首页> 外文期刊>Journal of Colloid and Interface Science >Sorption of lead,copper,cadmium,zinc,and nickel by marine algal biomass:characterization of biosorptive capacity and investigation of mechanisms
【24h】

Sorption of lead,copper,cadmium,zinc,and nickel by marine algal biomass:characterization of biosorptive capacity and investigation of mechanisms

机译:海洋藻类生物质对铅,铜,镉,锌和镍的吸附作用:生物吸附能力的表征及其机理研究

获取原文
获取原文并翻译 | 示例
           

摘要

The marine algae Sargassum sp.,Padina sp.,Ulva sp.,and Gracillaria sp.,harvested locally,were investigated for their biosorption performance in the removal of lead,copper,cadmium,zinc,and nickel from dilute aqueous solutions.It was found that the biosorption capacities were significantly affected by solution pH,with higher pH favoring higher metal-ion removal.Kinetic and isotherm experiments were carried out at the optimal pH:at pH 5.0 for lead and copper,and at pH 5.5 for cadmium,zinc,and nickel.The metal removal rates were rapid,with 90% of the total adsorption taking place within 60 min.Sargassum sp.and Padina sp.showed the highest potential for the sorption of the metal ions,with the maximum uptake capacities ranging from 0.61 to 1.16 mmol/g for Sargassum sp.and 0.63 to 1.25 mmol/g for Padina sp.The general affinity sequence for Padina sp.was Pb>Cu>Cd>Zn>Ni,while that for Sargassum sp.was Pb>Zn>Cd>Cu>Ni.XPS and FTIR analysis of Sargassum sp.and Padina sp.revealed the chelating character of the ion coordination to carboxyl groups.It was confirmed that carboxyl,ether,alcoholic,and amino groups are responsible for the binding of the metal ions.
机译:研究了在本地收获的海藻Sargassum sp。,Padina sp。,Ulva sp。和Gracillaria sp。在稀水溶液中去除铅,铜,镉,锌和镍的生物吸附性能。发现溶液的pH值对生物吸附能力有显着影响,较高的pH值有利于较高的金属离子去除。在最佳pH值下进行了动力学和等温线试验:铅和铜的pH为5.0,镉,锌的pH为5.5金属去除率很快,在60分钟内发生了90%的总吸附。Sargassumsp。和Padina sp。表现出最大的金属离子吸附潜力,最大吸收能力为Sargassum sp。的0.61至1.16 mmol / g和Padina sp。的0.63至1.25 mmol / g.Padina sp。的一般亲和力顺序为Pb> Cu> Cd> Zn> Ni,而Sargassum sp。的一般亲和力顺序为Pb> Zn > Cd> Cu> Ni.XPS和FTIR分析揭示了Sargassum sp。和Padina sp。的螯合炭离子与羧基的配位作用。已证实羧基,醚,醇和氨基是金属离子结合的原因。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号