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71.
吸附技术处理污水是目前环境污染治理的常用技术之一 ,吸附剂的选择是该技术的关键。粘土类吸附剂具有比表面大 ,吸附容量大等特点 ,对污染物具有良好的去除效果 ;且来源广 ,价格低廉 ,不造成二次污染 ,在污水处理方面具有广阔的应用前景。  相似文献   
72.
用静态法和动态法研究了球形纤维素吸附剂对水中 Cr3+的吸附和解吸 ,包括静态等温吸附以及各种因素对吸附的影响等 ,并探讨了吸附机理。 Cr3+的吸附容量为 2 8mg/ g,采用浓度为 1.2 mol/ L 的 HCl溶液作解吸液回收 Cr3+的综合效果较好。静态法和动态法的吸附率均达 90 %左右 ,解吸率均达 85 %以上 ,且静态法的吸附率和解吸率分别略高于动态法的吸附率和解吸率 ,但动态法耗时短 ,更符合工业化要求。  相似文献   
73.
DGB处理二级出水用于地下回灌的风险评价   总被引:2,自引:0,他引:2  
以北京高碑店二级出水为对象,进行了二级出水地下回灌的DGB深度处理工艺的风险评价.GC/MS探测到的优先污染物四氯化碳引起的致癌风险小,可以忽略.二级出水经深度处理,除Cd,Cr略高于回灌标准,其余重金属含量低于回灌要求;通过加氯消毒,可满足回灌水卫生要求.DGB和土壤含水层处理工艺可去除部分致突物,残余的主要是移码型氯化致突物,它们有较强的致突性.   相似文献   
74.
Although several studies on the dispersion of heavy toxic gas released from ruptured tanks on vehicles during transportation have considered complex terrain such as urban buildings, the influence of trees on the flow field in urban areas during gas dispersion tends to be ignored. In this study, a Computational Fluid Dynamics (CFD) model was proposed to investigate the characteristics of gas release and dispersion from loaded vehicle in the urban environment. In this model, the tree crown was treated as a porous medium, and the influence of drag due to the crown was incorporated into the model by a momentum source term through a user-defined function. In this study, the dynamic characteristics of chlorine (Cl2) dispersion under the conditions of building distribution, tree species and porosities were comprehensively analysed, to cover the influence of urban complexity, leaf density, and tree planting configuration. The results show that compared with flat terrain, the presence of urban buildings will prolong the dense gas retention time and increase the dangerous distance. It is found that the horizontal dispersion distance can increase by 63% and the isosurface of 25 ppm hazardous gas can increase by 130% with the introduction of buildings. Compared with the terrain with only buildings, the introduction of arbors or shrubs can result in a 147% or 359% increase in the maximum concentration. Also, trees will prolong the dispersion duration. It is also found that the higher the porosity, the less the wind blocking effect, and the weaker the ability of capturing gas. The wind field affected by arbores and shrubs are different in height, and arbores capture more Cl2. Planting short shrubs around buildings can effectively reduce the spread of harmful gases.  相似文献   
75.
In this study, a commercial cube-shaped open-celled cellulose sponge adsorbent was modified by in-situ co-precipitation of superparamagnetic iron oxide nanoparticles (SPION) and used to remove As(V) from aqueous solutions. Fe K-edge X-ray absorption spectroscopy (XAS) and TEM identified maghemite as the main iron phase of the SPION nanoparticles with an average size 13 nm. Batch adsorption experiments at 800 mg/L showed a 63% increase of adsorption capacity when loading 2.6 wt.% mass fraction of SPION in the cube-sponge. Experimental determination of the adsorption thermodynamic parameters indicated that the As(V) adsorption on the composite material is a spontaneous and exothermic process. As K-edge XAS results confirmed that the adsorption enhancement on the composite can be attributed to the nanoparticles loaded. In addition, adsorbed As(V) did not get reduced to more toxic As(III) and formed a binuclear corner-sharing complex with SPION. The advantageous cube-shape of the sponge-loaded SPION composite together with its high affinity and good adsorption capacity for As(V), good regeneration capability and the enhanced-diffusion attributed to its open-celled structure make this adsorbent a good candidate for industrial applications.  相似文献   
76.
Nanoscale zero-valent iron(n ZVI) particles supported on a porous, semi-interpenetrating(semi-IPN), temperature-sensitive composite hydrogel(PNIPAm-PHEMA). n ZVI@PNIPAmPHEMA, was successfully synthesized and characterized by FT-IR, SEM, EDS, XRD and the weighing method. The loading of nZVI was 0.1548 ± 0.0015 g/g and the particle size was30–100 nm. NZVI was uniformly dispersed on the pore walls inside the PNIPAm-PHEMA.Because of the well-dispersed n ZVI, the highly porous structure, and the synergistic effect of PNIPAm-PHEMA, nZVI@PNIPAm-PHEMA showed excellent reductive activity and wide p H applicability. 95% of 4-NP in 100 m L of 400 mg/L 4-NP solution with initial p H 3.0–9.0 could be completely reduced into 4-AP by about 0.0548 g of fresh supported n ZVI at 18–25 °C under stirring(110 r/min) within 45 min reaction time. A greater than 99% 4-NP degradation ratio was obtained when the initial p H was 5.0–9.0. The reduction of 4-NP by nZVI@PNIPAm-PHEMA was in agreement with the pseudo-first-order kinetics model with Kobsvalues of 0.0885–0.101 min-1.NZVI@PNIPAm-PHEMA was able to be recycled, and about 85% degradation ratio of 4-NP was obtained after its sixth reuse cycle. According to the temperature sensitivity of PNIPAmPHEMA, n ZVI@PNIPAm-PHEMA exhibited very good storage stability, and about 88.9%degradation ratio of 4-NP was obtained after its storage for 30 days. The hybrid reducer was highly efficient for the reduction of 2-NP, 3-NP, 2-chloro-4-nitrophenol and 2-chloro-4-nitrophenol. Our results suggest that PNIPAm-PHEMA could be a good potential carrier, with n ZVI@PNIPAm-PHEMA having potential value in the application of reductive degradation of nitrophenol pollutants.  相似文献   
77.
