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1.
本文将经水蒸气二次活化的椰壳活性炭(W-AC)作为电极材料,选择1-乙基-3甲基咪唑四氟硼酸盐([EMIM]BF4)作为电解质,结果表明W-AC电极的比电容量远高于未活化的椰壳活性炭(R-AC).使用循环伏安、恒电流充放电、交流阻抗等方法研究了不同种类离子液体电解质对超级电容器电化学性能的影响.不同阴阳离子组成的离子液体作为电解质,直接影响超级电容器的电化学性能. 研究表明,由EMIM+和BMIM+阳离子与BF4-、TFSI-阴离子构成的离子液体电解质较适用于W-AC电极. 其中在[EMIM]BF4电解质中,单片电极的比电容量可高达153 F·g-1;在1-丁基-3-甲基-咪唑四氟硼酸盐([BMIM]BF4)电解质中电位窗可达3.5V,能量密度可高达57 Wh·kg-1.本研究对于构筑高性能超级电容器离子液体的选择提供参考,以满足不同应用领域需求.  相似文献   

2.
利用间接紫外毛细管区带电泳方法完成了对爆炸残留物中7种无机离子(K+,NH+4,NO-2,NO-3,SO2-4,ClO-3,ClO-4)的分离检测。阳离子测定采用的缓冲体系为10 mmol/L吡啶(pH 4.5)-3 mmol/L冠醚,K+和NH+4在2.6 min内达到基线分离,检出限分别为0.25 mg/L和0.10 mg/L(S/N=3)。阴离子测定采用的缓冲体系为40 mmol/L硼酸-1.8 mmol/L重铬酸钾-2 mmol/L硼酸钠(pH 8.6),氢氧化四甲铵为电渗流改性剂,5种阴离子在4.6 min内达到基线分离,检出限为0.10~1.85 mg/L。该方法已成功地应用于实际爆炸物样品种类的判定分析,取得了很好的结果。  相似文献   

3.
利用间接紫外毛细管区带电泳方法完成了对爆炸残留物中7种无机离子(K+,NH+4,NO-2,NO-3,SO2-4,ClO-3,ClO-4)的分离检测。阳离子测定采用的缓冲体系为10 mmol/L吡啶(pH 4.5)-3 mmol/L冠醚,K+和NH+4在2.6 min内达到基线分离,检出限分别为0.25 mg/L和0.10 mg/L(S/N=3)。阴离子测定采用的缓冲体系为40 mmol/L硼酸-1.8 mmol/L重铬酸钾-2 mmol/L硼酸钠(pH 8.6),氢氧化四甲铵为电渗流改性剂,5种阴离子在4.6 min内达到基线分离,检出限为0.10~1.85 mg/L。该方法已成功地应用于实际爆炸物样品种类的判定分析,取得了很好的结果。  相似文献   

4.
张丽媛  费旭东  邱丰  林苗 《色谱》2015,33(2):164-168
建立了离子色谱-抑制型电导检测同时测定食品级润滑油中Cl-、NO3-、SO42- 3种代表性无机阴离子的方法。样品经50%(v/v)甲醇水溶液超声提取,离心后所得下层水相用0.22 μm混合纤维过滤膜净化,以15 mmol/L KOH溶液为淋洗液,采用抑制型电导检测器进行检测,外标法定量。在上述条件下,Cl-、NO3-、SO42- 3种无机阴离子在0.10~20.00 mg/L范围内具有良好的线性关系(R2>0.999);检出限(S/N=3)为0.01~0.03 mg/kg;在1.00、5.00、10.00 mg/kg添加水平下,实际样品中3种阴离子的加标回收率为90.0%~103.6%,相对标准偏差为2.8%~5.7%。结果表明,该方法无需燃烧、灰化油相基质等繁琐耗时的前处理过程,可以快速、准确定量测定食品级润滑油中Cl-、NO3-、SO42- 3种无机阴离子的含量,适用于润滑油等油品中痕量无机阴离子的同时分离与测定。  相似文献   

