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1.
多环芳烃在黄河水体颗粒物上的表面吸附和分配作用特征   总被引:8,自引:1,他引:7  
通过模拟实验研究了多环芳烃在黄河水体颗粒物上的吸附特征,重点探讨了表面吸附和分配作用对吸附的贡献,结果表明:①随着泥沙含量的增加,总吸附量在增加,而单位颗粒物的吸附量却在减少;且泥沙含量不同时,吸附等温式的拟合方程也不同;②颗粒物对多环芳烃的吸附等温线与吸附-分配复合模式拟合较好;表面吸附和分配作用对多环芳烃的吸附实验值与吸附-分配模式中的理论值比较吻合;③在实验浓度范围内,黄河颗粒物对多环芳烃的吸附以表面吸附为主,如当颗粒物含量为3、8和15g/L,液相平衡浓度分别为2.84、2.35和3.4μg/L时,表面吸附对总吸附的贡献分别为67.85%、65.6%和62.69%;且表面吸附对总吸附的贡献大小顺序可以用泥沙含量表示为:3g/L>8g/L>15g/L,即随着泥沙含量的增加,表面吸附的贡献有减小的趋势;④单一多环芳烃在颗粒物上的单位吸附量大于3种多环芳烃共存时的单位吸附量,这从另一角度证实多环芳烃在黄河水体颗粒物上的吸附以表面吸附为主.  相似文献   

2.
桑沟湾表层沉积物性质及对磷的吸附特征   总被引:3,自引:2,他引:1  
通过研究桑沟湾表层沉积物对磷的吸附动力学曲线和吸附等温线,并结合沉积物的表面电荷性质及磷的形态分析,考察了沉积物对磷的吸附性能和吸附机制.结果表明,桑沟湾表层沉积物对磷的吸附过程包括快吸附过程和慢吸附过程,可用快慢二段一级动力学方程描述,等温线符合Langmuir交叉式模型.夏季沉积物样品的最大吸附量高于春季样品,粒级较小的沉积物吸附能力较强.沉积物样品对磷的最大吸附量Qm在0.047 1~0.123 0 mg·g-1之间,吸附/解吸平衡磷浓度(EPC0)范围在0.059 6~0.192 7 mg·L-1,沉积物充当"磷源"的作用.不同站位表层沉积物中无机磷(IP)是磷在沉积物中的主要赋存形态,吸附后的沉积物样品中弱吸附态磷(Ex-P)、铁结合态磷(Fe-P)明显增加.吸附过程包括物理吸附和化学吸附,以物理吸附为主.  相似文献   

3.
The objective of this study was to examine the effect of biosurfactant on the sorption of phenanthrene (PHE) onto the original or H2O2-treated black loamy soil (typic isohumisols) and red sandy soil (typic ferralisols). The sorption isotherms were performed with the original and “soft” carbon-removed soils in the presence and absence of biosurfactant (200 mg/L). The sorption and degradation of biosurfactant were investigated. The result showed that organic matter played an important role in PHE sorption onto the black loamy and red sandy soils, and the PHE sorption isotherms on the “soft” carbon-removed soils exhibited more nonlinearity than those on the original soils. The values of partition coe cient (Kd) on the original black loamy soil with or without 200 mg/L biosurfactant were 181.6 and 494.5 mL/g, respectively. Correspondingly, in the red sandy soil, Kd was 246.4 and 212.8 mL/g in the presence or absence of biosurfactant, respectively. The changes of Kd suggested that biosurfactant inhibited PHE sorption onto the black loamy soil, but facilitated PHE sorption onto the red sandy soil. The nonlinearity of PHE sorption isotherm was decreased in the presence of biosurfactant. Site specific sorption might occur during PHE sorption onto both the original and the “soft” carbon-removed soils in the presence of biosurfactant. It was noted that biosurfactant could also be sorbed onto soils. The maximal sorption capacity of the red sandy soil for biosurfactant was (76.9 0.007) g/g, which was 1.31 times that of black loamy soil. Biosurfactant was degraded quickly in the two selected soils, and 92% of biosurfactant were mineralized throughout the incubation experiment for 7 d. It implied that biosurfactant should be added frequently when the remediation of polycyclic aromatic hydrocarbon (PAH)-contaminated soils was conducted through PAH desorption approach facilitated by biosurfactant.  相似文献   

