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1.
对硝基苯酚毒性大,难于生物降解,是化工、农药和染料等行业废水中常见的有机污染物。采用木质活性炭、椰壳活性炭和煤质活性炭对对硝基苯酚吸附性能进行研究,对比不同活性炭对对硝基苯酚的吸附效果,考察不同活性炭吸附对硝基苯酚的经济效益,吸附强度和吸附量顺序为:椰壳活性炭﹥煤质活性炭﹥木质活性炭,选择煤质活性炭吸附对硝基苯酚。  相似文献   

2.
活性炭处理活性艳红X-3B染料废水的静态研究   总被引:1,自引:0,他引:1  
采用活性炭纤维(ACF)、粒状活性炭(GAC)、椰壳活性炭(椰壳AC)分别处理活性艳红X-3B模拟染料废水。实验结果表明,在相同的活性炭用量下,吸附率顺序为:椰壳AC>ACF>GAC;温度10~50℃,吸附效率随温度升高而增大;溶液在弱酸性条件下,3种炭材料均有较好的吸附效果;随着染料溶液浓度的提高,脱色率是下降的;加热和微波均可使GAC和椰壳AC再生,而且再生后的吸附性能均基本可恢复到原来的100%,ACF经微波再生后,吸附量达原来的2.4倍。  相似文献   

3.
热解活化法制备高吸附性能椰壳活性炭   总被引:1,自引:1,他引:0  
以椰壳为原料,采用高温直接热解活化法制备高吸附性能活性炭。研究了活化温度、活化时间对活性炭吸附性能的影响。研究结果表明,活化温度为 900 ℃,热解活化时间为 8 h,升温速率为 10 ℃/min,制得碘吸附值为 1 628.54 mg/g,亚甲基蓝吸附值为 375 mg/g 的高吸附性能椰壳活性炭,得率为 9.41 %。氮气吸附实验结果表明,该活性炭比表面积 1 723 m2/g、总孔容积 0.87 cm3/g、微孔容积 0.68 cm3/g、中孔容积0.18 cm3/g、平均孔径 2.03 nm。热解活化制备的椰壳活性炭样品性能优于市售水蒸气法椰壳净水活性炭国家标准。  相似文献   

4.
The removal mechanisms of Cr(VI) from water using different types of activated carbons, produced from coconut shell, wood and dust coal, were investigated in this project. Different types of activated carbons have different surface characteristics. The coconut shell and dust coal activated carbons have protonated hydroxyl groups on the surface (H‐type carbons), while the surface of the wood‐based activated carbon has ionised hydroxyl groups (L‐type carbons). The adsorption kinetics of chromium onto the activated carbons at pH values ranging from 2 to 6 were investigated. It was found that the optimum pH to remove total chromium was 2 for wood‐based activated carbon, while for coconut shell and dust coal activated carbons, the optimum pH was around 3–4. The difference in the optimum pH for different activated carbons to remove Cr(VI) from water can be explained by the different surface characteristics and capacity of the activated carbons to reduce Cr(VI) to Cr(III). © 1999 Society of Chemical Industry  相似文献   

5.
以沙漠治理树种长柄扁桃的种壳为原料,采用水蒸气活化法制得了介孔发达的活性炭,并研究了炭化温度、活化温度、活化时间、水蒸气用量对活性炭吸附性能及产率的影响。结果表明:在炭化温度600℃、活化温度850℃、活化时间60 min、水蒸气与炭化料的质量比为6:1的最佳工艺条件下,制得活性炭样品的产率为12%,碘吸附值和亚甲基蓝吸附值分别达到1 175和315 mg/g,介孔率为60.9%,比表面积为1 127 m2/g,平均孔径2.6 nm,在吸附平衡时间为24 h时,活性炭对水溶液中头孢氨苄的吸附量高达245 mg/g,优于相同条件下制得的椰壳和核桃壳活性炭的吸附能力。  相似文献   

