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31.
32.
三种消解方法在测定近海沉积物中Pb、 Cu、 Cd、 Hg及As的应用 总被引:6,自引:0,他引:6
常压湿式消解、高压微波消解、常压微波消解3种方法被应用于近海沉积物中Pb、 Cu、 Cd、 Hg、 As 5种重金属元素的分析. 以近海海洋沉积物标准物质为样品经3种方法消解后, 通过石墨炉原子吸收法测定Pb、 Cu、 Cd和氢化物发生原子荧光法同时测定Hg、 As. 结果表明, 样品经常压湿式消解, 其Pb、 Cu、 Cd回收率在80%~123%内而Hg、 As回收率低;经高压微波消解, 标样中Pb、 Cu、 Cd、 As回收率在84%~117%内, 对Hg测定回收率偏低;常压微波消解更适合于Cu、 Cd、 Hg、 As的消解, 其回收率在95%~121%之间而Pb回收率低于42.4%. 常压湿式消解与常压微波消解被用于大亚湾人工渔礁区沉积物样品的处理, 有较好的测定结果. 相似文献
33.
The evaluation of the use of alkaline peroxodisulfate digestion with low pressure microwave, autoclave or hot water bath heating for the determination of total phosphorus and nitrogen in turbid lake and river waters is described. The efficiency of these digestion procedures were compared to a Kjeldahl digestion procedure with sulphuric acid-potassium sulfate and copper sulfate. The final solution before digestion was 0.045 M in potassium peroxodisulfate and 0.04 M in sodium hydroxide. Procedures were evaluated by the analysis of suspensions of two reference materials, National Institute of Environmental Science, Japan, no. 3 Chlorella and no. 2 pond sediment and natural turbid waters. Best recoveries of phosphorus and nitrogen by microwave heating were obtained when solutions were digested at 95 °C for 40 min. Quantitative recoveries of phosphorus from Chlorella suspensions up to 1000 mg/l were obtained by all three heating procedures, but incomplete recoveries of nitrogen occurred above 20 mg N/l in the digested sample. Good recoveries of phosphorus and nitrogen from suspended sediment suspensions were obtained only from solutions containing <150 mg/l of suspended sediments. Recoveries of phosphorus from phosphorus compounds containing COP and CP bonds added to distilled water were quantitative (94-113%) except for polyphosphates (microwave, 34±8; autoclave, 114±6; water bath, 96±4) and aluminium phosphate (8-23%). Recoveries of nitrogen compounds containing CN bonds added to distilled water were quantitative (94-96%). The analysis of a range of natural turbid water samples by alkaline peroxodisulfate and microwave, autoclave and water bath heating gave similar total phosphorus and nitrogen results. All procedures using alkaline peroxodisulfate underestimate phosphorus concentrations at high suspended sediment concentrations (>150 mg/l) and are only suitable for the analysis of very turbid samples when the turbidity is due to organic matter (algal cells, plant detritus). Underestimation of nitrogen occurs when samples contain more than 20 mg N/l. 相似文献
34.
Two new marine sediment standard reference materials (SRMs) for the determination of organic contaminants 总被引:3,自引:0,他引:3
Wise SA Poster DL Schantz MM Kucklick JR Sander LC Lopez de Alda M Schubert P Parris RM Porter BJ 《Analytical and bioanalytical chemistry》2004,378(5):1251-1264
Two new marine sediment standard reference materials (SRMs), SRM 1941b Organics in Marine Sediment and SRM 1944 New York/New Jersey Waterway Sediment, have been recently issued by the National Institute of Standards and Technology (NIST) for the determination of organic contaminants including polycyclic aromatic hydrocarbons (PAHs), polychlorinated biphenyl (PCB) congeners, and chlorinated pesticides. Both sediment SRMs were analyzed using multiple analytical methods including gas chromatography/mass spectrometry (GC/MS) on columns with different selectivity, reversed-phase liquid chromatography with fluorescence detection (for PAHs only), and GC with electron capture detection (for PCBs and pesticides only). SRM 1941b has certified concentrations for 24 PAHs, 29 PCB congeners, and 7 pesticides, and SRM 1944 has certified concentrations for 24 PAHs, 29 PCB congeners, and 4 pesticides. Reference concentrations are also provided for an additional 58 (SRM 1941b) and 39 (SRM 1944) PAHs, PCB congeners, and pesticides. SRM 1944, which was collected from multiple sites within New York/New Jersey coastal waterways, has contaminant concentrations that are generally a factor of 10–20 greater than SRM 1941b, which was collected in the Baltimore (Maryland) harbor. These two SRMs represent the most extensively characterized marine sediment certified reference materials available for the determination of organic contaminants.Electronic Supplementary Material Supplementary material is available in the online version of this article at . A link in the frame on the left on that page takes you directly to the supplementary material. 相似文献
35.
