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1.
Bamboo charcoal(BC) was used as starting material to prepare iron-modified bamboo charcoal(Fe-MBC) by its impregnation in FeCl 3 and HNO 3 solutions simultaneously,followed by microwave heating.The material can be used as an adsorbent for Pb(Ⅱ) contaminants removal in water.The composites were prepared with Fe molar concentration of 0.5,1.0 and 2.0 mol/L and characterized by means of N 2 adsorption-desorption isotherms,X-ray diffraction spectroscopy(XRD),scanning electron microscopy coupled with energy dispersive X-ray spectrometry(SEM-EDS),Fourier transform infrared(FT-IR) and point of zero charge(pH pzc) measurements.Nitrogen adsorption analyses showed that the BET specific surface area and total pore volume increased with iron impregnation.The adsorbent with Fe molar concentration of 2 mol/L(2Fe-MBC) exhibited the highest surface area and produced the best pore structure.The Pb(Ⅱ) adsorption process of 2Fe-MBC and BC were evaluated in batch experiments and 2Fe-MBC showed an excellent adsorption capability for removal Pb(Ⅱ).The adsorption of Pb(Ⅱ) strongly depended on solution pH,with maximum values at pH 5.0.The ionic strength had a significant effect on the adsorption at pH < 6.0.The adsorption isotherms followed the Langmuir isotherm model well,and the maximum adsorption capacity for Pb(Ⅱ) was 200.38 mg/g for 2Fe-MBC.The adsorption processes were well fitted by a pseudo second-order kinetic model.Thermodynamic parameters showed that the adsorption of Pb(Ⅱ) onto Fe-MBC was feasible,spontaneous,and exothermic under the studied conditions,and the ion exchange mechanism played an significant role.These results have important implications for the design of low-cost and effective adsorbents in the removal of Pb(Ⅱ) from wastewater.  相似文献   

2.
以壳聚糖和经酒石酸改性的平菇粉末为材料,通过戊二醛进行交联反应,制得壳聚糖-改性平菇凝胶小球(CMPOD)复合生物吸附剂,用于水溶液中Cr(VI)的吸附去除.结果表明,在实验所测pH值(2~10)范围内,复合吸附剂对Cr(VI)的吸附量随着pH值上升而降低;随着Cr(VI)初始浓度或温度的提高,吸附剂对Cr(VI)的吸附量均相应增加,当Cr(VI)初始浓度为600mg/L,温度为50℃,Cr(VI)吸附量可达190mg/g以上;Cr(VI)的吸附符合准二级动力学方程及Freundlich等温吸附模型;热力学分析表明,吸附剂对Cr(VI)的吸附过程为自发的吸热反应.扫描电镜(SEM)分析显示,吸附剂具有发达的网状结构,吸附Cr(VI)后网状孔隙被填充,且能谱分析(EDS)出现明显的Cr(VI)吸收峰;傅立叶红外光谱分析(FTIR)表明,壳聚糖中的氨基成功引入复合吸附剂中,在Cr(VI)吸附中为主要作用官能团.  相似文献   

3.
A fibrous strong base anion exchanger (QAPPS) was prepared for the first time via chloromethylation and quaternary amination reaction of polyphenylene sulfide fiber (PPS), and its physical-chemical structure and adsorption behavior for Cr(VI) were characterized by FT-IR, Energy Dispersive Spectrometry, TG-DTG, elemental analysis and batch adsorptive technique, respectively. The novel fibrous adsorbent could effectively adsorb Cr(VI) over the pH range 1-12, the maximum adsorption capacity was 166.39 mg/g at pH 3.5, and the adsorption behavior could be described well by Langmuir isotherm equation model. The adsorption kinetics was studied using pseudo first-order and pseudo second-order models, and the t1/2 and equilibrium adsorption time were 5 and 20 min respectively when initial Cr(VI) concentration was 100 mg/L. The saturated fibers could be regenerated rapidly by a mixed solution of 0.5 mol/L NaOH and 0.5 mol/L NaCl, and the adsorption capacity was well maintained after six adsorption-desorption cycles.  相似文献   