针对污水中磷的去除问题,采用优化后的恒定pH值共沉淀法制备了Mg/Al-layered double hydroxides(Mg/Al-LDHs),经高温焙烧得到高效磷吸附剂Mg/Al-layered double oxide(Mg/Al-LDO);在对其吸附特性研究的基础上,并结合Zeta电位、XRD、FTIR分析吸附前后材料等电点、晶体结构及层间阴离子的变化,探讨Mg/Al-LDO吸附除磷机制.结果表明,采用优化后的共沉淀法,在Mg/Al比为2∶1,焙烧温度450℃,焙烧时间2 h条件下制备出的Mg/Al-LDO对磷酸根吸附性最好,最大吸附容量可达到176.94 mg·g-1,与理论吸附容量191.57 mg·g-1基本一致,远高出Mg/Al-LDHs及其它磷吸附剂.实验数据对准二级反应动力学模型的拟合结果较好,吸附过程符合Langmuir吸附等温模型.结合Zeta电位、XRD、FTIR的结果推测,Mg/AlLDO吸附除磷主要是通过静电引力、阴离子插层、离子交换、表面配位这4种作用协同完成.  相似文献   
78.
A series of mesoporous silicate adsorbents with superior adsorption performance for hazardous chlortetracycline(CTC) were sucessfully prepared via a facile one-pot hydrothermal reaction using low-cost illite/smectite(IS) clay,sodium silicate and magnesium sulfate as the starting materials.In this process,IS clay was "teared up" and then "rebuilt" as new porous silicate adsorbent with high specific surface area of 363.52 m~2/g(about 8.7 folds higher than that of IS clay) and very negative Zeta potential(- 34.5 mV).The inert Si- O- Si(Mg,Al) bonds in crystal framework of IS were broken to form Si(Al)- O~- groups with good adsorption activity,which greatly increased the adsorption sites served for holding much CTC molecules.Systematic evaluation on adsorption properties reveals the optimal silicate adsorbent can adsorb 408.81 mg/g of CTC(only 159.7 mg/g for raw IS clay) and remove 99.3%(only 46.5%for raw IS clay) of CTC from 100 mg/L initial solution(pH 3.51;adsorption temperature 30℃;adsorbent dosage,3 g/L).The adsorption behaviors of CTC onto the adsorbent follows the Langmuir isotherm model,Temkin equation and pseudo second-order kinetic model.The mesopore adsorption,electrostatic attraction and chemical association mainly contribute to the enhanced adsorption properties.As a whole,the high-efficient silicate adsorbent could be candidates to remove CTC from the wastewater with high amounts of CTC.  相似文献   
79.
新型介孔吸附剂的制备及吸附性能   总被引:5,自引:1,他引:4  
采用挥发诱导自组装(EISA)技术,以乙醇为溶剂,十六烷基三甲基溴化铵(CTAB)为结构导向剂,合成了孔径为5.4nm的巯基功能化介孔材料,并用FTIR、EA、N2吸附-脱附和XRD分析技术对介孔材料进行了表征.同时,以Cr3+、Pb2+为目标污染物,考察了介孔吸附剂对污染物的吸附性能.结果表明,介孔吸附剂的吸附性能受pH值(初始与终态值)、振荡时间、温度和重金属离子初始浓度的影响显著.在T=303K、pH=5、振荡时间为1h,振荡频率为150r·min-1,污染物初始浓度低于0.4mmol·L-1时,吸附剂对Cr3+、Pb2+的去除率分别在85%和90%以上.介孔吸附剂对Cu2+、Pb2+的等温吸附行为与Langmuir模型相吻合(R2>0.992).  相似文献   
80.
复合吸附材料TLA的制备及其砷氟共除性能的研究   总被引:4,自引:0,他引:4  
以硫酸钛、硝酸镧和活性炭为原料,制备了新型的TLA复合吸附剂.比较了TLA和活性氧化铝除砷除氟吸附等温线、吸附动力学和pH对除砷除氟效果的影响;通过X射线衍射仪(XRD)和扫描电镜(SEM)对吸附剂进行了表征,并对吸附机理进行了探讨.结果表明,TLA对砷氟的吸附容量显著优于活性氧化铝.在pH为7,砷氟单独存在时,TLA对砷和氟的Langmuir吸附容量分别是30.3mg.g-1和27.8mg.g-1;当砷氟共存时,TLA对砷和氟的Langmuir吸附容量分别是25.1mg.g-1和17.0mg.g-1.TLA对砷、氟的吸附符合拟二级动力学方程.溶液pH值显著影响砷、氟去除效果.电荷分布多位络合模型(Charge-distribution multisite complexation model,CDMUSIC)能准确模拟砷、氟的吸附行为.  相似文献   
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