农业环境科学学报
農業環境科學學報
농업배경과학학보
Journal of Agro-Environment Science
2015年
6期
1196-1201
,共6页
水溶性腐植酸%苯并三唑%石英砂负载氧化铁%吸附
水溶性腐植痠%苯併三唑%石英砂負載氧化鐵%吸附
수용성부식산%분병삼서%석영사부재양화철%흡부
dissolvable humic acid%benzotriazole%iron oxide coated quartz sands(IOCQS)%sorption
水溶性腐植酸(DHA)对环境中污染物的吸附有重要影响。通过批实验研究了阳离子类型、DHA浓度等因素对石英砂负载氧化铁吸附DHA和苯并三唑(BTA)的影响。结果表明:在溶液pH为6.0时,静电作用在石英砂负载氧化铁吸附DHA的过程中起重要作用,Freundlich模型能很好地描述石英砂负载氧化铁对BTA的吸附;DHA对石英砂负载氧化铁吸附BTA的影响程度与DHA浓度和电解质类型有关,当DHA浓度在0~15.68 mg·L-1范围时,在以0.01 mol·L-1 CaCl2为背景电解质的溶液中,DHA浓度越大,其促进BTA吸附越明显;DHA通过累积吸附作用,促进石英砂负载氧化铁对BTA的吸附;在不同的电解质溶液中,石英砂负载氧化铁对DHA的吸附量不同,从而对石英砂负载氧化铁吸附BTA的影响也不同。
水溶性腐植痠(DHA)對環境中汙染物的吸附有重要影響。通過批實驗研究瞭暘離子類型、DHA濃度等因素對石英砂負載氧化鐵吸附DHA和苯併三唑(BTA)的影響。結果錶明:在溶液pH為6.0時,靜電作用在石英砂負載氧化鐵吸附DHA的過程中起重要作用,Freundlich模型能很好地描述石英砂負載氧化鐵對BTA的吸附;DHA對石英砂負載氧化鐵吸附BTA的影響程度與DHA濃度和電解質類型有關,噹DHA濃度在0~15.68 mg·L-1範圍時,在以0.01 mol·L-1 CaCl2為揹景電解質的溶液中,DHA濃度越大,其促進BTA吸附越明顯;DHA通過纍積吸附作用,促進石英砂負載氧化鐵對BTA的吸附;在不同的電解質溶液中,石英砂負載氧化鐵對DHA的吸附量不同,從而對石英砂負載氧化鐵吸附BTA的影響也不同。
수용성부식산(DHA)대배경중오염물적흡부유중요영향。통과비실험연구료양리자류형、DHA농도등인소대석영사부재양화철흡부DHA화분병삼서(BTA)적영향。결과표명:재용액pH위6.0시,정전작용재석영사부재양화철흡부DHA적과정중기중요작용,Freundlich모형능흔호지묘술석영사부재양화철대BTA적흡부;DHA대석영사부재양화철흡부BTA적영향정도여DHA농도화전해질류형유관,당DHA농도재0~15.68 mg·L-1범위시,재이0.01 mol·L-1 CaCl2위배경전해질적용액중,DHA농도월대,기촉진BTA흡부월명현;DHA통과루적흡부작용,촉진석영사부재양화철대BTA적흡부;재불동적전해질용액중,석영사부재양화철대DHA적흡부량불동,종이대석영사부재양화철흡부BTA적영향야불동。
Dissolvable humic acid(DHA)plays an important role in sorption of pollutants in the environment. The effects of cation type and DHA concentration on sorption of DHA and benzotriazole(BTA)on iron oxide coated quartz sands(IOCQS)were studied using batch ex-periments. At the solution pH 6.0, electrostatic interaction plays an important role in the sorption of DHA by IOCQS. The isotherms of BTA sorption by IOCQS could be well described by Freundlich model. The effect of DHA on sorption of BTA was strongly determined by DHA concentration and electrolyte type. At 0~15.68 mg·L-1 of DHA concentration, DHA enhanced sorption of BTA on IOCQS in 0.01 mol·L-1 CaCl2 solution. Such enhancement was mainly resulted from cumulative sorption. Under different background electrolytes, the amount of ad-sorbed DHA was different, and the effect of DHA on BTA sorption by IOCQS was consequently different.