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991.
天然水体中颗粒物吸附抗生素特征分析 总被引:6,自引:2,他引:4
为了研究抗生素在天然水体中的固、液相分配规律,分析了水体中颗粒物对7种典型抗生素的吸附特征,并通过环境扫描电镜测定了颗粒物的表面结构及元素组成.同时,采用高效液相色谱与质谱串联(HPLC-MS/MS)的检测方法对抗生素进行测定,以Simeton为内标物,得到抗生素的检出限为15~25 ng·L-1,定量下限为50~83 ng·L-1.连续吸附实验结果表明:初始的20 min颗粒物对抗生素的吸附比较快,达到过量吸附;吸附达到过饱和后会进行10 min的解吸反应;实验进行30 min后,吸附与解吸过程的变化会趋于稳定,2 h后达到吸附平衡.抗生素的平衡吸附量在1616~15568 ng·g-1之间,其吸附量及吸附曲线的变化与抗生素的pKa值密切相关. 相似文献
992.
滇池表层沉积物对磷的吸附特征 总被引:5,自引:0,他引:5
在室内模拟条件下,从滇池表层沉积物对磷的吸附动力学与热力学两个角度出发,研究了滇池沉积物对磷的吸附特征,同时探讨了不同磷形态对磷吸附特性的影响,结果表明:1滇池不同形态磷含量顺序为:有机磷钙(O-P)钙结合态磷(Ca-P)金属氧化物结合态磷(Al-P)残渣态磷(Res-P)可还原态磷(Fe-P)弱吸附态磷(NH4Cl-P);2沉积物对磷的吸附动力学过程分为2个阶段,即快吸附和慢吸附阶段.快吸附阶段主要发生在0~0.5 h内,而慢吸附阶段主要发生在0.5~4 h.滇池沉积物对磷的吸附过程主要在4 h内完成.3外海北部上覆水磷酸盐(SRP)浓度低于沉积物中磷的吸附/解吸平衡浓度(EPC0),可初步判断该区域沉积物有向上覆水体释放磷的风险.4不同区域沉积物磷的最大吸附量(Qmax)和总最大吸附量(TQmax)均以外海南部最大.5沉积物本底吸附态磷含量(NAP)与钙结合态磷(Ca-P)呈显著正相关关系(R2=0.5139,p0.05),而其他吸附特征参数与磷形态之间相关性均不显著.6与洱海、太湖等湖泊相比,滇池沉积物磷的本底吸附态磷(NAP)和最大吸附量(Qmax)均处于较高水平,磷污染较为严重. 相似文献
993.
The occurrence of antibiotics in the environment has recently raised serious concerns regarding their potential threat to human health and aquatic ecosystem. A new magnetic nanocomposite, Fe304@C (Fe304 coated with carbon), was synthesized, characterized, and then applied to remove five commonly-used sulfonamides (SAs) from water. Due to its combinational merits of the outer functionalized carbon shell and the inner magnetite core, Fe3O4@C exhibited a high adsorption affinity for selected SAs and a fast magnetic separability. The adsorption kinetics of SAs on Fe304 @ C could be expressed by the pseudo second-order model. The adsorption isotherms were fitted well with the Dual-mode model, revealing that the adsorption process consisted of an initial partitioning stage and a subsequent hole-filling stage. Solution pH exerted a strong impact on the adsorption process with the maximum removal efficiencies (74% to 96%) obtained at pH 4.8 for all selected SAs. Electrostatic force and hydrogen bonding were two major driving forces for adsorption, and electron-donor-acceptor interactions may also make a certain contribution. Because the synthesized Fe304@C showed comprehensive advantages of high adsorptivity, fast magnetic separability, and prominent reusability, it has potential applications in water treatment. 相似文献
994.
Insights from the adverse effect of humic acid(HA) on arsenate removal with hydrous ferric oxide(HFO) coprecipitation can further our understanding of the fate of As(V) in water treatment process. The motivation of our study is to explore the competitive adsorption mechanisms of humic acid and As(V) on HFO on the molecular scale. Multiple complementary techniques were used including macroscopic adsorption experiments, surface enhanced Raman scattering(SERS), extended X-ray absorption fine structure(EXAFS) spectroscopy, flow-cell attenuated total reflectance Fourier transform infrared(ATR-FTIR) measurement, and charge distribution multisite complexation(CDMUSIC) modeling. The As(V) removal efficiency was reduced from over 95% to about 10% with the increasing HA concentration to 25 times of As(V) mass concentration. The SERS analysis excluded the HA-As(V) complex formation. The EXAFS results indicate that As(V) formed bidentate binuclear surface complexes in the presence of HA as evidenced by an As-Fe distance of 3.26–3.31 ?. The in situ ATR-FTIR measurements show that As(V) replaces surface hydroxyl groups and forms innersphere complex. High concentrations of HA may physically block the surface sites and inhibit the As(V) access. The adsorption of As(V) and HA decreased the point of zero charge of HFO from 7.8 to 5.8 and 6.3, respectively. The CD-MUSIC model described the zeta potential curves and adsorption edges of As(V) and HA reasonably well. 相似文献
995.
