薄膜扩散梯度技术(Diffusive Gradientsin Thin Films Technique,DGT)是近年来应用于水体、沉积物和土壤中的铜镉等重金属生物有效性研究的一种新技术。采用标准溶液培养方法研究了以氧化铁作为吸附剂的DGT测定水环境中无机砷含量的可行...薄膜扩散梯度技术(Diffusive Gradientsin Thin Films Technique,DGT)是近年来应用于水体、沉积物和土壤中的铜镉等重金属生物有效性研究的一种新技术。采用标准溶液培养方法研究了以氧化铁作为吸附剂的DGT测定水环境中无机砷含量的可行性,并探讨了待测介质的pH和As价态对DGT测定结果的影响。结果表明,研究所用DGT装置中的吸附凝胶对砷吸附的最大容量≤42μg,其有效容量≤13μg,为确保DGT测定值的准确性,需要对DGT装置的放置时间加以控制;当水体中砷浓度为0.1~11.0mg·L-1时,DGT测定的溶液中无机砷浓度与直接用HG-AFS测定待测水体中无机砷浓度之间有较好的响应关系,DGT测定水体中无机砷的浓度能较好反应水体中无机砷的真实浓度;当溶液的pH值为2.95~8.18时,不同pH下吸附凝胶对砷的吸附量间差异不显著,溶液pH值在一定范围不影响DGT的测定结果;As(V)、As(Ⅲ)在进行DGT试验时不存在竞争吸附关系,砷离子的价态对DGT测定水体中的无机砷的浓度没有显著影响。总之,在各种环境相关的条件下,DGT是一种可以用于测定水体中总无机砷的有效方法。展开更多
Urban sediments have rapidly increased in recent years around the world,and their effective management has become an important problem.To remove heavy metals from stormwater runoff and use sediments as a resource,a no...Urban sediments have rapidly increased in recent years around the world,and their effective management has become an important problem.To remove heavy metals from stormwater runoff and use sediments as a resource,a novel ceramsite was developed using sewer pipe sediments(SPS),river bed sediments(RBS),urban water supply treatment sludge(WSTS),and wastewater treatment plant excess sludge(WWTS).The optimal composition was determined based on the Brunauer–Emmett–Teller specific surface area and an orthogonal test design.The adsorption characteristics of the novel ceramsite for dissolved heavy metals(Cu^(2+)and Cd^(2+)) were investigated through adsorption isotherms and kinetic experiments at(25±1)℃.Both Cu^(2+) and Cd^(2+) were effectively removed by the novel ceramsite,and their equilibrium adsorption was 4.96 mg·g^(-1) and 3.84 mg·g^(-1),respectively.Langmuir isotherms and a pseudo-first-order kinetic equation described the adsorption process better than other techniques.Characterization analysis of the ceramsite composition before and after heavy metal adsorption showed that the Cu^(2+) and Cd^(2+) contents in the ceramsite increased after adsorption.The results revealed that adsorption is both a physical and chemical process,and that ceramsite can be used as a bioretention medium to remove heavy metals from stormwater runoff while simultaneously converting problematic urban sediments into a resource.展开更多
文摘薄膜扩散梯度技术(Diffusive Gradientsin Thin Films Technique,DGT)是近年来应用于水体、沉积物和土壤中的铜镉等重金属生物有效性研究的一种新技术。采用标准溶液培养方法研究了以氧化铁作为吸附剂的DGT测定水环境中无机砷含量的可行性,并探讨了待测介质的pH和As价态对DGT测定结果的影响。结果表明,研究所用DGT装置中的吸附凝胶对砷吸附的最大容量≤42μg,其有效容量≤13μg,为确保DGT测定值的准确性,需要对DGT装置的放置时间加以控制;当水体中砷浓度为0.1~11.0mg·L-1时,DGT测定的溶液中无机砷浓度与直接用HG-AFS测定待测水体中无机砷浓度之间有较好的响应关系,DGT测定水体中无机砷的浓度能较好反应水体中无机砷的真实浓度;当溶液的pH值为2.95~8.18时,不同pH下吸附凝胶对砷的吸附量间差异不显著,溶液pH值在一定范围不影响DGT的测定结果;As(V)、As(Ⅲ)在进行DGT试验时不存在竞争吸附关系,砷离子的价态对DGT测定水体中的无机砷的浓度没有显著影响。总之,在各种环境相关的条件下,DGT是一种可以用于测定水体中总无机砷的有效方法。
基金Supported by the Training Project of Beijing Young Talents(2114751406)the Beijing Social Science Fund(15JGB052)+1 种基金the Beijing Municipal Science and Technology Project(D161100005916004)Beijing outstanding talent project for excellent youth team(2015000026833T0000)
文摘Urban sediments have rapidly increased in recent years around the world,and their effective management has become an important problem.To remove heavy metals from stormwater runoff and use sediments as a resource,a novel ceramsite was developed using sewer pipe sediments(SPS),river bed sediments(RBS),urban water supply treatment sludge(WSTS),and wastewater treatment plant excess sludge(WWTS).The optimal composition was determined based on the Brunauer–Emmett–Teller specific surface area and an orthogonal test design.The adsorption characteristics of the novel ceramsite for dissolved heavy metals(Cu^(2+)and Cd^(2+)) were investigated through adsorption isotherms and kinetic experiments at(25±1)℃.Both Cu^(2+) and Cd^(2+) were effectively removed by the novel ceramsite,and their equilibrium adsorption was 4.96 mg·g^(-1) and 3.84 mg·g^(-1),respectively.Langmuir isotherms and a pseudo-first-order kinetic equation described the adsorption process better than other techniques.Characterization analysis of the ceramsite composition before and after heavy metal adsorption showed that the Cu^(2+) and Cd^(2+) contents in the ceramsite increased after adsorption.The results revealed that adsorption is both a physical and chemical process,and that ceramsite can be used as a bioretention medium to remove heavy metals from stormwater runoff while simultaneously converting problematic urban sediments into a resource.