6.
The kinetics of adsorption of ethyl benzoate from solutions in ethanol on coconut shell activated carbon was studied. It was found that the kinetics of adsorption of ethyl benzoate can be described by pseudofirst-order and pseudo-second-order rate equations with the same accuracy. It was established that the adsorption isotherm at a concentration to 2 g/L in the initial solution is adequately described by the Langmuir equation.  相似文献   

7.
采用水蒸气活化法制备得到椰壳活性炭,以850℃活化得到微孔率最高的活性炭为吸附剂,考察其对肌酐的体外吸附性能,探讨了吸附时间、肌酐初始质量浓度、吸附温度及pH值对肌酐吸附量的影响。结果表明,微孔率高的(71.0%)椰壳活性炭对肌酐吸附性能良好;30min内吸附量迅速升至57.8mg/g,7h时达到平衡,平衡吸附量为76.4mg/g;在30~70℃温度范围内,肌酐吸附量随温度升高而增加;酸性环境有利于肌酐的吸附,pH值为2时吸附量达到最大,为123.55mg/g。  相似文献   

8.
运用容积法在温度区间113—293 K、压力范围0—12.5 MPa测定氢在椰壳活性炭YK-1上的吸附等温线,由等量吸附线标绘和低覆盖率区域等温线的亨利定律标绘确定等量吸附热和极限吸附热,引入格子理论Ono-Kondo方程对吸附等温线进行模型分析。结果表明,氢在YK-1活性炭上等量吸附热随吸附量的变化平缓,等量吸附热的平均值和极限值分别为4.64 kJ/mol和5.37 kJ/mol;基于Ono-Kondo模型的方程能较好地预测吸附等温线,氢在吸附空间的最大吸附容量随温度变化,其值比液氢在相同吸附空间的吸附容量小。须改善材料结构和降低储存系统温度才能提高活性炭的储氢性能。  相似文献   

9.
The kinetics and thermodynamics of the adsorption of diclofenac sodium from aqueous solutions of different concentrations at different temperatures on activated carbon obtained from coconut shell were studied. It was found that the adsorption of diclofenac sodium is described by a pseudo-first-order equation and the adsorption isotherm at its concentration to 750 mg/L in the initial solution is adequately described by the Langmuir equation. It was found that the adsorption of diclofenac sodium is an endothermic process.  相似文献   

10.
《分离科学与技术》2012,47(5):601-604
Abstract

The adsorption isotherm of pure hydrogen on activated carbon (coconut shell) was determined at — 186[ddot]C over a pressure range of 1 to 772 mm Hg. A McBain balance apparatus with a modified refrigerant thermostat was used.  相似文献   

11.
以椰壳活性炭(YAC)为原料,通过NH4Br溶液浸渍改性,制备了溴素改性椰壳活性炭脱汞吸附剂(YAC-Br)。在固定床实验台上开展了YAC和YAC-Br的汞脱除实验,主要研究了入口汞(Hg0)浓度对YAC-Br脱汞性能的影响,并结合BET、SEM、XRF等表征手段分析了YAC-Br的脱汞原理。在0.3MW燃煤循环流化床锅炉上对YAC-Br进行了烟气管道喷射吸附剂脱汞(ACI)实验,验证了其在实际燃煤烟气中对汞的脱除效果。结果表明:改性过程不会破坏椰壳活性炭原有的孔隙结构和微孔容积,而会使活性炭表面更加平整;化学改性后活性炭表面Br负载量提高,成为Hg0的主要活性吸附位。固定床实验结果说明:改性后椰壳活性炭的初始汞吸附效率和单位累积汞吸附量分别提高了6.02倍和21.8倍,吸附效率随汞浓度增大而降低。0.3MW燃煤循环流化床实验结果表明:改性后椰壳活性炭对元素汞和氧化汞均有很好的脱除作用,脱汞效率随着吸附剂喷射量的增加而增加,当喷射量为0.7kg/h时,脱汞效率可达到76.38%。  相似文献   

