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1.
在研究消除水负峰的基础上,建立离子色谱法测定水中F–,Cl–,NO2–,H2PO4–,Br–,NO3–,SO42–7种阴离子的方法。经实验确定淋洗液为4.5 mmol/L NaHCO3–4.0 mmol/L Na2CO3,淋洗液流量为1.0 mL/min,柱箱温度为35℃。在底液中加入与淋洗液同浓度的Na2CO3–NaHCO3可有效消除水负峰。该方法对7种阴离子的检出限为0.004~0.034 mg/L,测定结果的相对标准偏差为0.69%~3.57%(n=6),加标回收率为95%~105%。该法能有效消除水负峰及其对F–测定的影响,操作简便、测定结果准确可靠,适用于水中F–、Cl–等7种阴离子的测定。  相似文献   

2.
研究了毛细管离子色谱法检测饮用纯净水、矿物质水及天然矿泉水中的7种无机阴离子(F–,Cl–,Br–,NO2–,NO3–,PO43–,SO42–)含量的方法。实验采用Ion Pac AS19 Capillary阴离子交换色谱柱(250 mm×0.4 mm,Thermo Fisher),以KOH溶液为淋洗液。测定7种阴离子的线性范围F–为10~1 000μg/L,Cl–为15~1 500μg/L,Br–,NO2–,NO3–为50~5 000μg/L,PO43–,SO42–为75~7 500μg/L,线性相关系数除PO43–为0.998外,均大于0.999,检出限为0.001~0.1μg/L,各离子加标回收率在94.53%~101.1%之间。用该法对实际水样进行测定,测定结果的相对标准偏差小于5%(n=3)。该方法简单实用,适用于饮用水中常见阴离子的分析测定。  相似文献   

3.
建立了饮用水中11种无机阴离子的离子色谱测定法。采用ISC–2100型离子色谱仪测定饮用水中的F–,S2–,Br O3–,Cl–,NO2–,NO3–,Cl O2–,Cl O3–,I–,SO42–,PO43–11种无机阴离子。水样过0.22μm滤膜后,经Ion Pac AS19离子色谱柱分离,用KOH溶液梯度洗脱,流量为1.0 m L/min,电导检测器检测,外标法定量。11种阴离子的质量浓度与色谱峰面积在测定范围内呈良好的线性关系(r≥0.999 2),检出限为0.000 7~0.005 mg/L,相对标准偏差为0.2%~4.9%(n=6),加标回收率为87.0%~104.8%。方法简便、快速,精密度和准确度高,适合于饮用水中11种无机阴离子的同时测定。  相似文献   

4.
建立了电导检测–离子色谱法同时测定生活饮用水中F–,Cl–,SO42–,NO3–的方法。选择30 mmol/L Na OH溶液为淋洗液,流量为1.40 m L/min,检测器电流为106 m A。F–的线性范围为0.15~2.0 mg/L,Cl–,SO42–,NO3–的线性范围为3.00~40.0 mg/L,4种离子的线性相关系数均大于0.999 5。F–,Cl–,SO42–,NO3–的方法检出限分别为0.02,0.13,0.14,0.02 mg/L,加标回收率在95.2%~103.0%之间。对环境标准204715进行了平行测试,各阴离子测定值均在标准值的不确定度范围内,测定结果的相对标准偏差小于2%(n=6)。该方法灵敏、准确、快速,可用于生活饮用水中F–,Cl–,SO42–,NO3–的同时测定。  相似文献   

5.
建立离子色谱梯度淋洗抑制电导法测定电厂水中有机酸和无机阴离子的方法。选用Ion Pac AG11–HC(50 mm×4 mm)阴离子保护柱和Ion Pac AS11–HC(250 mm×4 mm)阴离子分析柱对样品进行分离,以氢氧化钾溶液梯度淋洗,自再生抑制电导检测器检测,同时测定电厂水中的有机酸和无机阴离子。F–,Cl–,NO2–,Br–,NO3–的线性范围为0.005~2 mg/L,CH3COO–,HCOO–,SO42–,PO43–的线性范围为0.01~5 mg/L,各组分线性相关系数为0.998 9~0.999 3,检出限为0.122~0.989 ng/m L,测定结果的相对标准偏差小于2.0%(n=7),样品加标平均回收率为97.9%~101.7%。该方法操作简便,实用性强,可以用于电厂水中有机酸和无机阴离子的检测。  相似文献   

