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Adsorption of phenolic compounds from aqueous solutions by a water-compatible hypercrosslinked polymeric adsorbent 总被引:18,自引:0,他引:18
A water-compatible hypercrosslinked polymeric adsorbent (NJ-8) for adsorbing and removing phenolic compounds from their aqueous solutions was prepared. This product can be used directly without a wetting process. Its adsorption property toward four phenolic compounds, phenol, p-cresol, p-chlorophenol, and p-nitrophenol was tested using the commercial Amberlite XAD-4 as a reference. The capacities of equilibrium adsorption for all four phenolic compounds on the NJ-8 from their aqueous solutions are around two times as high as that of Amberlite XAD4 within the temperature range 283-323 K, which may contribute to their micropore structure and the partial polarity on the network. Freundlich isotherm equations, as well as relative adsorption capacities and isosteric adsorption enthalpies for the four phenolic compounds, indicate that the adsorption of phenolic compounds on the NJ-8 resin is a physical adsorption process. Mini-column adsorption studies for phenol on Amberlite XAD4 and NJ-8 resins show that the breakthrough adsorption capacities are 0.54 and 0.99 mmol/ml, and the total capacities are 0.62 and 1.37 mmol/ml, while no extra acetone was needed to remove the adsorbed phenol from NJ-8 as from Amberlite XAD4. 相似文献
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In the present study, a hydrophilic bifunctional polymeric resin (LS-2) with sulfonic groups was synthesized, and the adsorption performance of three aniline compounds, aniline, 4-methylaniline, and 4-nitroaniline onto LS-2 was compared with that on the commercial Amberlite XAD-4. The uptake of the aniline compounds on LS-2 is a procedure of coexistence of physisorption and chemisorption and obeys the pseudo-second order rate equation, while the uptake of the compounds on XAD-4 is merely a physical adsorption and follows the pseudo-first order rate equation. All the isothermal data fit well with the Freundlich model, and the values of K(F) of the compounds adsorbing on LS-2 are much higher than those on XAD-4 suggesting the higher adsorbing capacities on LS-2 than those on XAD-4, which may be attributed to the microporous structure and the polar groups on the network of LS-2 resin. Dynamic adsorption and desorption studies for aniline on LS-2 show that the breakthrough adsorption capacity and the total adsorption capacity are 0.96 and 1.24 mmol per milliliter resin, respectively. Nearly 100% regeneration efficiency for the adsorbent was achieved by 5% hydrochloric acid. 相似文献
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复合功能吸附树脂对双组分萘系化合物的竞争吸附研究 总被引:4,自引:0,他引:4
1-氨基 -2 -萘酚 -4 -磺酸 ( 1,2 ,4-酸 )和 2 -萘酚自不同双组分吸附体系中吸附至复合功能吸附树脂 AL -1上的吸附等温线符合 F reundlich等温模型。1,2 ,4-酸的吸附为吸热过程 ,而 2 -萘酚的吸附为放热过程。固相上的 2 -萘酚几乎不影响 1,2 ,4-酸的吸附 ,而固相上的 1,2 ,4-酸大大削弱了 2 -萘酚的吸附。两种溶质在吸附位点上的竞争为主要作用机制。 相似文献