4.
Mg–Al–Cl layered double hydroxide (Cl-LDH) was prepared to simultaneously remove Cu(II) and Cr(VI) from aqueous solution. The coexisting Cu(II) (20 mg/L) and Cr(VI) (40 mg/L) were completely removed within 30 min by Cl-LDH in a dosage of 2.0 g/L; the removal rate of Cu(II) was accelerated in the presence of Cr(VI). Moreover, compared with the adsorption of single Cu(II) or Cr(VI), the adsorption capacities of Cl-LDH for Cu(II) and Cr(VI) can be improved by 81.05% and 49.56%, respectively, in the case of coexisting Cu(II) (200 mg/L) and Cr(VI) (400 mg/L). The affecting factors (such as solution initial pH, adsorbent dosage, and contact time) have been systematically investigated. Besides, the changes of pH values and the concentrations of Mg2+ and Al3+ in relevant solutions were monitored. To get the underlying mechanism, the Cl-LDH samples before and after adsorption were thoroughly characterized by X-ray powder diffraction, transmission electron microscopy, Fourier transform infrared spectroscopy, and X-ray photoelectron spectroscopy. On the basis of these analyses, a possible mechanism was proposed. The coadsorption process involves anion exchange of Cr(VI) with Cl in Cl-LDH interlayer, isomorphic substitution of Mg2+ with Cu2+, formation of Cu2Cl(OH)3 precipitation, and the adsorption of Cr(VI) by Cu2Cl(OH)3. This work provides a new insight into simultaneous removal of heavy metal cations and anions from wastewater by Cl-LDH.  相似文献   

5.
A novel illite@carbon (I@C) nanocomposite adsorbent has been synthesized via a facile hydrothermal carbonization process (HTC) using glucose as carbonaceous source and illite as the carrier. The morphology, microstructure and surface properties of the prepared nanocomposite adsorbent were analyzed by FESEM, TGA, XRD, FT-IR and Zeta potential measurements. Batch experiments were carried out on the adsorption of Cr(VI) to determine the adsorption properties of the composite. The adsorption of Cr(VI) onto the I@C nanocomposite was well described by the pseudo-second-order kinetic model and Langmuir isotherm. Compared with the illite and carbon material (SC) separately, the prepared I@C nanocomposite adsorbent exhibited enhanced adsorption performance for Cr(VI) with a maximum adsorption capacity of 149.25 mg/g, which was higher than that of most reported adsorbents. In addition, the adsorption process was spontaneous and endothermic based on the adsorption thermodynamics study. The adsorption of Cr(VI) by I@C was highly pH-dependent and the optimum adsorption occurred at pH 2.0. The Zeta potential analysis results indicated that the electrostatic interactions between anionic Cr(VI) and the positively charged surface of the adsorbent might be critical to the adsorption mechanism. This study demonstrated that the I@C nanocomposite should be a promising candidate for a low-cost, environmental friendly and highly efficient adsorbent for the removal of toxic Cr(VI) from wastewater.  相似文献   

6.
Lagerstroemia speciosa bark (LB) embedded magnetic nanoparticles were prepared by co-precipitation of Fe2+ and Fe3+ salt solution with ammonia and LB for Cr(VI) removal from aqueous solution. The native LB, magnetic nanoparticle (MNP), L. speciosa embedded magnetic nanoparticle (MNPLB) and Cr(VI) adsorbed MNPLB particles were characterized by SEM–EDX, TEM, BET-surface area, FT-IR, XRD and TGA methods. TEM analysis confirmed nearly spherical shape of MNP with an average diameter of 8.76 nm and the surface modification did not result in the phase change of MNP as established by XRD analysis, while led to the formation of secondary particles of MNPLB with diameter of 18.54 nm. Characterization results revealed covalent binding between the hydroxyl group of MNP and carboxyl group of LB particles and further confirmed its physico-chemical nature favorable for Cr(VI) adsorption. The Cr(VI) adsorption on to MNPLB particle as an adsorbent was tested under different contact time, initial Cr(VI) concentration, adsorbent dose, initial pH, temperature and agitation speed. The results of the equilibrium and kinetics of adsorption were well described by Langmuir isotherm and pseudo-second-order model, respectively. The thermodynamic parameters suggest spontaneous and endothermic nature of Cr(VI) adsorption onto MNPLB. The maximum adsorption capacity for MNPLB was calculated to be 434.78 mg/g and these particles even after Cr(VI) adsorption were collected effortlessly from the aqueous solution by a magnet. The desorption of Cr(VI)-adsorbed MNPLB was found to be more than 93.72% with spent MNPLB depicting eleven successive adsorption–desorption cycles.  相似文献   