6.
离子色谱法检测烟叶中的NO3-、NO2-、Cl-   总被引:8,自引:1,他引:8  
研究了离子色谱法检测烟叶中阴离子的方法。采用美国Dionex公司DX-500型离子色谱仪,以3.5mmol/L Na2CO3-1.0mmol/L NaHCO3作为淋洗液,流速为1.2mL/min,测定烟叶中的NO3^-、NO2^-、Cl^-等阴离子含量。各种离子在检测条件下有很好的线性,相关系数r=0.9986-0.9997,NO3^-、NO2^-和Cl^-的检出限分别为0.200、0.125和0.064μg/mL。  相似文献   

7.
采用离子色谱法测定降水中的阴阳离子。F–,Cl–,NO2–,NO3–,SO42–,PO43–6种阴离子的检出限在0.002~0.015 mg/L之间,Na+,NH4+,K+,Mg2+,Ca2+5种阳离子的检出限在0.010~0.025 mg/L之间。阴离子加标回收率在88.4%~109%之间,相对标准偏差小于5%;阳离子加标回收率在85.0%~112%之间,相对标准偏差小于7%。用离子色谱法测定降水中的阴阳离子,操作简单、快捷,灵敏度高。  相似文献   

8.
建立了一种固相萃取-阴离子交换色谱-抑制型电导检测的分析方法,同时测定合成硝酸异辛酯(柴油十六烷值改进剂)反应后残留的混酸(硝酸和硫酸)的含量。样品经过Bond Elut C18OH固相萃取小柱萃取净化后,以1.0m L/min的流速,经Shim-pack IC-SA2阴离子交换分析柱(4.0 mm i.d×250mm,9μm)分离,淋洗液为1.8 mmol/L Na2CO3-1.7 mmol/L Na HCO3混合液,进行等度洗脱,并用外标法进行定量分析。硝酸和硫酸分别在0.3~9 mg/L和12~120 mg/L范围内呈良好的线性关系,相关系数分别为0.999和0.996;加标回收率分别为90.0%~101.43%和94.25%~102.4%,检出限为0.01 mg/L和0.05 mg/L,相对标准偏差RSD(n=6)小于3.0%。  相似文献   

9.
抑制型离子色谱测定纳米金刚石粉末表面吸附的阴离子   总被引:1,自引:0,他引:1  
杨海军  丁明玉 《分析化学》2002,30(12):1497-1500
采用抑制型离子色谱法,以NaHCO3/Na2CO3作流动相,测定了纳米金刚石粉末表面吸附的F^-、Cl^-、SO4^2-、NO3^-等阴离子的浓度,研究了淋洗液浓度对离子保留的影响以及样品处理中超声洗脱分散时间对测定结果的影响。适宜的流动相为0.84mmol/L NaHCO3 0.9mmol/L Na2CO3;超声洗脱分散时间应在10min以上。在此流动相条件下测定了上述6种阴离子的检出限及其它定量参数。方法应用于纳米金刚石粉末试样的分析,结果良好。  相似文献   

10.
离子色谱法同时测定大气降水中的5种阴离子   总被引:1,自引:0,他引:1  
以保留时间定性、峰面积外标法定量,建立了离子色谱同时测定大气降水中F–,Cl–,NO2–,NO3–,SO42–5种阴离子的分析方法。结果表明,5种阴离子标准曲线线性相关系数均大于0.999 8,检出限(3s/k)在0.000 3~0.006 6 mg/L之间。F–,Cl–,NO2–,NO3–,SO42–测定结果的相对标准偏差(n=10)分别为1.70%,2.46%,9.30%,0.73%,0.67%。用该方法对水样进行测定并进行加标回收试验,5种阴离子加标回收率在91.2%~102.7%之间。该方法灵敏度高,简便、快速,能满足大气降水中阴离子分析的要求。  相似文献   

