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1.
用静态吸附法考察粉末活性炭对水中三烯丙基异氰脲酸酯(CAIC)的吸附行为,采用单因素分析法对活性炭吸附化工废水中TAIC的工艺条件进行研究。实验结果表明,在TAIC模拟废水中,其TAIC初始浓度为800 mg/L,pH为7,在温度为298 K、转速为150 r/min的条件下,当活性炭的投加量达到4.4 g/L,吸附反应时间为50 min时,TAIC的去除效率最高为96.17%;对于实际废水,其TAIC初始浓度为1 500 mg/L,溶液pH为3,在温度为298 K、转速为150 r/min的条件下,当活性炭投加量达到10 g/L,吸附反应时间为2 h时,TAIC的去除效率最高为46.8%。这也是由于实际废水组分复杂,其他有机物存在一定的吸附竞争机制。  相似文献   

2.
用静态吸附法考察粉末活性炭对水中三烯丙基异氰脲酸酯(CAIC)的吸附行为,采用单因素分析法对活性炭吸附化工废水中TAIC的工艺条件进行研究。实验结果表明,在TAIC模拟废水中,其TAIC初始浓度为800 mg/L,pH为7,在温度为298 K、转速为150 r/min的条件下,当活性炭的投加量达到4.4 g/L,吸附反应时间为50 min时,TAIC的去除效率最高为96.17%;对于实际废水,其TAIC初始浓度为1 500 mg/L,溶液pH为3,在温度为298 K、转速为150 r/min的条件下,当活性炭投加量达到10 g/L,吸附反应时间为2 h时,TAIC的去除效率最高为46.8%。这也是由于实际废水组分复杂,其他有机物存在一定的吸附竞争机制。  相似文献   

3.
生物质活性炭的制备及其染料废水中的应用   总被引:8,自引:0,他引:8  
以城市污水厂活性污泥为原料,用3 mol/L ZnCl2溶液活化,通入水蒸气作活化气制备活性炭吸附剂.实验结果表明,温度为600℃条件下,活化时间为1 h,制得的活性炭其碘吸附值为374.10 mg/g,比表面积为381.62 m2/g,孔容积为0.25 cm3/g,微孔容积为0.11cm3/g.并进一步将生物质活性炭应用于染料废水的处理,考察了吸附时间、活性炭投加量和pH对色度及TOC的脱除效果的影响.室温下,酸性大红GR染料废水初始浓度为300 mg/L,污泥活性炭的最佳投加量为2%(质量分数),吸附15min,废水色度脱除率可达99.6%,TOC去除率可达99.7%,利用等温吸附实验作吸附等温线,吸附等温线可以用Freundlich或Langmuir方程描述.  相似文献   

4.
Fenton氧化-活性炭吸附协同深度处理垃圾渗滤液的研究   总被引:2,自引:0,他引:2  
以上海某垃圾填埋场垃圾渗滤液为研究对象,采用Fenton氧化-活性炭吸附协同处理工艺对其处理效果进行研究。探讨了投加方式以及H2O2浓度、Fe2+浓度、活性炭投加量、温度、pH等因素对COD去除率的影响。结果表明:采用先投加活性炭吸附30 min后投加Fenton试剂反应150 min的方式能够获得最好的COD去除效果。正交实验表明各因素对COD去除的主次关系为:活性炭投加量Fe2+浓度反应温度H2O2浓度pH值;其最优化条件为:活性炭投加量为16g/L,Fe2+浓度为29 mmol/L,反应温度为60℃,H2O2浓度为78 mmol/L,pH值为3。  相似文献   

