯合的铜的吸附的标准自由能几乎始终为负,随着温度的升高,其自由能通常在-2 kJ / mol至-7 kJ / mol之间变化。发现天然膨润土系统的活化能最高,表明其具有很强的吸附性(例如CuTETA为40.5 kJ / mol)。泥炭的解吸实验表明该过程的逆转性很差,证实高容量吸附对螯合铜的吸附确实非常强。沉降实验表明铜螯合物作为膨润土上的凝结剂非常有效。

著录项

  • 作者单位

    Queen's University (Canada).;

  • 授予单位 Queen's University (Canada).;
  • 学科 Engineering Mining.
  • 学位 M.S.
  • 年度 2014
  • 页码 260 p.
  • 总页数 260
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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