5.
施超欧  姚宝龙  胡咪  陈爱连 《色谱》2016,34(10):951-955
建立了离子转换色谱与紫外检测器联用检测啤酒中无机阴离子与有机酸的新方法。在传统的离子色谱基础上引入两根离子转换柱,无机阴离子与有机酸经过两步转换,定量转换成有相同紫外响应的碘酸盐,然后用紫外检测器代替电导检测器进行定量分析。在Dionex AS11-HC阴离子色谱柱上,采用KOH梯度淋洗方式实现了12种无机阴离子与有机酸的分离。结果表明,12种无机阴离子和有机酸检出限(S/N=3)与定量限(S/N=10)分别为6.168~29.01 μg/L与20.56~66.30 μg/L;线性关系良好(r在0.9994以上),回收率为89.0%~117.0%,RSD均小于1.0%,该方法与传统的电导检测器检测结果相当。该方法简单快捷,只需采用少数标准曲线,就可以实现啤酒中无机离子与有机酸的定量测定。  相似文献   

6.
甘子琼  刘军军  唐胜利 《色谱》2018,36(3):299-302
建立了离子色谱(IC)同时测定火场爆炸残留物中9种典型阴离子(Cl-、NO2-、ClO3-、NO3-、CO32-、SO42-、S2O32-、SCN-、ClO4-)的分析方法。使用高容量阴离子交换柱IonPac AS20(250 mm×4 mm)分离,以氢氧化钾(KOH)溶液为流动相,梯度淋洗,进样量为20 μL,柱温为40℃,流速为1.20 mL/min,在25 min内完成了9种典型阴离子的分离分析。9种阴离子在各自的范围内均呈现良好的线性关系,相关系数均大于0.999。9种阴离子的平均加标回收率为92.5%~101.3%,相对标准偏差为1.9%~2.8%(n=6)。该方法简便快捷,选择性好,灵敏度高,可满足火场爆炸残留物中无机离子的分析要求。  相似文献   

7.
Natural Sea Beauty系列化妆品富含来自Dead Sea水中的矿物质,对皮肤有较好的治疗和滋养作用.本文采用毛细管区带电泳的技术,电迁移双端进样,5 mmol/L咪唑-2 mmol/L硝酸为背景电解质,以富马酸调至pH 4.1,UV间接测定法(214nm),在6min内同时检测了化妆品中的阴阳离子(K+、Na+、Ca2+、Mg2+、Cl-、Br-),与离子色谱法所得结果进行了对照.此方法可为鉴别不同品牌的化妆品提供一定的依据.  相似文献   

8.
陈爱连  丁卉  方琳美  施超欧 《色谱》2015,33(12):1333-1337
建立了一种新的二维离子色谱分析模式,应用阀切换技术并联抑制电导和脉冲安培双检测体系,同时测定Cl-、NO2-、SO42-、NO3-和葡萄糖酸根离子。第一维色谱采用Ionpac AG18+Ionpac AS18阴离子分析柱,分别以5和20 mmol/L的NaOH溶液等度淋洗,流速为1.0 mL/min,进样量为25 μL,抑制电导检测Cl-、NO2-、SO42-和NO3-。第二维色谱采用CarboPac PA1+CarboPac PA20两保护柱串联,以90 mmol/L NaOH溶液、0.8 mL/min的流速洗脱,由AG15柱分离富集葡萄糖酸根,脉冲安培检测器检测。结果表明:无机阴离子在0.1~5.0 mg/L、葡萄糖酸根在0.0856~4.2825 mg/L范围内有良好的线性关系,RSD在1.05%~1.94%之间,相关系数(R2)在0.9945以上;无机阴离子的方法检出限为0.615~2.17 μg/L,葡萄糖酸根的方法检出限为24.24 μg/L;回收率在90.3%~102.8%之间。该方法并联两种检测模式,有良好的准确度和精密度,适用于复杂样品的分离分析。  相似文献   

9.
陈小花  侯彦杰  杨丙成  艾雷 《色谱》2018,36(8):822-826
通过考察电极长度及电极间距、检测管管径及材质、激励信号频率、电压和波形等参数对信噪比的影响,研制了一种适用于常规型离子色谱系统的电容耦合非接触式电导检测器(C4D)。在抑制模式下,该检测器对常见无机阴离子(F-、Cl-、NO2-、Br-、NO3-和SO42-)的检出限(信噪比=3)为0.02~0.08 μmol/L;峰面积的相对标准偏差<1.8%(n=6);在0.1~10 μmol/L范围内上述6种无机阴离子线性关系良好,相关系数(R2)>0.999。自制C4D的主要性能参数与商品化接触式电导检测器相当。该检测器具有结构简单、成本低廉、无电极污染等优点,有利于拓展离子色谱的应用范围。  相似文献   