5.
KOH为活化剂,正交实验方法优化了煤质炭的制备条件。对2种酚类有机物苯酚、氯苯酚进行了静态吸附,观察了温度、时间、初始浓度及投加量对吸附性能的影响,优化了吸附条件。实验数据与Langmuir、Freundlich和Temkin吸附等温线进行了拟合,并对准一级、准二级动力学模型和内扩散模型拟合。结果表明,优化得煤质炭制备条件为:碱碳质量比3∶1,浸泡时间12 h,活化时间80 min,活化温度800℃。在温度为25℃,投加量为0.05 g时,苯酚的平衡时间为60 min,初始浓度为200 mg/L时的吸附量为58.89 mg/g;氯苯酚的吸附平衡时间为90 min,初始浓度为300 mg/L时的吸附量为84.32 mg/g。煤质炭对苯酚的吸附过程与Langmuir吸附等温线,氯苯酚的吸附过程与Temkin吸附等温线拟合得较好。二级动力学模型能够较好地描述这2个吸附过程,且颗粒内扩散不是唯一的速率控制步骤。  相似文献   

6.
污泥活性炭对Cr(Ⅵ)的吸附研究   总被引:1,自引:0,他引:1  
研究了污泥活性炭对含Cr(Ⅵ)废水的吸附性能.利用西安某污水处理厂未消化脱水污泥,采用ZnCl2化学活化热解炭化法制备污泥活性炭,研究其处理含Cr(Ⅵ)废水的效果,考察其吸附Cr(Ⅵ)的动力学行为.结果表明,最佳吸附条件为溶液pH在1左右、污泥活性炭投加量5 g/L、吸附时间10 min、Cr(Ⅵ)初始质量浓度10 m...  相似文献   

7.
以氯化镁和造纸草浆黑液为原料,采用物理活化法制得"氧化镁/活性炭"新型吸附剂,其比表面积(BET)为388.96 m2/g、总孔容积为0.40 mL/g。测定了这种吸附剂对水中Cr(Ⅵ)的吸附性能,考察了吸附时间、pH值、吸附剂投加量、初始浓度等因素对Cr(VI)的吸附量和脱除率的影响,研究所得吸附水溶液中Cr(Ⅵ)的最佳条件为:吸附时间为120min,吸附剂投加量为2 g/L,pH值为2。"氧化镁/活性炭"新型吸附剂对Cr(Ⅵ)的吸附过程符合Freundlich等温式。  相似文献   

8.
以氯化镁和造纸草浆黑液为原料,采用物理活化法制得“氧化镁/活性炭”新型吸附剂,其比表面积(BET)为388.96 m2/g、总孔容积为0.40 mL/g。测定了这种吸附剂对水中Cr(VI)的吸附性能,考察了吸附时间、pH值、吸附剂投加量、初始浓度等因素对Cr(VI)的吸附量和脱除率的影响,研究所得吸附水溶液中Cr(VI)的最佳条件为:吸附时间为120 min,吸附剂投加量为2 g/L,pH值为2。“氧化镁/活性炭”新型吸附剂对Cr(VI)的吸附过程符合Freundlich等温式。  相似文献   

9.
活性炭吸附-Fenton氧化处理高盐有机废水   总被引:2,自引:0,他引:2  
采用活性炭吸附-Fenton氧化耦合工艺处理高盐度难降解有机废水的性能。考察了不同工艺参数对活性炭吸附及Fenton氧化对高盐有机废水处理效率的影响。结果表明,采用活性炭单独处理时,在pH=6.0,活性炭投加量为9.0g/L,吸附时间为60 min条件下,COD去除率最大,达到47.5%。活性炭吸附处理后,废水再采用Fenton氧化处理,在FeSO4.7H2O投加量为3.0 g/L,H2O2投加量为4.7 g/L,反应时间为30 min条件下,COD去除率最大,达到84.4%。整体而言,经过活性炭吸附和Fenton氧化处理后,废水COD由初始浓度13 650 mg/L降至560 mg/L,去除率达到95.9%。活性炭吸附-Fenton氧化耦合工艺适合高盐度难降解有机废水的处理。  相似文献   

