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1.
Photoactive aluminum doped ZnO(AlZnO) was synthesized by sol-gel method.After that,AlZnO photocatalyst was deposited on five carbon-based materials(CBMs) using ultrasonic route followed by solid-state mixing using ball mill.The CBMs used were poly aniline(PANI),carbon nitride(CN),carbon nanotubes(CNT),graphene(G),and carbon nanofibers(CNF).The crystal phases,elemental compositions,morphological,and optical properties of the AlZnO@CBMs composites were investigated.Experimental results revealed that two of AlZnO@CBMs composites exhibited superior bleaching efficiency(100% removal) and photocatalytic stability(three cycles) for 50 μmol/L Methylene Blue(MB) contaminated water after 60 min irradiation in visible light at pH 6.5,0.7% H_2O_2,and 5 g/L inorganic salts.Under optimum conditions,AlZnO@CBMs nanocomposites were employed for the treatment of mixed dyestuffs composed of MB,Methyl Orange(MO),Astrazone Blue FRR(BB 69),and Rhodamine B(RhB) dyes under dark,ultraviolet,visible,and direct sunlight.For mixed dyestuffs,the AlZnO@G achieved the highest dye sorption capacity(60.91 μmol dye stuffs/g) with kinetic rate 8.22 × 10~(-3) min~(-1) in 90 min via multi-layer physisorption(Freundlich isotherm) on graphene sheet.In additions,AlZnO@CN offered the highest photo-kinetic rate(K_(photo)) of~54.1 × 10~(-3) min~(-1)(93.8% after 60 min) under direct sunlight.Furthermore,the selective radical trapping experiment confirmed that the holes and oxidative superoxide radicals are crucial on dyes photodegradation pathway.Owing to their superior performance,AlZnO@G and AlZnO@CN nanocomposites can offer an effective in-situ solar-assisted adsorption/photocatalytic remediation of textile wastewater effluents.  相似文献   
2.
为了探究重金属对肺表面活性物质(PS)膜的影响,利用Langmuir–Wilhelmy膜天平,研究了不同种类和浓度的重金属离子与PS单层膜的相互作用.发现Cr3+、Cu2+、Hg2+、Pb2+、Cd2+、Ni2+6种重金属离子均使PS单层的π-A等温线G-LE相变阶段外扩,而Fe3+可诱导单层缩合.随后,选取Cd2+,Cu2+,Hg2+,Fe3+4种离子进一步探究了重金属浓度对PS单层膜表面活性的影响规律,进行了可压缩模量分析,并结合红外光谱(FTIR)和原子力显微镜(AFM)探究其作用机理,发现Cu2+,Fe3+和Hg2+均会以浓度依赖的方式与PS单层的极性头部发生络合作用,形成复合物,改变膜的稳定性;而Cd2+的影响明显弱于其他3种金属离子,但也能使得PS单层有序性增强.  相似文献   
3.
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   
4.
金鱼藻对Cu2+的生物吸附特征   总被引:15,自引:0,他引:15       下载免费PDF全文
研究了沉水植物金鱼藻对Cu2 的吸附动力学及热力学特征.结果表明,金鱼藻对Cu2 的吸附在20min内达到平衡,吸附动力学的实验结果符合伪二级动力学方程,其相关系数达到0.9937,表明该吸附为多种反应同时作用的复杂过程.用Langmuir和Freundlich2种吸附等温式拟合吸附热力学的实验结果表明,以Langmuir模型拟合效果更好,相关系数为0.9977,其最大吸附量为7.79mg/g.在解吸实验中,各浓度组的解吸率均在1%以下,表明金鱼藻对Cu2 的吸持作用较强.  相似文献   
5.