10.
构建一种利用梯度淋洗离子色谱技术分析西兰花中Cl-、Br-、NO2-、NO3-、PO43-和SO42-6种无机阴离子含量的方法。梯度淋洗色谱离子体系为DIONEX Ion Pac AS11-HC(4 mm×250 mm)色谱柱,流速1.0 mL/min,抑制器电流80 mA,KOH淋洗液梯度淋洗。6种阴离子线性相关系数0.9995~0.9999,相对标准偏差(RSD)<2.5%,加标回收率95.7%~104%。用于检测西兰花中无机阴离子的方法灵敏度高、回收率高、可以适用于西兰花中6种阴离子精确定量分析。  相似文献   

11.
Solutions of multiple cations in aqueous solutions at concentrations as low as 200 ppb were analyzed by capillary zone electrophoresis. Aluminum ions were cleanly separated from Li+, K+, Ca2+, Cr3+, Zn2+, CU2+, and other ions less than 6 min after injection of the solution on a 50 cm × 50 μm I.D. uncoated fused-silica capillary column at 15 kV. Indirect detection at 204 nm was carried out using a pH 2.8 background electrolyte containing 5.2 mM ephedrine as a UV-absorbing co-ion and 4.7 mM -hydroxyisobutyric acid as a completing counter ion. Mobilities for Al3+ and 14 other complexed cations were determined for this electrolyte.  相似文献   

12.
Ion-exclusion chromatography–cation-exchange chromatography was developed for the simultaneous separation of common inorganic anions and cations (Cl, NO3 and SO42−; Na+, NH4+, K+, Mg2+ and Ca2+) on a weakly acidic cation-exchange column by elution with weak acid. Generally, the resolution among these monovalent cations was only moderate, thereby hindering the determination of these analytes in natural-water samples. Therefore, 18-crown-6 was added to the eluent to improve the resolution. A good separation of these anions and cations on a weakly acidic cation-exchange column was achieved in 30 min by elution with 5 mM tartaric acid/6 mM 18-crown-6/methanol–water (7.5:92.5). The ion-exclusion chromatography–cation-exchange chromatography method developed here was successfully applied to the separation of major anions and cations in an environmental water sample.  相似文献   

13.
A monitoring system consisting of a portable-type conductimetric ion-exclusion–cation-exchange chromatographic (CEC) analyzer and a meteorological satellite data analyzer has been investigated for the evaluation of the effects of acid precipitation on natural and urban environments in East Asia. The portable ion-exclusion–CEC analyzer uses a polymethacrylate-based weakly acidic cation-exchange resin column in the H+-form and a weak-acid eluent (tartaric acid–methanol–water) and is applied for the simultaneous determination of anions (SO42−, NO3, and Cl) and cations (Na+, NH4+, K+, Mg2+, and Ca2+) in precipitation transported from mainland China to central Japan, as mapped by the meteorological satellite data analyzer. Linear calibration graphs of peak area versus concentration for anions and cations were observed in the concentration range 0–1.0 mM for the anions and 0–0.5 mM for the cations. Detection limits at a signal-to-noise ratio of 3 were in the range 5.18–12.1 ppb for the anions and 6.58–16.5 ppb for the cations. The practical utility of this monitoring system is presented.  相似文献   

14.
The retention and detection behavior of common mono- and divalent cations (M+, alkali metal (Li+, Na+, K+, Rb+, Cs+) and ammonium ions (NH4+); M2+, alkaline earth metal ions (Mg2+, Ca2+, Sr2+, Ba2+) was examined using an ODS column (150×4.6 mm I.D.) and conductivity (CD)/UV detection. The results obtained were as follows: (1) for M+, the mobile phase, 0.1 mM sodium dodecyl sulphate (SDS)+10 mM HNO3 and indirect CD detection were effective. (2) Addition of Ce(III) in the mobile phase accelerated the elution of both M+ and M2+. The separation of above 10 cations on an ODS column was achieved for the first time without any coelution of cations and disturbance by system peak. Addition of higher SDS resulted in good separation of M+ and M2+ with longer retention times. CD detection was possible for M+ and M2+ and UV detection for M2+. (3) For M2+, the mobile phase, 0.8 mM Ce(III)+0.1 mM SDS+1 mM HNO3 and indirect UV detection were effective. The IC methods were applied to real samples.  相似文献   