10.
核桃壳炭化吸附废水中Cr(Ⅵ)的性能研究   总被引:4,自引:0,他引:4  
采用氯化锌活化法制备生物质废物硬壳活性炭,工艺条件为:核桃壳与氯化锌溶液质量比为1∶1.5、氯化锌溶液质量分数50%、炭化温度300℃、炭化时间90 min、活化温度600℃、活化时间60 min。对产品比表面积、孔径和表征进行了分析,并探讨了该核桃壳活性炭吸附废水中六价铬的pH值、废水初始浓度、吸附时间、振动转速等影响因素。结果表明:制得的活性炭碘吸附值为1 038.33 mg/g,比表面积为645.36 m2/g,平均孔半径为1.37 nm。当活性炭用量为0.1 g,废水pH=3,吸附接触时间为1 h,取100 mL浓度为50 mg/L的含Cr6+废水时,处理吸附量可达48.57 mg/g。活性炭最大饱和吸附值为80.24 mg/g。吸附符合Langmuir等温模式,吸附等温方程式为Ce/Qe=0.0083+0.0121Ce。  相似文献   

11.
The activated carbon was prepared using industrial solid waste called sago waste and physico-chemical properties of carbon were carried out to explore adsorption process. The effectiveness of carbon prepared from sago waste in adsorbing Rhodamine-B from aqueous solution has been studied as a function of agitation time, adsorbent dosage, initial dye concentration, pH and desorption. Adsorption equilibrium studies were carried out in order to optimize the experimental conditions. The adsorption of Rhodamine-B onto carbon followed second order kinetic model. Adsorption data were modeled using both Langmuir and Freundlich classical adsorption isotherms. The adsorption capacity Q0 was 16.12 mg g(-1) at initial pH 5.7 for the particle size 125-250 microm. The equilibrium time was found to be 150 min for 10, 20 mg l(-1) and 210 min for 30, 40 mg l(-1) dye concentrations, respectively. A maximum removal of 91% was obtained at natural pH 5.7 for an adsorbent dose of 100mg/50 ml of 10 mg l(-1) dye concentration and 100% removal was obtained when the pH was increased to 7 for an adsorbent dose of 275 mg/50 ml of 20 mg l(-1) dye concentration. Desorption studies were carried out in water medium by varying the pH from 2 to 10. Desorption studies were performed with dilute HCl and show that ion exchange is predominant dye adsorption mechanism. This adsorbent was found to be both effective and economically viable.  相似文献   

12.
Molecularly imprinted polymer adsorbent has been prepared to remove a group of recalcitrant and acutely hazardous (p-type) chemicals from water and wastewaters. The polymer adsorbent exhibited twofold higher adsorption capacity than the commercially used polystyrene divinylbenzene resin (XAD) and powdered activated carbon adsorbents. Higher adsorption capacity of the polymer adsorbent was explained on the basis of high specific surface area formed during molecular imprinting process. Freundlich isotherms drawn showed that the adsorption of p-type chemicals onto polymer adsorbent was kinetically faster than the other reference adsorbents. Matrix effect on adsorption of p-type chemicals was minimal, and also polymer adsorbent was amenable to regeneration by washing with water/methanol (3:1, v/v) solution. The polymer adsorbent was unaltered in its adsorption capacity up to 10 cycles of adsorption and desorption, which will be more desirable in cost reduction of treatment compared with single-time-use activated carbon.  相似文献   

13.
Because of the continuous production of large amount of waste tires, the disposal of waste tires represents a major environmental issue throughout the world. This paper reports the utilization of waste tires (hard-to-dispose waste) as a precursor in the production of activated carbons (pollution-cleaning adsorbent). In the preparation of activated carbon (AC), waste rubber tire (WRT) was thermally treated and activated. The tire-derived activated carbon was characterized by means of scanning electron microscope, energy-dispersive X-ray spectroscopy, FTIR spectrophotometer, and X-ray diffraction. In the IR spectrum, a number of bands centred at about 3409, 2350, 1710, 1650, and 1300–1000 cm?1 prove the present of hydroxyl and carboxyl groups on the surface of AC in addition to C═C double bonds. The developed AC was tested and evaluated as potential adsorbent removal of chromium (III). Experimental parameters, such as contact time, initial concentration, adsorbent dosage and pH were optimized. A rapid uptake of chromium ions was observed and the equilibrium is achieved in 1 h. It was also found that the adsorption process is pH dependent. This work adds to the global discussion of the cost-effective utilization of waste rubber tires for waste water treatment.  相似文献   