7.
油菜秸杆外壳对水溶液中六价铬的吸附作用   总被引:3,自引:0,他引:3  
为探讨油菜秸秆外壳去除水溶液中重金属铬的可能性及其影响因素,并研究其吸附性能和吸附机制.采用Box-Behnken Design实验设计研究了水溶液中六价铬[Cr(VI)]初始浓度、pH值范围、油菜秸秆外壳添加量和吸附温度4个因素对油菜秸秆外壳去除溶液中Cr(VI)的影响作用;用吸附等温方程、吸附动力学方程与热力学方程分别探讨了油菜秸秆外壳去除水溶液中Cr(VI)的行为;采用红外光谱技术对油菜秸秆外壳吸附水溶液Cr(VI)前后进行表征,探讨其吸附机制.油菜秸秆外壳去除溶液中Cr(VI)的最佳条件组合为:在吸附时间为1440min时,Cr(VI)初始浓度为99.15mg/L、pH值为1.01、油菜秸秆外壳添加量为2.90g/L和吸附温度35.70℃,Cr(VI)去除率为91.97%;吸附等温线拟合,吸附Cr(VI)行为符合Freundlich方程,为优惠吸附;热力学研究表明:溶液中Cr(VI)吸附属吸热反应,且为自发吸附行为;吸附动力学显示:油菜秸秆外壳去除溶液Cr(VI)符合准二阶动力学方程,吸附过程中存在离子交换;红外光谱提示:吸附过程中,O—H、C—H、NH3+、N—H和C—O基团与Cr(VI) 络合吸附发挥了重要作用.油菜秸秆外壳能够有效吸附水溶液中的Cr(VI),pH值是最为重要的影响因素.  相似文献   

8.
纳米Fe3O4负载的浮游球衣菌去除Cr(Ⅵ)的研究   总被引:1,自引:0,他引:1  
以纳米Fe3O4负载浮游球衣菌(Sphaerotilus natans)为复合生物吸附剂,考察了其对Cr(Ⅵ)的吸附性能,并对生物吸附机理进行了初步研究.结果表明,pH值是影响复合生物吸附剂吸附Cr(Ⅵ)的主要因素,吸附的最佳pH为2~3;用此复合生物吸附剂对Cr(Ⅵ)进行吸附,其单位吸附量为0.0217 mmol/g.用HCl对其进行再生,再生率在90%以上;—CONH2和—NH—是菌体吸附Cr(Ⅵ)的主要活性基团,静电吸引是复合生物吸附剂吸附Cr(Ⅵ)的主要机理之一.  相似文献   

9.
本文利用沸石负载羟基氧化铁作吸附剂对六价铬进行吸附和解吸附实验。探讨了沸石负载羟基氧化铁对六价铬的吸附机制和固体浓度效应。实验结果表明:当吸附剂的用量从0.05g增加到0.2g时,在实验条件下,六价铬的吸附量从27999.493μg/g降低到8930.610μg/g,吸附剂对Cr6+的吸附存在明显的固体浓度(Cs)效应。吸附滞后角随着Cs的增加而减小,吸附反应的可逆性增大。将实验数据分别用Languir和Freundlich吸附模型进行拟合,发现Freundlich吸附模型对实验数据拟合效果较好,表明该吸附反应以单分子层吸附为主。  相似文献   

10.
通过直接沉淀-热改性法将纳米氢氧化镁晶体(Mg(OH)_2)负载在生物质炭(BC)上,系统研究了该改性材料(Mg(OH)_2-BC)对模拟废水中氮、磷的固定特性,并探讨了投加量、反应溶液pH、接触时间对吸附过程的影响.结果表明,Mg(OH)_2-BC在投加量为0.3 g·L~(-1),反应溶液初始pH为7,反应时间≥40 min时对氮、磷的固定效果最佳,最大吸附量分别达到58.8、130.0 mg·g~(-1).Mg(OH)_2-BC对氮、磷的吸附过程均符合准二级动力学模型,吸附过程受化学吸附机理的控制.通过SEM、XRD、FTIR等对反应产物进行表征分析,结果表明,Mg(OH)_2-BC对氮、磷的固定机制主要为鸟粪石结晶沉淀,也即化学沉淀.  相似文献   