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采用聚乙二醇活化原材料百合杆,分别在300%和600℃对活化后百合杆进行炭化,制得炭化百合杆,用于吸附废水中的苯酚。实验考察了pH值、吸附时间和吸附质初始浓度对苯酚吸附的影响,采用Langmuir、Freundlich和Dubinin.Radushkevich等温式分别对该吸附过程进行描述,并结合实验数据对比了准一级和准二级动力学模型。结果表明:炭化百合杆对苯酚的吸附过程符合Langmuir等温式和准二级动力学模型,计算了热力学参数(△G、△H和△s),说明该吸附过程为自发进行。碳化百合杆对苯酚具有良好吸附性能。 相似文献
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采用溶剂热法成功制备了具有新型形貌的Fe3O4/CS单分散磁性纳米绒球。选取Fe3O4/CS纳米绒球作为磁性吸附剂,研究了其脱除水中五氯酚钠(PCP-Na)的吸附性能。吸附平衡实验表明,Fe3O4/CS吸附脱除PCP-Na的吸附过程能在30 min以内迅速实现吸附平衡,且对于初始浓度为100 mg/L、初始pH为6.5的PCP-Na溶液,在25℃吸附条件下能使溶液中的PCP-Na去除率高达91.5%。吸附等温线和吸附动力学研究表明,Fe3O4/CS吸附脱除PCP-Na的吸附过程属于放热反应,遵循Langmuir吸附模型,符合Lagergren二级动力学方程。此外,在完成吸附过程后,通过一块永久磁铁即能从吸附溶剂中迅速分离出Fe3O4/CS,从而实现吸附剂的有效分离和重复利用,显示了该磁性吸附剂的优越性和用于实际废水处理的潜力。 相似文献
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合成碳羟基磷灰石对水中双酚A的吸附性能研究 总被引:1,自引:0,他引:1
利用废弃蛋壳为原料、尿素为添加剂,合成纳米碳羟基磷灰石(CHAP)用于吸附水中双酚A(BPA)。利用红外光谱、扫描电镜和X射线能谱测试技术对CHAP样品表面化学进行了表征,同时考察了环境因子pH值、吸附时间和BPA初始浓度对吸附的影响。实验结果表明,CHAP对BPA去除率在酸性(pH=3~6)溶液中较好,而在中性和碱性环境中减弱。通过静态吸附实验数据计算分析得知,CHAP对BPA吸附符合Langmuir和Freundlich等温式,准二级动力学模型比准一级动力学模型能更好地描述CHAP对BPA吸附动力学行为。 相似文献
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麦草对水中苯胺的动态吸附研究 总被引:1,自引:0,他引:1
通过对苯胺初始浓度、流速、初始pH值和吸附床高度对穿透曲线的影响进行探讨,采用BDST模型和Thomas模型对动态实验数据进行线性拟合分析,研究了麦草对水中苯胺的动态吸附性能。结果表明:麦草能够有效地去除水中的苯胺,随着吸附床高度增加,穿透时间延长;而随着苯胺初始浓度、流速和pH值的增大,穿透时间急剧缩短。BDST模型能够准确地预测新的操作条件下的穿透时间,误差均〈5%;Thomas模型能够很好地描述麦草对苯胺的动态吸附动力学,由Thomas模型获得的麦草吸附柱对苯胺的动态吸附量与实验值相符。对吸附饱和后的麦草可用0.6mol/L盐酸进行解吸。 相似文献
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Othmani Amina Kesraoui Aida Seffen Mongi 《Environmental science and pollution research international》2021,28(34):46488-46503
Environmental Science and Pollution Research - The present research was devoted to water decontamination through the valorization of cellulosic fibers for the preparation of performing biosorbent,... 相似文献
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Pandian Ganesan Ramakrishnan Kamaraj Ganapathy Sozhan Subramanyan Vasudevan 《Environmental science and pollution research international》2013,20(2):987-996
A batch adsorption process was applied to investigate the removal of manganese from aqueous solution by oxidized multiwalled carbon nanotubes (MWCNTs). In doing so, the thermodynamic, adsorption isotherm, and kinetic studies were also carried out. MWCNT with 5–10-nm outer diameter, surface area of 40–600 m2/g, and purity above 95 % was used as an adsorbent. A systematic study of the adsorption process was performed by varying pH, ionic strength, and temperature. Manganese-adsorbed MWCNT was characterized by Raman, FTIR, X-ray diffraction, XPS, SEM, and TEM. The adsorption efficiency could reach 96.82 %, suggesting that MWCNT is an excellent adsorbent for manganese removal from water. The results indicate that second-order kinetics model was well suitable to model the kinetic adsorption of manganese. Equilibrium data were well described by the typical Langmuir adsorption isotherm. Thermodynamic studies revealed that the adsorption reaction was spontaneous and endothermic process. The experimental results showed that MWCNT is an excellent manganese adsorbent. The MWCNTs removed the manganese present in the water and reduced it to a permissible level making it drinkable. 相似文献