14.
Laboratory scale production of rinsed tamarind nutshell activated carbon (TNSAC) was done by the method of single stage chemical activation, with zinc chloride as an activation agent. Using this adsorbent, adsorption studies were conducted in agitated batch flow reactors with a fixed initial phosphate concentration and with varying adsorbent particle sizes and doses, The highest percentages adsorbed, for an adsorbent dose of 4 g litre(-1), were 57% and 44%, respectively, for adsorbent particle sizes of 106.1 microm and 232.4 microm. Two different models have been developed for predicting the percentage of phosphates adsorbed. Both models manifested high coefficients of correlation, indicating their robustness. The adsorption isotherms developed were observed to resemble the form of Freundlich isotherms. A generalized model has been developed for predicting the adsorptive capacity with respect to the stated test conditions. This model exhibited good coefficients of correlation.  相似文献   

15.
The removal of 2,4-D (2,4-dichlorophenoxyacetic acid) from aqueous solutions by activated spent bleaching earths (SBE) was studied at 20 degrees C. Experiments were performed as a function of time, initial concentration, dose and particle size of the adsorbent. The Langmuir and Freundlich adsorption equations were fitted by the adsorption data obtained. The values of Langmuir and Freundlich constants were determined. The adsorption kinetic was found to follow Lagergren equation. Both the boundary layer and intraparticle diffusion played important roles in the adsorption rate of 2,4-D. As the size of the adsorbent increased, the time to reach equilibrium increased but adsorption capacity decreased.  相似文献   

16.
A novel composite adsorbent (CA-T) was used for the selective removal of organochlorine pesticides (OCPs) from aqueous solution. The adsorbent was composed of the supporting activated carbon and the surrounding triolein-embedded cellulose acetate membrane. Scanning electron microscopy (SEM), N2 adsorption isotherms and fluorescence methods were used to characterize the physicochemical properties of CA-T. Triolein was perfectly embedded in the cellulose acetate membrane and deposited on the surface of activated carbon. The adsorbent was stable in water and no triolein leakage was detected during the test periods. Some organochlorine pesticides (OCPs), such as dieldrin, endrin, aldrin, and heptachlor epoxide, were used as model contaminants and removed by CA-T in laboratory batch experiments. The adsorption isotherm followed the Freundlich equation and the kinetic data fitted well to the pseudo-second-order reaction model. Results also indicated that CA-T appeared to be a promising adsorbent with good selectivity and satisfactory removal rate for lipophilic OCPs from aqueous solutions when present in trace amounts. The adsorption rate and removal efficiency for lipophilic OCPs were positively related to their octanol-water partition coefficients (log K ow). Lower residual concentrations of OCPs were achieved when compared to granular activated carbon (GAC).  相似文献   

17.
The adsorption of thiocyanate onto ZnCl2 activated carbon developed from coir pith was investigated to assess the possible use of this adsorbent. The influence of various parameters such as agitation time, thiocyanate concentration, adsorbent dose, pH and temperature has been studied. Adsorption followed second-order rate kinetics. Two theoretical adsorption isotherms, namely, Langmuir and Freundlich were used to describe the experimental results. The Langmuir adsorption capacity (Q0) was found to be 16.2 mg g−1 of the adsorbent. The per cent adsorption was maximum in the pH range 3.0–7.0. pH effect and desorption studies showed that ion exchange and chemisorption mechanism are involved in the adsorption process. Thermodynamic parameters such as ΔG0, ΔH0 and ΔS0 for the adsorption were evaluated. The negative values of ΔH0 confirm the exothermic nature of adsorption. Effects of foreign ions on the adsorption of thiocyanate have been investigated. Removal of thiocyanate from ground water was also tested.  相似文献   

