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781.
782.
Adsorption of Pb, Cd to Fe, Mn oxides in natural freshwater surface coatings developed in different seasons 总被引:4,自引:0,他引:4
Metal oxides( Fe, Mn oxides) in natural surface coatings(biofilms and associated minerals) are believed to play a significant role n the fate and transport of trace metal in aquatic environments. Seasonal variation of Fe, Mn oxides and organic materials in surface oatings, which were developed periodically on glass slides in Nanhu Lake, Jilin Province, China over the time frame of three seasons,was investigated in order to understand the influence of metal oxides on Pb and Cd adsorption to heterogeneous surface coating materials(biofilm). Pb and Cd adsorption was measured under controlled laboratory conditions( mineral salts solution with defined speciation, ionic trength 0.05 mol/L, 25~C and pH 6.0). The classical Langmuir adsorption isotherm was applied to estimate equilibrium coefficients of Pb nd Cd adsorption to the surface coatings. In general, components in the surface coatings varied greatly with seasons altering and btained higher concentrations in summer while the content of iron oxides always exceeded that of manganese oxides. Correlation nalyses between the maximum adsorption of Pb and Cd and components in the surface coatings developed periodically indicated that Pb hase association with Mn oxides and Cd phase association with Fe oxides as well as Mn oxides were statistically significant. Effect of Mn xides on Cd adsorption was confirmed in view of its higher content in the surface coatings. The importance of ferromanganese oxides for b and Cd adsorption to the natural surface coatings developed in different seasons was evidenced. 相似文献
783.
Adsorption characteristic of bensulfuron-methyl at variable added Pb^2+ concentrations on paddy soils 总被引:1,自引:0,他引:1
WU Weihong WANG Haizhen XU Jianming XIE Zhengmiao 《环境科学学报(英文版)》2009,21(8):1129-1134
The combined pollution of heavy metal Pb2+ and bensulfuron-methyl (BSM), originating from chemical herbicides, in agroecological environments has become commonplace in southern China. The adsorption of BSM on three paddy soils in the presence of Pb2+ was examined using high-performance liquid chromatograph (HPLC). Results indicated that adsorption of BSM could accurately be described by a Freundlich isotherm equation with correlation constant (R) > 0.98, irrespective of the presence of spiked Pb2+. Of the various factors influencing BSM sorption, soil pH appeared to be the most influential. The constant Kf of Freundlich isotherm equation tended to increase with increasing Pb2+ concentration in soil which indicated that the spiked of Pb2+ in paddy soils would promote the sorption of BSM. ΔGθ of BSM in three paddy soils was less than 40 kJ/mol in all treatments, indicating the adsorption of BSM is mainly physical in nature. The elution of soil dissolved organic matter (DOM) enhanced the adsorption of BSM in paddy soils. The mechanisms involved in the promotion effects of the spiked Pb2+ on BSM adsorption might be the modified surface characteristics of paddy soil solids due to the soil acidification and the increase of soil organic matter concentration because of DOM binding. 相似文献
784.
针对中国石化普光气田产出水属于典型的含硫污水,密闭处理系统中产生大量高含硫尾气,论述了尾气处理工艺中存在的问题,优化了单一的生物除硫、活性炭吸附工艺,增加了一级碱洗、氧化除硫工艺,实现尾气达标排放。 相似文献
785.
786.
Cr(Ⅲ) adsorption by biochars generated from peanut, soybean, canola and rice straws is investigated with batch methods. Adsorption of Cr(Ⅲ) increased as pH rose from 2.5 to 5.0. Adsorption of Cr(Ⅲ) led to peak position shifts in the FFIR-PAS spectra of the biochars and made zeta potential values less negative, suggesting the formation of surface complexes between Cr^3+ and functional groups on the biochars. The adsorption capacity of Cr(Ⅲ) followed the order: peanut straw char 〉 soybean straw char 〉 canola straw char 〉 rice straw char, which was consistent with the content of acidic functional groups on the biochars. The increase in Cr^3+ hydrolysis as the pH rose was one of the main reasons for the increased adsorption of Cr(Ⅲ) by the biochars at higher pH values. Cr(llI) can be adsorbed by the biochars through electrostatic attraction between negative surfaces and Cr^3+, but the relative contribution of electrostatic adsorption was less than 5%. Therefore, Cr(Ⅲ) was mainly adsorbed by the biochars through specific adsorption. The Langumir and Freundlich equations fitted the adsorption isotherms well and can therefore be used to describe the adsorption behavior of Cr(Ⅲ) by the crop straw biochars. The crop straw biochars have great adsorption capacities for Cr(Ⅲ) under acidic conditions and can be used as adsorbents to remove Cr(Ⅲ) from acidic wastewaters. 相似文献
787.