11.
BS+DAS复配修饰膨润土吸附Cr(Ⅵ)和Cd2+的研究   总被引:1,自引:0,他引:1  
为了研究两性-阴离子复配修饰膨润土对Cr(VI)和Cd2+的吸附性能差异及其机理,并为两性复配修饰黏土矿物治理重金属污染水体提供依据,采用阴离子型有机修饰剂1-癸烷磺酸钠(DAS)复配修饰两性修饰剂十二烷基二甲基甜菜碱(BS-12或BS)修饰膨润土,研究各供试土样对Cr(VI)和Cd2+的等温吸附曲线及不同温度、pH值和离子强度条件对吸附的影响.结果表明,Langmuir模型能较好地拟合各修饰土样对不同类型重金属离子(Cr(VI)和Cd2+)的吸附曲线,其对Cr(VI)和Cd2+的平衡吸附量均呈现BS+150DAS(150%CEC DAS复配修饰膨润土)BS+100DASBS+50DASBS+25DASBSCK(膨润土)的趋势,且对Cr(VI)、Cd2+的最大吸附量(qm)分别为85.92 mmol·kg-1(100BS+150DAS)和321.89 mmol·kg-1(100BS+150DAS).各供试土样对Cr(VI)和Cd2+的吸附均表现为自发、焓增和熵增的特征,升温可增加其对Cr(VI)和Cd2+的最大吸附量.酸性环境有利于各修饰土样对Cr(VI)的吸附,而不利于对Cd2+的吸附.离子强度增加均降低了各修饰土样对Cr(VI)和Cd2+的吸附.  相似文献   

12.
利用共沉淀和水热法于生物炭(BC250、BC350、BC450、BC550和BC650)负载CuFeO2,得到的复合材料对水中四环素(TC)具有较好的去除效果.CuFeO2与BC450质量比为2 :1的CuFeO2改性生物炭(CuFeO2/BC450=2 :1)对TC的吸附性能最强.TC于CuFeO2/BC450=2 :1的吸附符合颗粒内扩散模型,表明吸附是界面和孔隙扩散控制的过程.在中性pH、298 K下,CuFeO2/BC450=2 :1对TC的Langmuir最大吸附量为82.8 mg ·g-1,远大于BC450的13.7 mg ·g-1和CuFeO2的14.8 mg ·g-1.热力学结果表明,CuFeO2/BC450=2 :1对TC的吸附是自发和吸热过程.随pH增加,CuFeO2/BC450=2 :1对TC的吸附去除呈先增加后降低的趋势,中性条件时效果最佳.CuFeO2/BC450=2 :1对TC的强吸附得益于CuFeO2负载对材料孔隙结构的改善、比表面积的增大和表面官能团、电荷属性的改变.研究结果为净化抗生素污染提供了一种高效的磁性吸附剂.  相似文献   

13.
为研究桉树遗态Fe/C复合材料(PBGC-Fe/C)对水中Cr(Ⅵ)的净化能力及其动态吸附过程,以PBGC-Fe/C吸附剂为固定床,选择溶液初始pH、进水流速、溶液初始浓度、吸附剂投加量和环境温度为影响因素开展动态吸附试验分析.结果表明:在溶液初始pH为2,进水流速为5.14 mL/min,吸附剂投加量为2 g和环境温度为35℃的条件下,PBGC-Fe/C对水中Cr(Ⅵ)的最佳平衡吸附容量达到10.72 mg/g;提高溶液初始pH、进水流速和溶液初始质量浓度或降低吸附剂投加量均可缩短反应穿透时间和衰竭时间;Thomas和Yoon-Nelson模型均能较好地描述PBGC-Fe/C对水中Cr(Ⅵ)的动态吸附过程,说明该吸附过程中内部扩散和外部扩散均为非限速步骤,吸附速率常数(kTh)随着进水流速的增大从1.3×10-3 mL/(min·mg)升至2.6×10-3 mL/(min·mg),随着溶液初始质量浓度的增大从2.7×10-3 mL/(min·mg)降至1.4×10-3 mL/(min·mg).研究显示,PBGC-Fe/C对水中Cr(Ⅵ)具有较好的动态吸附能力,具有较好的市场应用前景.   相似文献   