15.
建立了一种膜处理-离子交换色谱测定碳酸钡中痕量杂质阴离子(F-、SO42-和NO3-)的方法。碳酸钡是一种难溶于水的固体,因此选用酸对其进行溶解。为了减少酸根离子的影响,利用阳离子膜只能通过阳离子而阻碍阴离子交换的特点,用质量分数为7%的盐酸溶解阳离子交换膜内的碳酸钡样品,稀释100倍,过0.22 μ m滤膜,进样分析,进样体积为25 μ L。经流速为1 mL/min的20 mmol/L KOH淋洗液淋洗,目标离子经过Ion Pac AG11-HC保护柱(50 mm×4 mm)和Ion Pac AS11-HC阴离子交换色谱柱(250 mm×4 mm)进行分离,最后由抑制电导进行检测。在优化的色谱条件下,该方法在0.01~5.00 mg/L范围内线性关系良好,相关系数R2≥0.9996。相对标准偏差(RSD)为1.87%~2.19%,检出限(S/N=3)为1.37~9.45 μ g/L。将该方法应用于实际样品的检测中,得到样品的加标回收率为84.0%~106.2%。该方法实现了固体碳酸钡中杂质阴离子含量的测定,为水不溶性固体物质中的离子检测提供了依据,具有较好的应用前景。  相似文献   

16.
The effect of ions on the structure of water is discussed in terms of results for ionic hydration as derived from neutron diffraction isotopic substitution experiments. Results are presented for alkali ions (Li+, Na+ and K+), alkaline earth ions (Mg2+, Ca2+ and Sr2+) and for the anions Cl, ClO4) and NO3, from which it is inferred that the water structure is disrupted more by cations with higher charge density.  相似文献   

17.
A new capillary electrophoretic approach for simultaneous separation of fast anions and cations is demonstrated. Indirect UV detection at 214 nm in conjunction with electromigration sampling from both ends of the capillary was developed. Two electrolyte systems based on imidazole-nitrate and copper(II)-ethylenediamine-nitrate were investigated for the simultaneous separation of chloride, sulphate, hydrocarbonate, potassium, ammonium, calcium, sodium and magnesium ions. Experimental parameters that were evaluated included a nature of UV chromophore, pH of electrolyte, a nature of complexing agent. The method permits the excellent separation of three anions and five cations in only 4 min using electrolyte system containing 2.5 mmol l−1 Cu(NO3)2, 5 mmol l−1 ethylenediamine and 1 mmol l−1 fumaric acid at pH 8.5 adjusted with tetraethylammonium hydroxide.  相似文献   

18.
Based on a new biscarboxyl-functionalized Schiff base ligand 1,2-cyclohexanediamino-N,N'-bis[3-methoxyl-5-(p-carboxyl-phenylazo)] salicylidene(H4L), four polymers,[(CH3)2NH2]2·[Mn3(L)2(H2O)4]·2DMF(CP1),[Fe2(L)(H2O)(DMF)](CP2),[(CH3)2NH2]·[Cu(HL)]·H2O(CP3) and[Ni2(L)(teta)]·2DMF·H2O(CP4), have been synthesized(teta=5,5,7,12,12,14-hexamethyl-1,4,8,11-tetraazacyclotetradecane). In CP1, both of the internal[N2O2] pocket and the external carboxylate groups of L4- anion are ligated by Mn2+ ions, and the structure displays a layer. In CP2, the Fe2+ cations are linked by L4- anions to form a binuclear double chain. CP3 displays a[Cu2(HL)2] dimer. In CP4, the Ni2+ ions are connected by L4- anions to form a chain. The structures are further linked by hydrogen bonds to form 2D or 3D supramolecular architectures, respectively. CP1 exhibits adsorption ability to three organic dyes.  相似文献   

19.
Application of capillary isotachophoresis (CITP) for the analysis of water extracts of the dust samples collected in different periods in air-filtration devices in Prague car traffic tunnels and in Parisian metro station is presented. The extracts were analyzed in cationic mode with a leading electrolyte (LE) of 10 mM KOH, 25 mM acetic acid, pH 4.4, and a terminating electrolyte (TE) of 10 mM β-alanine, adjusted to pH 4.4 with acetic acid, and in anionic mode with LE 10 mM HCl, 20 mM histidine, pH 5.8 and TE 10 mM 2-(N-morpholino)ethanesulphonic acid, pH 3.7. Extracted amounts of UV-absorbing substances, including pollen allergens and organic pollutants, the number of the found components and concentrations of some inorganic ions (e.g. Cl, K+, Na+, Ca2+) in the dust samples were determined. It was found that the extracted amounts of anionic components and their number were much higher than those of cationic components. Significant differences have been found in the analyses of the extracts of different origin. Much more material and more components were present in the extracts of samples from the pollen-rich period than from the pollen-free period, especially in anionic CITP mode.  相似文献   

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