4.
To understand the water purification mechanism of potassium permanganate as a coagulation-aid during the preoxidation process, the microtopography of its reductive products, the newly formed hydrous manganese dioxide and the aged hydrous manganese dioxide, was investigated. The morphology of natural organic matter (NOM) adsorbed by the newly formed hydrous manganese dioxide was also compared with that of NOM alone. By using the tapping mode atomic force microscopy (AFM), the observation results show that the newly formed hydrous manganese dioxide possess a perforated sheet (with a thickness of 0–1.75 nm) as well as some spherical particle structures compared with the hydrous manganese dioxide with 2 h aging time, which demonstrated that the newly formed hydrous manganese dioxide had a large surface area and adsorption capacity. When 1 mmol/L newly formed hydrous manganese dioxide was added, the microtopography of NOM molecules shifted from a loosely dispersed pancake shape (with adsorption height of 5–8.5 nm) to a densely dispersed and uniform spherical structure. These results provide a valid proof that it is the perfect adsorption capability of the newly formed hydrous manganese dioxide that might result in the coagulation aid effect of potassium permanganate preoxidation. Translated from Environmental Science, 2006, 27(5): 945–949 [译自: 环境科学]  相似文献   

5.
The adsorption kinetics for model pollutants on activated carbon fiber (ACF) by polarization was investigated in this work. Kinetics data obtained for the adsorption of these model pollutants at open-circuit, 400 mV, and −400 mV polarization were applied to the Lagergren equation, and adsorption rate constants (K a) were determined. With the anodic polarization of 400 mV, the capacity of sodium phenoxide was increased from 0.0083 mmol/g at open-circuit to 0.18 mmol/g, and a 17-fold enhancement was achieved; however, the capacity of p-nitrophenol was decreased from 2.93 mmol/g at open-circuit to 2.65 mmol/g. With the cathodal polarization of −400 mV, the capacity of aniline was improved from 3.60 mmol/g at open-circuit to 3.88 mmol/g; however, the capacity of sodium dodecylbenzene sulfonate was reduced from 2.20 mmol/g at open-circuit to 1.59 mmol/g. The enhancement for electrosorption changed with different groups substituting. Anodic polarization enhances the adsorption of benzene with the electron-donating group. But whether anodic or not, cathodal polarization had less effect on the adsorption of electron-accepting aromatic compounds, and decreased the adsorption capacity of benzene-bearing donor-conjugate bridge-acceptor, while increasing its adsorption rate. Electrostatic interaction played a very important role in the electrosorption of ion-pollutants. Translated from Environmental Science, 2006, 27(6): 1111–1116 [译自: 环境科学]  相似文献   

6.
多环芳烃在长江口滨岸颗粒物-水相间的分配   总被引:5,自引:2,他引:3  
利用长江口滨岸水环境中颗粒相与溶解相多环芳烃的实测浓度,获取了多环芳烃化合物在颗粒物-水相间的分配系数Kp.结果表明,分配系数Kp值在507~10 179 L/kg之间,枯季高于洪季,随多环芳烃环数的增加而增大;Koc值与辛醇-水分配系数Kow之间存在较好的线性自由能关系(枯季R2=0.82,洪季R2=0.68),推断出长江口滨岸颗粒物亲脂性较差,对多环芳烃的吸收能力相对较弱.长江口滨岸各采样点多环芳烃化合物的lgKoc值均超过了经典平衡分配模型的预测值上限,多环芳烃两相分配行为不受颗粒物浓度、粒径及上覆水盐度、溶解态有机碳的控制(R2<0.1),表现出主要受POC及非均一性混合物PSC共同影响的特点;扩展后的含PSC相的颗粒物-水相分配模型较为准确地模拟了lgKow<6的多环芳烃化合物野外原位分配过程.  相似文献   