A series of calcined carbonate layered double hydroxides (CLDHs) with various metal compositions and different M^2+/M^3+ ratios were prepared as adsorbents for perchlorate. Adsorption isotherms fit Langmuir model well, and the adsorption amount followed the order of MgA1-CLDHs 1〉 MgFeCLDHs 〉〉 ZnA1-CLDHs. The isotherms of MgA1-CLDHs and MgFe-CLDHs displayed a two-step shape at low and high concentration ranges and increased with an increase in the M^2+/M^3+ ratio from 2 to 4. The two-step isotherm was not observed for ZnA1-CLDHs, and the adsorption was minimally affected by the M^2+/M^3+ ratio. The LDHs, CLDHs and the reconstructed samples were characterized by X-ray diffraction, SEM, FT-IR and Raman spectra to delineate the analysis of perchlorate adsorption mechanisms. The perchlorate adsorption of MgA1-CLDHs and MgFe-CLDHs was dominated by the structural memory effect and the hydrogen bonds between the free hydroxyl groups on the reconstructed-LDHs and the oxygen atoms of the perchlorates. For ZnAI-CLDHs, the perchlorate adsorption was controlled by the structural memory effect only, as the hydroxyl groups on the hydroxide layers preferred to form strong hydrogen bonds with carbonate over perchlorate, which locked the intercalated perchlorate into a more confined nano-interlayer. Several distinct binding mechanisms of perchlorate by CLDHs with unique M^2+ ions were proposed. 相似文献
996.
Athit Phetrak Jenyuk Lohwacharin Hiroshi Sakai Michio Murakami Kumiko Ogum Satoshi Takizawa 《环境科学学报(英文版)》2014,26(6):1294-1300
Anion exchange resins (AERs) with different properties were evaluated for their ability to remove dissolved organic matter (DOM) and bromide, and to reduce disinfection by-product (DBP) formation potentials of water collected from a eutrophic surface water source in Japan. DOM and bromide were simultaneously removed by all selected AERs in batch adsorption experiments. A polyacrylic magnetic ion exchange resin (MIEX) showed faster dissolved organic carbon (DOC) removal than other AERs because it had the smallest resin bead size. Aromatic DOM fractions with molecular weight larger than 1600 Da and fluorescent organic fractions of fulvic acid- and humic acid-like compounds were efficiently removed by all AERs. Polystyrene AERs were more effective in bromide removal than polyacrylic AERs. This result implied that the properties of AERs, i.e. material and resin size, influenced not only DOM removal but also bromide removal efficiency, MIEX showed significant chlorinated DBP removal because it had the highest DOC removal within 30 rain, whereas polystyrene AERs efficiently removed brominated DBPs, especially brominated trihalomethane species. The results suggested that, depending on source water DOM and bromide concentration, selecting a suitable AER is a key factor in effective control of chlorinated and brominated DBPs in drinking water. 相似文献
997.
为考察C60纳米晶体颗粒和Cu2+复合体系的生物毒性,本文以小鼠腹腔巨噬细胞RAW264.7作为受试对象,研究了C60纳米晶体颗粒物(n C60)和Cu2+对RAW 264.7的复合毒性影响.结果表明,当单独暴露n C6024 h,n C60浓度为6.6 mg·L-1时,细胞活性降低了45%,n C60浓度为9.9 mg·L-1时,细胞活性降低了70%,表现出剂量-毒性效应和时间-毒性效应.水中出现Cu2+可以降低n C60的细胞毒性,当Cu2+浓度为2 mg·L-1,n C60浓度为6.6 mg·L-1时,细胞的活性降低至25%,当Cu2+浓度为5 mg·L-1,n C60浓度为9.9 mg·L-1时,细胞的活性下降至15%.研究表明,n C60表面能够吸附Cu2+,并且吸附符合Langmuir吸附等温模型.n C60纳米晶体颗粒表面对Cu2+的吸附,可能是n C60对细胞毒性降低的重要原因. 相似文献
998.
Zn2+对铁氧化物吸附苄嘧磺隆的影响 总被引:1,自引:0,他引:1
研究2种人工合成的铁氧化物对磺酰脲类除草剂--苄嘧磺隆(bensulfuron-methyl,BSM)的吸附,以及Zn2 对供试样品吸附苄嘧磺隆的影响.实验结果表明,用Langmuir、Freundlich、Temkin等方程对供试样品加入Zn2 后吸附BSM的数据进行了拟合,发现供试样品吸附苄嘧磺隆的等温曲线较好地符合Freundlich方程.加入Zn2 后,铁氧化物吸附苄嘧磺隆的量较未加Zn2 有较大幅度的增加,但在苄嘧磺隆的平衡质量浓度较低(<4 mg/L)时,氧化物吸附苄嘧磺隆的量不随Zn2 浓度的增加而增加;在苄嘧磺隆的平衡质量浓度较高(>6 mg/L)时,氧化物吸附苄嘧磺隆的量随Zn2 浓度的增加而增加.这可能是Zn2 和苄嘧磺隆被吸附时存在竞争和协同交互作用的结果. 相似文献
999.
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
1000.
原子力显微观测新生态水合二氧化锰与天然有机物的微观吸附形貌 总被引:2,自引:0,他引:2
采用云母片吸附的方式,较好地捕捉到了新生态水合二氧化锰的微观结构,并采用轻敲模式下的原子力显微成像技术,对其吸附天然有机物(NOM)前后的微观形貌进行了观测.与陈化2 h后的水合二氧化锰相比,新生态水合二氧化锰呈现出不定形的穿孔层状结构(厚度仅为0~1.75 nm)和球形颗粒结构,具有大的比表面积和附着能力.当向NOM中加入1 mmol/L新生态水合二氧化锰后,NOM分子的吸附形貌由松散分布的扁平粒状结构(吸附高度为5~8.5 nm)转变为密集分布、水平尺寸均匀的球形结构,表明了NOM分子容易以水合二氧化锰为吸附中心包裹在其表面.从直观上进一步证实了新生态水合二氧化锰的除污染效能,为高锰酸盐的预氧化助凝机理提供了有力的依据. 相似文献