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J. Ru H. J. Liu J. H. Qu A. M. Wang R. H. Dai Z. J. Wang 《Journal of environmental science and health. Part. B》2013,48(1):53-61
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
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Ru J Liu HJ Qu JH Wang AM Dai RH Wang ZJ 《Journal of environmental science and health. Part. B》2007,42(1):53-61
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
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The photodegradation of phenol has been investigated under a high-pressure mercury lamp with a kind of jacket (glass or quartz) depending on used UV light range and a variety of experimental conditions: UV (lambda > 200 nm) with oxygen or with TiO2 and oxygen or with N2; UV (lambda > 330 nm) with oxygen or with TiO2 and oxygen or with N2. Photocatalysis and direct photolysis of phenol have different reaction pathways. Direct photolysis of phenol yielded a brown-yellow complex organic polymer in both aerobic and anaerobic environments. The polymer cannot be mineralized in an anaerobic environment. The effects of catalyst amount and oxygen concentration in the reaction atmosphere on the destruction of phenol were studied. The results prove that an appropriate catalyst amount can avoid direct photolysis and increase the mineralization rate of phenol. 相似文献
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以鸡粪为原料热解制备的生物碳作为吸附剂,考察了水中磷在生物碳上的吸附动力学,以及吸附效果的主要影响因素,并对磷的去除机制做了初步探讨.结果表明:以鸡粪为原料制备的生物碳具有较高的灰分含量和较高的比表面积,这有利于其对磷的吸附;拟一级动力学模型能更好描述水中磷在生物碳表面的吸附行为,水中磷是通过吸附到生物碳表面的胶体和MgO颗粒上而得以去除的;磷在生物碳上的吸附等温线能较好用Freundlich、Langmuir-Freundlich模型来拟合,表明生物碳对磷的吸附是由非均质过程控制的;生物碳对磷的吸附作用受溶液pH的影响,这是由于pH影响溶液中磷的存在形式,而各种离子在生物碳表面的竞争吸附会影响磷的吸附效果;利用鸡粪热解产生的生物碳吸附去除水中磷是可行的,不仅成本低廉并且能够达到以废治废的目的. 相似文献
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Kai Huang Hongmin Zhu 《Environmental science and pollution research international》2013,20(7):4424-4434
A cost-effective biosorbent was prepared by a green chemical modification process from muskmelon peel by saponification with alkaline solution of Ca(OH)2. Its adsorption behavior for lead ions was investigated and found to exhibit excellent adsorption properties. Results showed that the optimal equilibrium pH range for 100 % adsorption is from 4 up to 6.4. Adsorption equilibrium was attained within 10 min. The adsorption process can be described well by Langmuir model and pseudo-second-order kinetics equation, respectively. The maximum adsorption capacity for lead ions was found to be 0.81 mol/kg. Pectic acid contained in the muskmelon peel is the main factor responsible for the uptake of lead ions onto the gel, and the chemical modification process presented in this study can be assumed effective to prepare other similar biomaterials. The large adsorption capacity and the fast adsorption rate indicated that chemically saponified muskmelon peel gel in present study has great potential to be used as a cost-effective adsorbent for the removal of lead ions from the water. 相似文献
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Kai Huang Yifan Xiu Hongmin Zhu 《Environmental science and pollution research international》2013,20(9):5930-5938