7.
为了探究3种不同粒径的污泥生物质炭(S1:大粒径 0.165 mm;S2:中粒径为0.025~0.165 mm;S3:小粒径0.025 mm)对Zn的吸附效率和固化稳定的机理,以此为污泥生物质炭在水污染控制方面的应用提供科学依据.利用实验室模拟法,研究不同反应时间、溶液初始pH和重金属浓度对生物炭吸附效果的影响,并运用四步萃取法分析生物炭上Zn的吸附形态.结果表明:①生物炭在4 h左右达到吸附平衡,吸附率呈先增加后平缓的趋势,最终吸附量S1S2S3;②溶液初始浓度为0~2 mmol·L~(-1)时Zn~(2+)的吸附量呈线性增长趋势,但随溶液浓度超过2 mmol·L~(-1)时吸附量开始趋于饱和;③3种不同粒径生物炭的水溶性组分Zn分别占总萃取量的1.70%、5.02%和7.47%,可交换态组分分别占25.27%、32.35%和27.29%,酸溶性组分分别占35.06%、38.63%和27.90%,非生物利用组分分别占37.97%、24.00%和37.34%.④污泥生物质炭的动力学吸附特征更符合准二级动力学吸附模型,单位质量的污泥生物质炭粒径越小吸附量越大;⑤污泥生物质炭的等温吸附特征更符合Langmuir模型,小粒径的生物质炭最大吸附量最优;⑥在酸性条件下随着pH的上升污泥生物质炭的吸附率在逐渐增加,碱性条件下吸附率的增加可能是形成锌的络合物沉淀导致的;⑦Zn的吸附形态以酸溶性和非生物利用态为主,水溶性占比较小.污泥生物质炭对Zn的吸附以化学吸附为主,S1吸附的Zn酸溶性组分和非生物利用组分占比最大,吸附效果较为稳定.  相似文献   

8.
This study focused on the adsorptive behaviors of humic acid onto freshly prepared hydrous MnO2(s) (δMnO2), and investigated the feasibility of employing δMnO2 for humic acid removal from drinking water. Effects of such parameters as molecular mass of humic acid, kinds of divalent cations on adsorptive behaviors and possible mechanisms involved were investigated. This study indicated that humic acid with higher molecular mass exhibited more tendency of adsorbing onto δMnO2 than that with lower molecular mass. Ca2+ facilitated more humic acid adsorption than Mg2+; UV-Vis spectra analysis indicated higher capabilities of Ca2+ coordinating with acidic functional groups of humic acid than that of Mg2+. Additionally, ζ potential characterization indicated that Ca2+ showed higher potential of increasing gz potential of δMnO2 than Mg2+. Ca2+ of 1.0 mmol/L increased ζ potential of δMnO2 from −37 mV (pH 7.9) to +7 mV (pH 7.2), while 1.0 mmol/L Mg2+ increased to lower value as −9 mV (pH 6.5), correspondingly. Fourier transform infrared (FTIR) spectra demonstrated the adsorption of humic acid onto δMnO2, showing the important roles of-COO functional groups and surface Mn-OH in the adsorption of humic acid onto δMnO2. Translated from Acta Scientiae Circumstantiae, 2005, 25(3): 351–355 [译自: 环境科学学报]  相似文献   

9.
久效磷在黄河水体沉积物中的吸附特征及机理   总被引:2,自引:0,他引:2  
研究了黄河水体沉积物对有机磷农药久效磷的吸附特性及机理 ,结果表明 ,沉积物对黄河水中久效磷的吸附符合 L angmuir和 Freundlich等温式 ,是分配作用和表面吸附共同作用的结果。对分配作用和表面吸附在沉积物吸附久效磷中的相对贡献率进行了定量描述 :它们均为浓度的函数 ,吸附作用以分配作用为主。  相似文献   

10.
基于流态化作用的吸附反应动力学和穿透特征研究还鲜见报道.以苯酚为吸附质、活性炭为吸附剂,探讨了不同流态化紊流强度对基于流态化作用的吸附效率、吸附动力学特性、吸附反应穿透曲线和饱和吸附量的影响,并与相同条件的固定床吸附反应器进行了对比研究.结果表明,表观流速为8 mm·s-1和13 mm·s-1时,基于流态化和固定态的活性炭在5 min内的吸附效率均达到93%以上,吸附反应均符合经典二级动力学方程,且其相关系数大于0.999.穿透实验结果表明,表观流速为6 mm·s-1和8 mm·s-1时,基于流态化的活性炭对苯酚的吸附总量分别较固定态高8.77 mg·g-1和24.70 mg·g-1.可见,基于流态化吸附反应器与基于固定态吸附反应器相比,具有吸附反应效率高,吸附总量大的特征.  相似文献   