14.
为获得价格低廉、吸附性能优良的石墨烯基吸附剂,以氧化石墨烯(GO)、羧甲基纤维素(CMC)为基材,以聚乙烯亚胺(PEI)为改性试剂,通过化学修饰的方法制备了氨基修饰氧化石墨烯-羧甲基纤维素复合吸附剂(GO-PEI-CMC).采用扫描电镜(SEM)、傅里叶红外光谱(FT-IR)及X射线光电子能谱(XPS)等表征手段证实了CMC、氧化石墨烯与PEI已成功复合.静态吸附实验表明GO-PEI-CMC对Cr (VI)表现出良好的吸附性能,由Langmuir等温吸附模型所得最大吸附量值为243.92 mg·g-1.吸附动力学、吸附等温线研究表明GO-PEI-CMC对Cr (VI)的吸附为单分子层、化学吸附过程.GO-PEI-CMC对Cr (VI)吸附性能优良,且具有绿色环保、可生物降解的优点,是一种极具潜力的Cr (VI)吸附剂.  相似文献   

15.
采用可溶性磷酸盐、钙离子、二价铁离子、三价铁离子和天然沸石等材料制备了羟基磷灰石-四氧化三铁-沸石(HAPFe3O4-沸石)复合材料,对该复合材料进行了表征,并考察了该复合材料对水中刚果红的吸附作用.结果表明,HAP-Fe3O4-沸石复合材料对水中的刚果红具备良好的吸附能力.当pH由3增加到4或由7增加到11时,HAP-Fe3O4-沸石复合材料对水中刚果红的去除能力下降;当pH由4增加到7时,对刚果红的吸附能力基本保持不变.HAP-Fe3O4-沸石复合材料对水中刚果红的去除率随吸附剂投加量的增加而增加,而对水中刚果红的单位吸附量则随吸附剂投加量的增加而降低.HAP-Fe3O4-沸石复合材料对水中刚果红的吸附动力学过程可以较好地采用准二级动力学模型加以描述,对刚果红的吸附平衡数据可以采用Langmuir和Freundlich等温吸附模型加以描述.根据Langmuir模型确定的最大吸附容量为117 mg·g-1.(pH 7和303 K).HAP-Fe3O4-沸石复合材料对水中刚果红的吸附是自发吸热并伴随熵增加的过程.当pH为7时,HAP-Fe3O4-沸石复合材料吸附水中刚果红的主要机制包括表面配位作用、氢键作用以及路易斯酸碱反应.采用热再生的方法可以使吸附刚果红后的HAP-Fe3O4-沸石复合材料得到再生,热再生后的复合材料可以循环使用并且对水中刚果红的吸附性能良好.X射线衍射分析结果表明HAP-Fe3O4-沸石复合材料含Fe3O4,磁滞回线结果表明HAP-Fe3O4-沸石复合材料具备较高的磁饱和强度,复合材料吸附刚果红后可以很容易地通过外加磁场的作用快速地与水溶液分离.结果表明,HAP-Fe3O4-沸石复合材料适合作为一种吸附剂去除废水中的刚果红.  相似文献   

16.
氧化镁基生物质炭高效去除水体中磷的特性   总被引:1,自引:1,他引:0  
王彬斌  林景东  万顺利  何锋 《环境科学》2017,38(7):2859-2867
利用花生壳为前驱体,在高温限氧条件下,将氧化镁(MgO)负载于生物质炭(BC)表面制备出氧化镁基生物质炭(MgOBC)复合材料.系统研究了MgO-BC对水体中P的吸附特性,并探讨了溶液pH值、接触时间、竞争离子等因素对P的吸附效果的影响.结果表明,P的最佳吸附初始pH为7~9,过酸过碱的环境均不利于P的吸附;P的吸附过程可在540 min内达到平衡,且动力学曲线较好地符合伪一级和伪二级动力学模型,拟合系数可达97.3%和99.0%;当Cl~-、HCO_3~-、NO_3~-等共存离子的量浓度达到P的10倍时,MgO-BC对P仍具有较强的吸附能力;P的吸附过程较好地符合Langmuir等温模型,拟合系数达99%,理论最大吸附容量为138.07 mg·g~(-1),远高于其它未经改性或改性的生物质炭和几种典型P吸附剂的吸附容量.此外,吸附P后的复合材料可作为肥料施入土壤,可有效实现P的再利用.综上所述,该MgO-BC复合材料在净化实际P污染水体中有着广阔的应用前景.  相似文献   