12.
以海南椰壳(HN)及石油焦(BS)为原料,在不同预处理炭化温度下制备出HN系列和BS系列炭化样品,使用TG和XRD检测考察炭化温度对炭化样品反应活性和结构的影响,使用KOH化学活化法制备HN系列和BS系列活性炭样品,所制样品用氮气吸附和脱附等温线计算出BET比表面积、DFT孔径分布及孔容,并且通过直流循环充放电和循环伏安方法表征研究系列样品的电化学性能。实验结果表明,随着炭化温度的升高,HN及BS系列活性炭样品的微孔含量均有明显增加。椰壳炭所制活性炭适合无机电解液体系,其最高比电容达317F/g;而石油焦所制活性炭适合有机电解液体系,其比电容可达162F/g。  相似文献   

13.
孙瑛  刁炳祥 《净水技术》2012,31(4):109-113
三卤甲烷(THMs)是水中天然有机物在氯化消毒过程中产生的对人体有致癌作用的挥发性物质,腐殖酸是生成消毒副产物的主要前驱物。活性炭能够去除水中的多种有机污染物,其中对腐殖酸的去除性能可以通过单宁酸值来表征。通过间歇试验,研究了两种活性炭对单宁酸的吸附行为,探索其对单宁酸的吸附规律。结果表明308 K时,1#炭对单宁酸的饱和吸附量较大,为616.0 mg/g。升高温度有利于两种活性炭对单宁酸的吸附,表明吸附过程为吸热过程。此外,两种活性炭对单宁酸的吸附动力学可以用Largergren伪二级速率方程很好地拟合,吸附过程是双速过程。1#炭对单宁酸的吸附速率更快,比3#炭具有更高的单宁酸吸附性能。1#和3#炭对单宁酸的吸附活化能依次分别为17.5和3.9 kJ/mol,说明1#炭的反应速率随温度的升高增加得较快,符合Arrhenius的经验方程,吸附反应速率随温度升高而加快的规律,活性炭对单宁酸的吸附可认为是化学吸附。  相似文献   

14.
The kinetics of adsorption of benzoyl peroxide from solutions in ethanol and n-hexane on coconut shell activated carbon was studied. It was found that the kinetics of adsorption of benzoyl peroxide is described by a pseudo-first-order rate equation. The adsorption isotherm of benzoyl peroxide at its equilibrium concentrations from 0.07 to 1.25 g/L in solution is adequately described by the Langmuir equation. It was established that, in a solution in ethyl alcohol, the degradation of benzoyl peroxide with the formation of ethyl benzoate occurred along with adsorption.  相似文献   

15.
研究了水溶液中椰壳活性炭对喹诺酮药物加替沙星(GTFX)的吸附性能,测定了不同温度下的吸附等温线并分析了其吸附热力学参数。结果表明:活性炭对加替沙星的吸附符合Freundlich方程,ΔH=-1.7374kJ/mol,说明活性炭对GTFX的吸附过程为放热过程,且ΔH<20kJ/mol,表明吸附过程主要为物理吸附。同时,测得吉布斯自由能ΔG<0,表明吸附质从溶液到吸附剂表面的吸附过程是自发过程,其吸附主要是熵驱动。对椰壳活性炭进行了硝酸及氨水改性,研究了3种不同活性炭对GTFX的缓释性能,结果显示,与椰壳活性炭相比,经硝酸氧化改性后的活性炭缓释性能有较大的提升,而经氨水改性的活性炭缓释性能有所下降,3种不同活性炭对GTFX的缓释均符合Higuchi方程释药模式。  相似文献   