Mangosteen peel, rich in polyphenolic compounds, was used to prepare the adsorbent exhibiting highly selective adsorption for Cr(VI) over other metal ions such as Pb2+, Fe3+, Zn2+, Cd2+, and Cr3+ at the pH values of 1~4. The chemical modification method proposed by using calcium hydroxide is quite cost-effective and ecofriendly without using any toxic reagents or causing any secondary pollution. The adsorption isotherm results revealed that the adsorption of Cr(VI) on the gel fit well the Langmuir adsorption model, and the maximum adsorption capacity for Cr(VI) at pH levels 1, 2, 3, and 4 was evaluated to be 2.46, 2.44, 1.99, and 2.14 mol/kg, respectively. The adsorption mechanism for Cr(VI) on the saponified gel was verified to follow an esterifiaction reaction coupled with the reduction of Cr(VI) to Cr(III) in which H+ plays a role of promoter. Thus, modified mangosteen peel gel has the prominent selectivity and low cost for Cr(VI) removal. 相似文献
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Cellulose supported layered double hydroxides for the adsorption of fluoride from aqueous solution 总被引:1,自引:0,他引:1
Cellulose supported layered double hydroxides (CSLDHs) were synthesized and tested for adsorption of fluoride in aqueous medium. Three samples of cellulose supported LDHs were synthesized by varying the LDH loading on cellulose. The raw cellulose, unsupported LDH and cellulose supported LDHs were characterized by XRD, SEM and BET surface area. Batch adsorption as well as fixed-bed column experiments were performed for determining the fluoride adsorption characteristics of CSLDHs. The fluoride adsorption properties of CSLDHs were found to be superior to that of reported adsorbents, including activated alumina and carbon nanotubes. Defluoridation capacity of the CSLDHs was 2-4 times higher than that of unsupported LDH. The cellulose supported LDH, CSLDH-50, having an LDH loading of 27% showed maximum fluoride uptake capacity (5.29 mg g(-1) of CSLDH, 25.18 mg g(-1) of LDH) in fixed-bed column study. 相似文献
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用CTMAB(十六烷三甲基溴化铵)对陶粒进行改性.实验研究了陶粒改性前后对5种内分泌干扰物EDCs(美托洛尔MTP、磺胺甲噁唑SMZ、卡马西平CBZ、对氯苯氧异丁酸CA、17α-乙炔基雌二醇EE2)的吸附特性.结果表明,CTMAB改性处理对陶粒的孔结构和表面性质都有影响,有效吸附的孔径所占比例和陶粒表面极性升高;室温条件下,EDCs初始浓度和吸附剂浓度均为1 mg/L时,实验用改性陶粒和陶粒达到吸附平衡的时间基本相同,均为5 min左右;改性陶粒能提高大部分EDCs的吸附量,5种内分泌干扰物混合物一起吸附时存在竞争,其中SMZ和MTP竞争力强,CA最弱;吸附机理包括表面物理吸附和分配作用.实验研究拟为改性陶粒应用于水中痕量污染物的处理提供理论依据,支撑保障饮用水处理达标的目的. 相似文献
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阳离子表面活性剂改性四氧化三铁-沸石复合材料对水中刚果红的去除作用 总被引:1,自引:0,他引:1
制备了四氧化三铁-沸石复合材料(磁性沸石)和阳离子表面活性剂改性磁性沸石(有机改性磁性沸石),采用X射线衍射分析对有机改性磁性沸石进行了表征,通过批量实验考察了有机改性磁性沸石对水中刚果红的吸附性能,并对相关的吸附机制进行了讨论。实验表明,有机改性磁性沸石对水中的刚果红具备良好的吸附能力,且有机改性磁性沸石对刚果红的吸附能力远远高于磁性沸石。有机改性磁性沸石对水中刚果红的吸附动力学符合准二级动力学模型,吸附平衡数据可以采用Langmuir、Freundlich和Dubinin-Radushkevich(D-R)等温吸附模型加以描述。根据Langmuir等温吸附模型计算得到的有机改性磁性沸石对刚果红的最大吸附容量为146 mg/g(pH 7和30℃)。有机改性磁性沸石对水中刚果红的吸附属于自发和放热的过程。有机改性磁性沸石吸附水中刚果红的作用机制包括静电吸引、有机相分配、氢键和表面配位。X射线衍射分析结果表明,有机改性磁性沸石含四氧化三铁,吸附刚果红后的有机改性磁性沸石可以很容易地通过外加磁场的作用快速地从水中分离出来。上述结果表明,有机改性磁性沸石适合作为一种吸附剂去除废水中的刚果红。 相似文献