11.
水稻秸秆主要组分的提取及其对芘的吸附作用   总被引:3,自引:1,他引:2  
赵莉  孙红文  何娜 《环境科学》2010,31(6):1575-1580
从水稻秸秆中提取主要组分--木质素、纤维素、半纤维素,利用元素分析和红外光谱对其性质进行了表征,并研究了芘在秸秆及其3种组分上的吸附行为.结果表明,各组分性质差异很大,木质素具有较高的芳香性和较低的极性,而纤维素和半纤维素具有较高的极性和脂肪性.不同组分对芘的吸附等温线均符合Freundlich方程,但吸附能力因其结构的差异而不同,木质素对芘的吸附能力最强, 吸附容量KF为5.04×104,比纤维素高100倍左右,而芘在半纤维素上的吸附能力略低于纤维素.低浓度(水相平衡浓度ce=0.01 Sw)下,秸秆对芘的吸附主要受木质素的控制,而且分配系数Kd略低于按照木质素质量分数计算的预测值,可能是由于木质素的烷基和芳香结构被周围的极性结构所覆盖.但在高浓度(ce = 0.5 Sw)时,秸秆对芘的吸附高于各组分的加和,芘向秸秆其他组分的分配作用不能忽略.芘在木质素上的吸附表现为非线性(非线性指数,n = 0.89),而其它3种吸附剂对芘的吸附更趋向于线性(n > 0.96).n值与芳香性呈负相关关系,而与极性呈正相关关系,表明芳香性导致的特殊作用力是造成吸附非线性的主要原因.有机碳标化分配系数Koc随吸附剂芳香性的增强而增大,但随极性的增强而减小.  相似文献   

12.
Denitrification of nitrate in groundwater using iron nanoparticles has received increasing interest in recent years. In order to fabricate iron nanoparticles with homogeneously spherical shape and narrow size distribution, a simple and “green” method was developed to synthesize iron nanoparticles. The conventional microemulsion methods were modified by applying Span 80 and Tween 60 as mixed surfactants. The maximum content of water in the Water-in-oil (W/O) microemulsion and its appropriate forming conditions were found, and then the microemulsion system consisting of saturated Fe2+ solution was used to synthesize α-Fe ultrafine particles by redox reaction. The nanoparticles were characterized by using powder X-ray diffraction (XRD) and transmission electron microscopy (TEM). The results show that the average diameter of the particle is about 80–90 nm. The chemical activity of the obtained iron nanoparticles was studied by the denitrification experiment of nitrate. The results show that under the experimental conditions, iron removed most of the 80 mg/L nitrate within 30 min. The mass balance of nitrate reduction with nanoscale Fe indicates that endproducts are mainly ammonia. Two possible reaction pathways for nitrate reduction by nanoscale iron particles have been proposed in this work. __________ Translated from Chemical Journal of Chinese Universities, 2006, 27(4): 672–675 [译自: 高等学校化学学报]  相似文献   

13.
除草剂草萘胺在土壤-水环境中的吸附行为及其机理   总被引:4,自引:0,他引:4  
采用高效液相色谱法(HPLC)测定了土壤、胡敏酸及粘土矿物对除草剂草萘胺的吸附效应,并用FTIR图谱分析对其吸附机理进行了研究.结果表明,草萘胺在5种土壤上的吸附均很好地符合Freundlich方程,吸附常数Kf值在3.98~12.82之间.5种土壤对草萘胺吸附容量大小的次序为:黄泥土>黑土>黄棕壤>红壤>潮土.将吸附常数Kf与土壤的理化性质进行多元逐步回归分析表明,土壤有机碳含量与草萘胺吸附容量呈线性关系(R2=0.997,p<0.05 n=5).红外光谱分析结果表明,草萘胺可能通过脂肪族分配及疏水吸附等形式与HA发生了结合.  相似文献   