This paper discusses the adsorption capacity of silica gel sludge for phenol removal from aqueous solution. Kinetic experiments showed that phenol adsorption was completed after 2 h. Adsorption isotherms were measured for phenol from aqueous solution onto silica gel sludge under various pHs and temperatures. Results showed that the adsorption capacities for phenol was increased as pH decreased from 6.5 to 2. Temperature also was found to affect the adsorption isotherm. As temperature increases from 30 to 50°C, the adsorption capacity increases. The adsorption equilibrium of phenol on silica gel sludge was described by the linear Freundlich and Langmuir models. Furthermore, results showed that the isotherm parameters fit both linearized Langmuir and Freundlich adsorption isotherms. The Freundlich and Langmuir parameters at optimum pH was found as K f=2.89, 1/n=0.23 and K d=22.0, q m=7.98, respectively. Whereas, for those at optimum temperature it was observed as K f=2.87, 1/n=0.16 and K d=20.93, q m=7.91, respectively.  相似文献   
6.
Perfluorooctane sulfonate(PFOS) has attracted increasing concern in recent years due to its world-wide distribution, persistence, bioaccumulation and potential toxicity. The influence of sorbent properties on the adsorptive elimination of PFOS from wastewater by activated carbons, polymer adsorbents and anion exchange resins was investigated with regard to their isotherms and kinetics. The batch and column tests were combined with physicochemical characterization methods, e.g., N_2 physisorption, mercury porosimetry, infrared spectroscopy, differential scanning calorimetry, titrations, as well as modeling. Sorption kinetics was successfully modelled applying the linear driving force(LDF) approach for surface diffusion after introducing a load dependency of the mass transfer coefficient βs.The big difference in the initial mass transfer coefficient βs,0, when non-functionalized adsorbents and ion-exchange resins are compared, suggests that the presence of functional groups impedes the intraparticle mass transport. The more functional groups a resin possesses and the longer the alkyl moieties are the bigger is the decrease in sorption rate.But the selectivity for PFOS sorption is increasing when the character of the functional groups becomes more hydrophobic. Accordingly, ion exchange and hydrophobic interaction were found to be involved in the sorption processes on resins, while PFOS is only physisorptively bound to activated carbons and polymer adsorbents. In agreement with the different adsorption mechanisms, resins possess higher total sorption capacities than adsorbents. Hence, the latter ones are rendered more effective in PFOS elimination at concentrations in the low μg/L range, due to a less pronounced convex curvature of the sorption isotherm in this concentration range.  相似文献   
7.
污泥生物炭制备吸附陶粒   总被引:3,自引:0,他引:3  
以城市污泥热解产生的生物炭(BC)与高岭土(KL)为原料制备吸附陶粒(SKC),研究其对环丙沙星(CIP)的吸脱附性能,开展吸附动力学和等温吸附特性研究,结合形貌、孔结构、物相组成、表面电位探讨其吸附机制,利用TCLP法研究重金属浸出特征.结果表明BC与KL以6∶4的质量比混合造粒,经1 050℃烧结5 min得到的SKC对CIP有明显的吸附效果,去除率达65.34%;SKC对CIP的吸附符合二级动力学模型,在不同质量浓度下的吸附特性适用于Freundlich等温吸附模型,吸附过程同时存在物理和化学吸附.SKC具有良好的孔隙结构,物相组成以硅铝氧化物、铁氧化物和金属磷酸盐为主,既能降低重金属的浸出毒性又具有良好的CIP吸附去除效果,有望为处理废水中高浓度CIP提供一种低成本可回收的吸附材料,也为BC的规模化安全利用提供了新思路.  相似文献   
8.