17.
Pollutants that exist in anionic species are issues of concern in water treatment. Compared to cationic pollutants, the removal of anionic pollutants by adsorption is more difficult because most adsorbents carry predominantly negative charges in neutral and alkaline environments. In this study, a cross-linked chitosan derivative with quaternary ammonium and magnetic properties(QM-chitosan) was prepared and employed to remove chromium(VI) and phosphorus(V)(Cr(VI) and P(V)) from aqueous environments. The QM-chitosan was characterized by Fourier transform infrared spectrometry(FT-IR),thermogravimetric analysis(TGA), energy dispersive X-ray(SEM-EDX) and zeta potential.Batch experiments show that QM-chitosan can effectively remove Cr(VI) and P(V), and the main mechanism was believed to be electrostatic interaction. A pseudosecond-order model was fitted to describe the kinetic processes of Cr(VI) and P(V) removal. The adsorption isotherms of both Cr(VI) and P(V) on the QM-chitosan were well fitted by the Langmuir isotherm equation. The saturated adsorption capacity of P(V)(2.783 mmol/g) was found to be higher than that of Cr(VI)(2.323 mmol/g), resulting from the size of the H2PO-4ions being smaller than that of the HCr O-4ions. However, the theoretical calculation and experimental results showed that QM-chitosan had a stronger affinity for Cr(VI) than P(V). The adsorption–desorption of the QM-chitosan was evaluated, and high regeneration rates were demonstrated.  相似文献   

18.
改性污泥活性炭吸附废水中Cr(Ⅵ)的性能研究   总被引:1,自引:0,他引:1  
以污水处理厂剩余污泥为原料,1.0 mol/L KOH做活化改性剂,制备污泥活性炭,探讨不同条件下其对废水中Cr(VI)的吸附性能.结果表明,污泥活性炭对Cr(VI)吸附的最佳条件为:pH为2,温度为25℃,污泥活性炭投加量为5 g/L,吸附时间为40 min.此条件下,废水中Cr(VI)的去除率可达99%以上.动力学分析表明,污泥活性炭对Cr(VI)废水的吸附符合准二级动力学方程与Langmuir等温式.  相似文献   

19.
任新  周鑫  赵雪松 《环境科学学报》2017,37(7):2632-2641
通过改进的Hummers法制备氧化石墨烯(GO),再将氧化石墨烯和钛酸四丁酯作为初始反应物,利用溶剂热法制备Ti O_2/RGO纳米复合材料.利用SEM、TEM、XPS、XRD等分析手段对Ti O_2/RGO纳米复合材料进行表征,考察其在可见光照射条件下光催化还原水中Cr(Ⅵ)的效能,并对光催化还原机制进行了初步探讨.结果表明,Ti O_2/RGO复合材料的光催化还原能力与单一Ti O_2(P25)相比有了显著提高;复合材料中RGO含量、溶液p H值、催化剂投加量、Cr(Ⅵ)初始浓度均对光催化还原过程有所影响,当复合材料中RGO含量比例为2%、溶液p H值为2,催化剂投加量为40 mg时,光催化还原Cr(Ⅵ)的效率可达98%.光催化还原Cr(Ⅵ)的过程是吸附过程和光催化还原过程的共同作用结果,RGO不但提高了复合材料的吸附能力,还作为复合材料的电子导体,抑制了光生电子-空穴对的复合,增强了复合材料的光催化性能.经过5次循环使用后,复合材料的光催化还原效率仍然保持在90%左右.  相似文献   

20.
针对煤矿排出的大量含重金属离子的酸性矿山废水污染问题,采用自制膨润土-白云石复合颗粒吸附剂对含Fe2+和Mn2+的酸性矿山废水进行吸附试验研究。结果表明:膨润土-白云石复合颗粒吸附剂释放总碱度达118.39mg/g(以CaCO3计),可中和酸性矿山废水;随着废水中Fe2+和Mn2+浓度增加,膨润土复合颗粒吸附剂的吸附量在不断增加,且大于原膨润土颗粒吸附剂;建立了膨润土复合颗粒吸附剂对Fe2+和Mn2+的吸附等温式和吸附动力学方程式:膨润土复合颗粒吸附剂对Fe2+的吸附符合BET吸附,对Mn2+的吸附符合Freundlich吸附,对Fe2+、Mn2+的吸附动力学均符合准二级动力学。膨润土-白云石复合颗粒吸附剂既能释放碱度、又对Fe2+和Mn2+具有优良的吸附性能,可作为处理含重金属离子酸性矿山废水的绿色环保矿物材料应用于实际。  相似文献   

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