18.
A novel composite adsorbent (CA-T) was used for the selective removal of organochlorine pesticides (OCPs) from aqueous solution. The adsorbent was composed of the supporting activated carbon and the surrounding triolein-embedded cellulose acetate membrane. Scanning electron microscopy (SEM), N2 adsorption isotherms and fluorescence methods were used to characterize the physicochemical properties of CA-T. Triolein was perfectly embedded in the cellulose acetate membrane and deposited on the surface of activated carbon. The adsorbent was stable in water and no triolein leakage was detected during the test periods. Some organochlorine pesticides (OCPs), such as dieldrin, endrin, aldrin, and heptachlor epoxide, were used as model contaminants and removed by CA-T in laboratory batch experiments. The adsorption isotherm followed the Freundlich equation and the kinetic data fitted well to the pseudo-second-order reaction model. Results also indicated that CA-T appeared to be a promising adsorbent with good selectivity and satisfactory removal rate for lipophilic OCPs from aqueous solutions when present in trace amounts. The adsorption rate and removal efficiency for lipophilic OCPs were positively related to their octanol-water partition coefficients (log K(ow)). Lower residual concentrations of OCPs were achieved when compared to granular activated carbon (GAC).  相似文献   

19.
Agricultural wastes such as rice straw, sugar beet, and sugarcane bagasse have become a critical environmental issue due to growing agriculture demand. This study aimed to investigate the valorization possibility of sugarcane bagasse waste for activated carbon preparation. It also aimed to fully characterize the prepared activated carbon (BET surface area) via scanning electron microscope (SEM) and in terms of surface functional groups to give a basic understanding of its structure and to study the adsorption capacity of the sugarcane bagasse-based activated carbon using aqueous methylene blue (MB). The second main objective was to evaluate the performance of sugarcane bagasse-based activated carbon for indoor volatile organic compounds removal using the formaldehyde gas (HCHO) as reference model in two potted plants chambers. The first chamber was labeled the polluted chamber (containing formaldehyde gas without activated carbon) and the second was taken as the treated chamber (containing formaldehyde gas with activated carbon). The results indicated that the sugarcane bagasse-based activated carbon has a moderate BET surface area (557 m2/g) with total mesoporous volume and microporous volume of 0.310 and 0.273 cm3/g, respectively. The prepared activated carbon had remarkable adsorption capacity for MB. Formaldehyde removal rate was then found to be more than 67% in the treated chamber with the sugarcane bagasse-based activated carbon. The plants’ responses for this application as dry weight, chlorophyll contents, and protein concentration were also investigated.

Implications: Preparation of activated carbon from sugarcane bagasse (SCBAC) is a promising approach to produce cheap and efficient adsorbent for gas pollutants removal. It may be also a solution for the agricultural wastes problems in big cities, particularly in Egypt. MB adsorption tests suggest that the SCBAC have high adsorption capacity. Formaldehyde gas removal in the plant chambers indicates that the SCBAC have potential to recover volatile gases. The results confirmed that the activated carbon produced from sugarcane bagasse waste raw materials can be used as an applicable adsorbent for treating a variety of gas pollutants from the indoor environment.  相似文献   

20.
Natural adsorbent (Cinnamomum camphora sawdust) modified by organic acid (oxalic acid, citric acid, and tartaric acid) was investigated as a potential adsorbent for the removal of hazardous malachite green (MG) dye in aqueous media in a batch process. The extent of MG adsorption onto modified sawdust increased with increasing organic acid concentrations, pH, contact time, and temperature but decreased with increasing adsorbent dosage and ionic strength. Kinetic study indicated that the pseudo-second-order kinetic model could best describe the adsorption kinetics of MG. Equilibrium data were found to fit well with the Langmuir model, and the maximum adsorption capacity of the three kinds of organic acid-modified sawdust was 280.3, 222.8, and 157.5 mg/g, respectively. Thermodynamic parameters suggested that the sorption of MG was an endothermic process. The adsorption mechanism, the application of adsorbents in practical wastewater, the prediction of single-stage batch adsorption system, and the disposal of depleted adsorbents were also discussed.  相似文献   

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