16.
采用水蒸气活化法制备得到微孔发达的椰壳活性炭,并研究其对肌酐的吸附性能。以850℃活化所得微孔率最高的活性炭为吸附剂,考察了活性炭投加量、吸附时间、溶液pH值及肌酐初始质量浓度对肌酐吸附性能的影响,并采用准一级、准二级动力学方程对实验数据进行拟合处理。结果表明,制备所得4种椰壳活性炭对肌酐均有较强的吸附能力;微孔率越高,吸附量越大;37℃下,椰壳活性炭对肌酐的吸附平衡时间为6 h,平衡吸附量达到97.88 mg/g;酸性环境更有利于肌酐吸附;平衡吸附量随肌酐初始质量浓度增加而升高;吸附过程符合准二级动力学模型,以化学吸附为主。  相似文献   

17.
Activated carbon from coconut shell was modified with sodium acetate at concentrations of 10% and 15%, and used in a fixed-bed column to study the adsorption of copper ions. Synthetic wastewater containing 258 mg/l of Cu was passed through plain activated carbon and modified activated carbon. Plain activated carbon was able to adsorb 20 mg of Cu, and activated carbon modified by treatment with 10% sodium acetate adsorbed 33 mg of Cu. The highest adsorption capacity was found for the activated carbon modified by treatment with 15% sodium acetate, which adsorbed 45 mg of Cu; i.e. 2.2 times as much as the plain activated carbon. After regeneration with 0.71 M NaOH, the activated carbon modified by treatment with 15% sodium acetate was able to adsorb 60 mg of Cu; i.e. three times as much as the plain activated carbon.  相似文献   

18.
刘荫  张永春 《化工进展》2013,32(11):2773
我国对食品级二氧化碳要求较高,在其生产过程中乙烷的脱除是难点。文章首先考察了市售的不同吸附剂,包括Y型、X型、A型等分子筛类,椰壳和煤基活性炭以及吸附树脂等吸附剂对CO2中微量C2H6的吸附效果,之后考察了不同浓度盐酸酸改性与氢氧化钠碱改性、双氧水氧化改性、氨水还原改性等改性条件对吸附剂吸附性能的影响。研究表明,具有高比表面积、丰富微孔和适量中孔结构的活性炭更有益于二氧化碳中微量乙烷的吸附;浓度为1%的盐酸溶液浸渍活性炭3 h后,能增强其对CO2中微量C2H6的吸附能力;浓度3%、浸渍时间6 h为氢氧化钠碱溶液改性活性炭的最佳条件;弱氧化剂双氧水改性能略微提高活性炭对二氧化碳中乙烷的吸附能力,弱还原剂氨水改性对吸附效果无明显影响。  相似文献   

19.
通过吸附穿透曲线和吸附容量,考察了两种活性炭吸附剂在不同气氛条件下SO2和NO的常温吸附性能.结果表明,无氧条件下,活性炭对NO吸附能力较弱;有氧时,O2可促进NO在活性炭上的吸附转化;无氧条件下,活性炭吸附SO2的性能远远强于吸附NO;O2的存在均可提高两种活性炭对NO和SO2的吸附能力.预吸附NO形成的某些NOx物种可促进SO2吸附.SO2对NO的吸附有明显抑制作用.同时吸附时,SO2和NO不会单独占据同一活性中心,即SO2与NO可能有共同的吸附位,并形成新的吸附态中间产物.且比较两种活性炭的常温吸附性能,椰壳活性炭强于煤质活性炭.  相似文献   

20.
A laboratory investigation on the adsorption of hazardous methylene chloride (METH) vapor on the commercial activated carbons BPL and PCB, which were made from bituminous coal and coconut shell, respectively, was conducted at 283, 293, 303, and 313 K. The physical properties and surface functional groups of the two activated carbons were also measured and compared with each other. The experimental results indicate that the adsorption capacity of carbon PCB is slightly higher than that of carbon BPL. It was found that the Langmuir, Freundlich, and Dubinin–Radushkevich adsorption equations were well fitted by the measured adsorption data. The values of the parameters of the adsorption equations were determined for the two adsorbents. The physical properties (e.g. micropore volume) of the adsorbents are consistent with the parameters obtained from the adsorption results.  相似文献   

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