14.
不同雨强对太湖河网区河道入湖营养盐负荷影响   总被引:5,自引:4,他引:1  
陈洁  朱广伟  许海  詹旭  朱梦圆  笪文怡  黄亚文 《环境科学》2019,40(11):4924-4931
为揭示太湖河网区不同雨强下入湖河道面源污染规律,以太湖入湖负荷最大的河道大浦河为例,通过一周年逐日高频监测水体各形态氮、磷及溶解性有机碳等营养盐情况,结合河道流量及降雨量的自动监测资料,分析了大雨、中雨、小雨及无雨等4种降雨强度下太湖河网区典型河道的流量和营养盐负荷特征.结果表明,作为太湖河网区的典型入湖河道,大浦河时常发生往复流现象,观测的365 d内,有60 d日均流量为负值,占16%;河道流量对雨强的响应较为迟缓,仅强降雨事件( 25 mm·d~(-1))下,降雨当日河道流量才显著增加;中雨期平均流量仅比无雨期高了29%,在统计上不显著.河道水体营养盐浓度在不同降雨强度下差异不显著,大雨、中雨、小雨及无雨事件下河道总氮浓度分别为(3. 00±0. 58)、(3. 34±0. 93)、(3. 55±1. 05)和(3. 37±1. 14) mg·L~(-1),小雨事件当天水体总氮浓度均值最高,而4种类型降雨事件下河道总磷含量分别为(0. 228±0. 068)、(0. 258±0. 121)、(0. 219±0. 083)和(0. 225±0. 121) mg·L~(-1),差异性也不显著,就平均值而言,中雨时河道总磷浓度最高.夏季典型降雨过程分析表明,不同雨强发生之后河道溶解性有机碳和各形态氮的浓度变化不大,但大雨之后次日河道各形态磷浓度有明显增高,持续时间为2 d,中雨后次日河道总磷和颗粒态磷有明显增高,持续时间仅为1 d,小雨后磷浓度基本无变化.大雨、中雨、小雨和无雨时总氮日负荷分别为7. 64、3. 19、3. 21和2. 62 t·d~(-1),总磷日负荷分别为0. 59、0. 26、0. 22和0. 20 t·d~(-1),受入湖流量影响,大雨期营养盐日负荷显著高于中雨及以下强度的降雨;然而,由于一年内大雨出现频次较少,大雨期氮和磷总入湖负荷占年负荷的比重不大,大雨期总氮和总磷分别入湖61. 11 t和4. 72 t,占观测周年的5. 6%和5. 8%,这与山区河道降雨负荷间的关系有着显著区别.本高频观测表明,太湖流域平原河网区河道面源污染汇集过程复杂,入湖负荷受降雨强度的影响相对较小,入湖水量是营养盐负荷的重要影响因素.本研究结果对太湖流域平原河网区湖泊的面源污染的估算及控制对策的制定具有参考价值.  相似文献   

15.
The purpose of this work is to synthesize a new type of bentonite sorbent that can simultaneously remove both organic compounds and phosphate from water. Inorganic-organic bentonites (Al-CTMAB-Bent) were synthesized by modifying bentonites with both AlCl3 and cetyltrimethyl ammonium bromide (CTMAB). Simultaneous sorption of aqueous phenanthrene and phosphate onto Al-CTMAB-Bent was examined. Removal rates of phenanthrene and phosphate from water reached 96.3% and 90.2%, respectively, at their respective initial concentrations of 1 mg/L and 5 mg/L and the added amount of Al-CTMAB-Bent was 1.25 g/L. The residual turbidity of the Al-CTMAB-Bent suspension decreased 81.4% compared to that of organobentonite suspension after a 1 h settling time. Thus, inorganic-organic bentonite can be used to treat wastewater containing both organic pollutants and phosphate. Translated from Environmental Science, 2006, 27(1): 91–94 [译自: 环境科学]  相似文献   

16.
An anaerobic-oxic (A/O) biological phosphorus removal reactor was operated to study the effect of nitrite on phosphate uptake. The phosphorus uptake profile was determined under different operating conditions. The results indicated that in addition to oxygen and nitrate (DPBNa, nitrate denitrifying phosphorus removal), to some extent, nitrite could also serve as an electron acceptor to achieve nitrite denitrifying phosphorus removal (DPBNi). The quantity and rate of phosphorus uptake of DPBNi, however, were evidently lower than that of DPBNa. The experiment results revealed that nitrite would bring toxic action to phosphate-accumulating organisms (PAOs) when NO2 -N ⩾ 93.7 mg/L. The nitrite existing in the anoxic reactor made no difference to the quantity and rate of denitrifying phosphorus removal, but it could reduce the consumption of nitrate. Moreover, the data showed that the aerobic phosphate uptake of DPBNi was lower than that of anaerobic phosphorus-released sludge in a traditional A/O process. However, there was not much difference between these two kinds of sludge in terms of the total phosphorus uptake quantity and the effluent quality. Translated from Environmental Science, 2006, 27(4): 701–703 [译自: 环境科学]  相似文献   