11.
崔博雅  袁振东 《化学教育》2021,42(11):103-108
在古代哲学中,水被视为一种物质本原。17世纪化学学科形成后,水被定义成一种化学元素。18世纪的化学革命中,水被发现是氢氧化合物。19世纪原子分子论的创立,使水的概念得到微观表征。至20世纪,重水的发现和干水的发明使水的概念有了新的发展。总之,水的概念的发展史,反映了化学思想的发展和科学技术的进步,对化学研究和化学教育均有重要的启示。  相似文献   

12.
Quantum chemical computations using both density functional theory (B3LYP functional) and wavefunction (MP2 and CCSD(T)) methods, with the 6-311++G(3df,2p) and aug-cc-pVnZ (n = D,T,Q) basis sets, in conjunction with a polarizable continuum model (PCM) method for treating structures in solution, were carried out to look again at a series of small negatively charged water species [(H2O)n]•–. For each size n of [(H2O)n]•– in aqueous solution with n = 2, 3, and 4, two distinct structural motifs can be identified: a classical water radical anion formed by hydrogen bonds and a molecular pincer in which the excess electron is directly interacting with H atoms. In aqueous solution, both motifs have comparable energy content and likely coexist and compete for the ground state. Some water anion isomers can dissociate when interaction with a water molecule, [(H2O)n]•– + H2O → H(H2O)m + OH(H2O)nm, through successive hydrogen transfers with moderate energy barriers. This reaction can also be regarded as a water-splitting process in which the H transfers involved take place mainly within a water trimer, whereas other water molecules tend to stabilize transition structures through microsolvation rather than direct participation. Calculated absolute rate constants for the reversed reaction H(H2O)2 + OH(H2O)2 → [(H2O)4]־ + H2O with both H and D isotopes agree well with the experimentally evaluated counterpart and lend a kinetic support for the involvement of a tetramer unit.  相似文献   

13.
The freezable water contents of samples obtained from previously chilled semimembranous muscle of middle-aged beef carcasses after a 24 h cooling period a room at in 5±1C were determined by differential scanning calorimetry (DSC) at –5, –10, –15, –20, –30, –40, –50 and –65C. This was accomplished by freezing the samples at the above-mentioned temperatures, followed by thawing to 35C, and measuring the melting peaks of freezable water. The areas of these peaks were determined by using the peak integration method programs through a computer linked to the DSC, and they were then used to determine the latent heat of melting (H m) in kJ kg–1 at each freezing temperature. The resultant latent heat of melting per sample was divided by the latent heat for pure water to determine the amount of freezable water present in these samples. This amount of freezable water was divided by the total water content of the meat sample to determine the percentage of freezable water in the sample. The percentage of freezable water was subtracted from 100 to determine the percentage of bound water present in the sample.  相似文献   

14.
The differences in bound water content of beef semimembranous muscle samples obtained from previously chilled (24 h at +4°C) middle-aged beef carcasses were determined by the use of DSC. Initially, samples obtained from fresh, unprocessed meat were frozen at –40, –50 or –65°C to determine their melting peaks for freezable water (free water) content with the use of DSC. The samples were then subjected to an environment with an ambient temperature of –30, –35, –40 or –45°C, with no air circulation, or with an air circulation speed of 2 m s–1, until a thermal core temperature of –18°C was attained; this was followed by thawing the samples until a thermal core temperature of 0°C was reached. This process was followed by subjecting the samples to the ambient temperatures mentioned above, to accomplish complete freezing and thawing of the samples, with DSC, and thereby determination of the freezable water contents, which were then used to determine the peaks of melting. The calculated peak areas were divided by the latent heat of melting for pure water, to determine the freezable water contents of the samples. The percentage freezable water content of each sample was determined by dividing its freezable water content by its total water content; and the bound water content of each sample was determined by subtracting the percentage free water content from the total. In view of the fact that the free water content of a sample is completely in the frozen phase at temperatures of –40°C and below, the calculations of free and bound water contents of the samples were based on the averages of values obtained at three different temperatures.  相似文献   