采用简单的沉积-沉淀法合成了BiOBr/Bi_2MoO_6(BOB/BMO)异质结,采用XRD、XPS、TEM、SEM、EDS、FT-IR、UV-Vis-DRS、PL、PC和EIS等测试技术对光催化剂的物相组成、形貌、光吸收特性和光电化学性能等进行系统表征,并以模型污染物甲基橙(MO)的吸附和光催化降解作为探针来评价BiOBr/Bi_2MoO_6异质结的吸附性能与光催化活性增强机制.SEM和TEM分析结果表明,所得Bi_2MoO_6微球由大量厚度约为20~50 nm的纳米片组成;沉淀-沉积法所得样品的形貌分析显示,尺寸约为10 nm的BiOBr量子点均匀沉积在Bi_2MoO_6微球表面,形成的新颖的BOB/BMO异质结.N2吸附/脱附结果表明,Bi_2MoO_6和BiOBr形成异质结具有大的比表面积(64.94 m2·g-1),且表面孔结构丰富.吸附/光催化降解实验结果表明,与纯Bi_2MoO_6或者BiOBr相比,BOB/BMO异质结表现出更好的吸附性能和光催化活性.吸附/光催化协同作用机理分析表明,BOB/BMO异质结具有大的比表面积和丰富的孔结构是其吸附性能增强的主要原因.此外,光致发光(PL)谱、光电流(PC)和交流阻抗(EIS)分析进一步揭示了BOB/BMO异质结有利于光生载流子的分离与转移,导致光催化活性增强,二者的协同作用使其对MO具有优越的去除性能.此外,BOB/BMO异质结较稳定,重复使用性能良好,有望用于MO废水的实际处理. 相似文献
788.
针对污水厂尾水脱氮除磷问题,采用共沉淀法制备了镁铝铁类水滑石(Mg/Al/Fe–LDHs),在450℃下焙烧3h得到焙烧态类水滑石(Mg/Al/Fe–LDO).研究了Fe(Ⅲ)掺杂对Mg/Al-LDO吸附氮磷的影响及吸附特性.结果表明,当Mg/Al/Fe物质的量比为3:0.6:0.4时,Mg/Al/Fe-LDO对氮磷吸附性能较好,最大吸附容量分别为28.57mg/g和231.46mg/g.吸附过程均符合Langmuir吸附等温模型,拟合相关系数(R2)达到0.99以上.根据XRD、FTIR的表征结果可以推断,Mg/Al/Fe–LDO是通过“记忆效应”、静电引力作用完成对氮磷的吸附,对磷的吸附还包括离子交换作用. 相似文献
789.
自然水体生物膜对铜(Ⅱ)、镉(Ⅱ)的吸附研究 总被引:2,自引:0,他引:2
以董铺水库为水源、天然纯棉绳为人工基质培养生物膜,研究了附着在棉绳表面上的自然水体生物膜吸附Cu和Cd的热力学和动力学特征及pH对吸附性能的影响.通过对实验数据进行非线型拟合,发现生物膜对2种重金属的吸附均符合Freundlich(F)和Langmuir(L)吸附等温式,对2种金属的吸附能力顺序是:Cu>Cd.生物膜对Cu和Cd的吸附在数小时内可达到平衡,吸附过程符合二级动力学特征.通过调节吸附液的pH值,研究了不同pH对吸附效果的影响.结果表明,随着pH的升高,2种金属的吸附量明显增加. 相似文献
790.
厌氧环境中硫化亚铁(FeS)在重金属元素的地球化学循环中扮演极其重要的角色。然而,厌氧条件下FeS与锑(Sb)之间的相互作用尚未有较为清晰的认识。为了探究厌氧条件下FeS对三价锑(Sb(Ⅲ))的吸附动力学、吸附等温线以及吸附的影响因素,本研究以沉淀法制备的FeS为研究对象,测试了其溶解性以及表面形貌。并通过条件实验,考察不同pH、初始FeS、反应时间等因素对FeS吸附Sb(Ⅲ)的影响。结果表明:吸附过程符合准二级动力学模型的描述;中性条件下Langmuir吸附模型对吸附过程具有较高的拟合度,饱和吸附量为380. 3 mg/g; Sb(Ⅲ)在酸性条件下的吸附可能与硫化矿物Sb2S3的析出密切相关,这可能是与FeS溶解产生H_2S反应的结果;而在中性及碱性条件下,FeS与Sb(Ⅲ)的反应主要与表面吸附反应有关。 相似文献