17.
我国东南典型侵蚀区坡地磷素流失机制模拟研究   总被引:2,自引:0,他引:2  
为了研究侵蚀区坡地坡面径流和壤中流磷素流失特征,以浙江省湖州市安吉县花岗岩风化母质上发育的红壤为研究对象进行人工模拟降雨试验.结果表明,坡面径流和壤中流中的总磷流失浓度、总磷流失量均随着降雨强度的增大而增大,随着降雨强度的增大产流初期坡面冲刷效应显现;坡面径流总磷流失量所占每场降雨总磷流失量百分比分布在51%~92%;坡面径流总磷流失浓度在整个过程中波动幅度很大;坡面径流中总磷流失浓度在坡度25°下最高,壤中流中的总磷流失浓度在坡度8°下最高;坡度8°下坡面TP流失量最大,坡面总磷流失量受坡面径流量和雨强影响极显著(p0.01);壤中流总磷流失量较小,受雨强影响极显著(p0.01);磷素流失以坡面径流流失为主,壤中流流失为辅,磷素主要以颗粒态通过坡面径流流失,以溶解态通过壤中流流失.  相似文献   

18.
采用活性污泥和去除胞外聚合物(EPS)污泥作为吸附剂,探讨污泥吸附PFOS的机制和EPS在吸附过程中的作用.结果表明,活性污泥和去除EPS污泥吸附PFOS均符合准二级动力学方程,平衡吸附量(q_e)分别为0.46 mg·g~(-1)和0.38 mg·g~(-1),化学吸附占主要作用.吸附等温线可以用Freundlich、Langmuir及Temkin方程拟合.Ca~(2+)和Cu~(2+)通过离子架桥作用促进PFOS在污泥上的吸附.活性污泥吸附去除PFOS的效果明显优于去除EPS后的污泥.傅里叶红外光谱(FTIR)和X射线光电发射光谱(XPS)分析吸附前后的污泥官能团变化,发现去除了EPS的污泥中羟基、羧基和氨基活性基团减少,而这些基团是PFOS吸附过程中参与反应的主要成分.由此可见污泥EPS中蛋白质含有的羧基和氨基活性基团为PFOS提供了吸附反应位点,EPS在吸附过程中起到至关重要的作用.  相似文献   

19.
黄河中游(渭南-郑州段)全/多氟烷基化合物的分布及通量   总被引:2,自引:2,他引:0  
本研究收集黄河中游(渭南—郑州段)表层水样品,利用高效液相色谱质谱串联的方法分析了水相和颗粒相中的28种全氟和多氟烷基化合物(PFASs).结果表明,水相和颗粒相中Σ28PFASs的含量分别为18.4~56.9 ng·L~(-1)和26.8~164ng·g~(-1)(以干重计).水相和颗粒相中以全氟己酸(PFHx A)为主要污染物,分别占总含量的27%和16%,且3H-全氟-3-(3-甲氧基丙氧基)丙酸(ADONA)、氯代多氟醚基磺酸(6∶2和8∶2 Cl-PFESA)在颗粒相均有检出,表明PFASs替代品的生产和使用逐渐增多.PFASs在水相-颗粒相中的lg Kd变化范围为2.95±0.553(PFPe A)~3.85±0.237(8∶2 FTUCA),颗粒物吸附氟调聚羧酸(FTCAs)和不饱和氟调聚羧酸(FTUCAs)的能力随碳链长度的增长而增加,全氟烷基磺酸(PFSAs)较全氟烷基羧酸(PFCAs)更容易被颗粒物吸附.黄河郑州—渭南段PFASs的通量呈现先降低后增加的趋势,表明该河段接纳了来自上游及支流的污染输入.此外,结果表明水相中的PFASs通量大于颗粒相.  相似文献   

20.
有机膨润土多次吸附模拟废水中苯酚的性能及机理   总被引:17,自引:1,他引:16  
研究了一系列有机膨润土多次吸附水中高浓度苯酚的性能及机理.结果表明,有机膨润土能够重复多次吸附水中苯酚,吸附性能较好.当多次吸附所用苯酚溶液初始浓度为1000mg/L时,3种单阳离子有机膨润土对其的吸附能力大小依次为:120 CTMAB-膨润土>120 CPC-膨润土>120 DTMAB-膨润土.在多次吸附过程中,有机膨润土对苯酚的吸附机理发生变化,由最初的表面吸附作用为主转变为分配作用为主.对CPC改性的膨润土而言,由于芳香性吡啶环的存在,苯酚被吸附到有机膨润土上后,能够产生"协同效应”,表现为随着苯酚吸附量的增大,分配系数Kp(cscw相似文献   

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