15.
This paper describes a quantitative technique for the determination of organic constituents in Fischer-Tropsch by-product waters. Temperature-programmed gas chromatography on derivatized bonded polar capillary columns provides the required separation that permits reliable quantitation of individual compounds. A preliminary combined gas chromatographic–mass spectrometric survey to identify the components present in Fischer-Tropsch by-product waters is presented. The elution order of 58 identified components is tabulated. Components identified in a typical Fischer-Tropsch by-product water include C1–C9 linear and branched alcohols, C3? C8 ketones, C2? C6 carboxylic acids, and C2? C4 linear aldehydes.  相似文献   

16.
One to three endothermal peaks atributted to melting of bulk and interfacial water were observed by DSC in the regenerated cellulose — water system. The profiles of thermal effects depend on water content, time of conditioning, film pretreatment and the conditions applied during the preceding freezing-thawing cycles. The occurrence might be deduced of melting-crystallisation processes. A large amount of non-freezable strongly bounded water was also detected. Although cellulose absorbs water quickly after immersion, the structural changes consisting on ordering of polymer fraction occur during further conditioning due to increase in strength of water binding. Using the membranes in the separation module at 90°C causes weakening of these bonds. Differences between interaction of particular cellulose films with water can be detected during the first, the second and the third heating. This revised version was published online in July 2006 with corrections to the Cover Date.  相似文献   

17.
18.
The effects of radiofrequency (RF) (1–4) and magnetic fields (5–9) on the behavior of aqueous solutions and suspensions have been a popular subject in recent years. The mechanism of the magnetic “water memory” effect, though, is still largely unknown (5). In this work, we present evidence that the primary “receptor” of the electromagnetic radiation is a gas/liquid interface. Gas can be either already present in water or produced by the effects of electromagnetic fields. Perturbed gas/liquid interfaces require hours to equilibrate. Certain RF and magnetic signals also produce reactive oxygen and hydrogen species (superoxide, hydrogen peroxide, hydrogen, atomic hydrogen). The perturbed gas/liquid interface modifies the hydrogen bonding networks in water and also the hydration of ions and interfaces. Careful outgassing removes all of the effects of the electromagnetic fields, including the magnetic memory effect. The amplitude of the applied field influences the observed effects. Different amplitudes of RF radiation perturb the interfacial water in different ways and consequently affect the behavior of colloids and ions in specific manners. For instance, the bulk and template precipitation of calcium carbonate, zeta potentials of suspended colloids, rate of dissolution of colloidal silica, and attachment of colloidal silica to metal surfaces are modified in specific ways with the low amplitude or high amplitude RF treatments described in this paper. The solubility/diffusivity of gas species is also modified in a different manner, and it is probably at the core of the specificity of the RF amplitude effects.  相似文献   

19.
氢气以其清洁无污染、燃烧值高等优点成为未来最具潜力的可再生能源之一,而清洁生产氢气的最佳选择之一即为裂解水. 利用太阳能模拟光合作用实现水的全分解产生氢气和氧气是目前最为理想的能源转化方式,并且已经引起了众多研究者的关注. 水分解的半反应之一--水氧化反应由于其过程复杂,一直是制约水分解的瓶颈. 所以寻找高效、稳定的水氧化催化剂便成为了突破该瓶颈的关键. 多金属氧酸盐是一类以前过渡金属氧簇为基本单元形成的多金属氧簇化合物. 由于多金属氧酸盐在物理、化学性质方面具有无法比拟的特性,使得其在催化、药物、纳米科技和材料科学等方面已被广泛地应用. 多金属氧酸盐的全无机配体可很好地抵御水氧化反应的强氧化性环境,故将其作为水氧化催化剂越来越引起研究者们的注意,并且已有多种多金属氧酸盐被设计为水氧化催化剂. 本文详细介绍了各种不同过渡金属取代的多金属氧酸盐水氧化催化剂的研究进展.  相似文献   

20.
聚合氯化铝的制备及在微污染水处理中的应用   总被引:1,自引:0,他引:1  
用酸溶法制备聚合氯化铝,对合成产品进行红外光谱分析,并应用于微污染原水的处理。处理微污染原水结果表明:当投加量为40.0 mg/L,pH值为6.0~9.0时,剩余浊度达到1.0NTU以下,总有机碳(Total Or-ganic Carbon,TOC)去除率达到41.2%。对比试验结果表明自制的聚合氯化铝的除浊效果优于一些常见工业聚合氯化铝。  相似文献   

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