基于废陶瓷的多孔陶瓷研制及其对Ni2+的吸附性能   总被引:2,自引:2,他引:0  
通过SEM、XRD、FT-IR表征及多孔陶瓷对废水中镍的去除能力,确定多孔陶瓷的制备条件:原料中田菁粉掺杂质量分数为4%,焙烧温度为800℃.SEM和孔结构表征说明,焙烧使多孔陶瓷形貌、结构发生变化;随着焙烧温度的升高,多孔陶瓷的比表面积和孔容呈现降低的趋势,而孔径呈现增大的趋势;EDS分析能表明,原废瓷粉和多孔陶瓷的主要元素组成均为Si、Al、O.SEM、XRD和FT-IR分析表明,多孔陶瓷吸附前后结构稳定.吸附Ni2+的系列实验表明,多孔陶瓷用量为10 g·L-1,吸附时间为60 min,进水pH值为6.32,进水Ni2+浓度在100 mg.L-1以内.在此条件下废水的Ni2+去除率可达89.7%,多孔陶瓷对废水中镍有较好的去除效果.以制备的多孔陶瓷处理含镍废水,考察多孔陶瓷对废水中Ni2+的吸附动力学和吸附等温线,结果表明,多孔陶瓷对Ni2+的吸附过程符合准二阶动力学模型(R2=0.999 9),Qe为9.09 mg·g-1;吸附过程可用Freundlich方程和Langmuir方程来描述,温度由20℃升高至40℃,最大吸附量Qm由14.49 mg·g-1上升至15.38 mg·g-1.  相似文献   
9.
The development of low-cost and efficient new mineral adsorbents has been a hot topic in recent years. In this study, Friedel’s salt (FS:3CaO·A12O3 ·CaCl2 ·10H2O), a hexagonal layered inorganic absorbent, was synthesized to remove Cd2+ from water. The adsorption process was simulated by Langmuir and Freundlich models. The adsorption mechanism was further analyzed with TEM, XRD, FT-IR analysis and monitoring of metal cations released and solution pH variation. The results indicated the adsorbent FS had an outstanding ability for Cd(Ⅱ) adsorption. The maximum adsorption capacity of the FS for Cd(Ⅱ) removal can reach up to 671.14 mg/g. The nearly equal numbers of Cd2+ adsorbed and Ca2+ released demonstrated that ion-exchange (both surface and inner) of the FS for Cd(Ⅱ) played an important role during the adsorption process. Furthermore, the surface of the FS after adsorption was microscopically disintegrated while the inner lamellar structure was almost unchanged. The behavior of Cd(Ⅱ) adsorption by FS was significantly affected by surface reactions. The mechanisms of Cd2+ adsorption by the FS mainly included surface complexation and surface precipitation. In the present study, the adsorption process was fitted better by the Langmuir isotherm model (R2 = 0.9999) than the Freundlich isotherm model (R2 = 0.8122). Finally, due to the high capacity for ion-exchange on the FS surface, FS is a promising layered inorganic adsorbent for the removal of Cd(Ⅱ) from water.  相似文献   
10.
铅在棉秆基活性炭上的吸附动力学与热力学   总被引:14,自引:6,他引:8  
李坤权  郑正  蒋剑春  张继彪 《环境科学》2010,31(5):1402-1408
以棉秆与棉秆纤维为原料,利用磷酸活化法制备了低成本的高比表面微孔棉秆基活性炭,通过静态实验研究了活性炭对水溶液中铅的吸附特性,测定了溶液pH值、吸附时间、溶液温度对吸附的影响,探讨了吸附动力学、热力学及吸附机制.根据低温液氮(N2/77K)吸附测定数据,以BET方程、BJH法及H-K法对活性炭孔结构进行了表征,以Boehm滴定、FTIR、零电荷点pHPZC测定及元素分析定量表征活性炭表面含氧官能团.结果表明,以棉秆和棉秆纤维为原料制备的活性炭的比表面积分别为1570和1731m2·g-1,含氧酸官能团含量分别为1.43和0.83mmol·g-1,均高于商业活性炭ST1300.静态吸附实验表明,棉秆基活性炭对铅有较大的吸附容量和吸附效率,最大吸附量超过120mg·g-1,溶液pH对吸附有较大的影响,吸附量随时间增大而增大,在5min内可达饱和吸附量的80%;吸附动力学数据符合假二级方程,Freundlich方程能更好地描述等温吸附行为;热力学研究表明,吸附吉布斯自由能(ΔG0)0,而焓变(ΔH0)0,说明吸附为吸热的自发反应过程,升温有利于吸附,离子交换可能在吸附过程中起了重要作用.  相似文献   
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