硅胶-氧化铝层析柱-气相色谱法测定沉积物中邻苯二甲酸酯类有机物 总被引:14,自引:0,他引:14
建立了硅胶-氧化铝层析柱净化分离,GC—MS、GC—FID定性定量分析沉积物样品邻苯二甲酸酯类有机污染物Phthalate esters(PAEs)的方法。比较了Florisil、硅胶、氧化铝和硅胶-氧化铝层析柱对PAEs分离特征;优化了硅胶-氧化铝层析柱净化分离PAEs的条件。方法线性范围0.05~500μg/g,回收率75.3%~113.6%,相对标准偏差2.74%~12.2%,检出限0.29~1.2ng/g。内标法定量,应用于珠江口沉积物样品中PAEs测定,获得满意的结果。 相似文献
36.
对沱江流域金堂、简阳、内江三地河流沉积物中重金属Pb和Cd含量及其时空分布特征进行了研究,并结合与沉积物中Fe、Mn和LOI等参数的相关性对河流沉积物中Pb和Cd地球化学性质进行了初步的分析和讨论。结果表明,沱江三地沉积物中Cd、Pb含量不高,平均含量按上、中、下游次序逐渐降低;从垂向分布行为看,Cd在上游金堂地区上部含量高于下部,而中、下游两地则相反,而Pb均随着深度的增加而减少,反映了近年来人类活动所产生Pb污染的加剧;TOC、沉积物性状和上覆水体中的物化性质对于其垂向分布有着较大影响。对于深入揭示水环境中重金属的环境地球化学循环有着重要的指导意义。 相似文献
37.
气相色谱-质谱法检测沉积物中自由态与束缚态多溴联苯醚和四溴双酚-A 总被引:3,自引:1,他引:3
建立了一种同时测定沉积物中不同赋存形态的多溴联苯醚(PBDEs)和四溴双酚A(TBBPA)的分析方法.样品由等体积的丙酮和正己烷混合溶剂抽提得到自由态目标物,再通过碱性水解反应释放束缚态目标化合物.通过调节酸度(pH值)实现PBDEs和TBBPA的分离和提取.PBDEs由复合硅胶柱净化,运用气相色谱-质谱(负离子化学源)-分时段选择离子监测技术测定;TBBPA经重氮甲烷衍生化反应后由酸性硅胶柱预纯化,运用气相色谱-质谱(电子轰击源)-分时段选择离子监测技术测定.8种低溴联苯醚(BDE28,-47,-66,-100,-99,-154,-153,-183),十溴联苯醚(BDE209)和TBBPA的检出限分别为0.6~12.5 pg/g,172 pg/g,4 2 pg/g.方法具有良好的准确度和精确度,回收率均在74%~106%之间,RSD≤10%.对东江沉积物样品的分析表明,本方法能够实现不同形态的PBDEs 和TBBPA的有效检测. 相似文献
38.
中国海大陆架沉积物超细标准物质系列研制 总被引:8,自引:0,他引:8
5个中国海大陆架沉积物标准物质的原样分别取自东海和南海,样品风干后,先经球磨制备成200目的均匀粉体,再用气流磨进一步加工成超细粒度的均匀样品.采用激光粒度仪检测了样品的粒度分布,5个样品的平均粒度均小于4 μm(约800目).采用高精度的XRF检验了样品的均匀性并以高灵敏度的ICP-AES、ICP-MS相配合确定了其最小取样量(5 mg).有12个实验室参加了合作定值研究,定值组分均为60个,其中MSCS-1,2分别有50和51个组分定为标准值,MSCS-3,4,5有52个组分定为标准值.全组分百分总和分别为99.9%, 99.9%, 100.4%, 100.1%和99.7%. 相似文献
39.
土壤和沉积物石油污染现状 总被引:4,自引:0,他引:4
针对全球石油污染的现状从原油的组成、分类与对环境的潜在影响、原油中有毒有害物质的成分、石油的工业工艺流程等方面进行了论述,并着重分析了中国土壤和沉积物原油污染,对松辽盆地、济阳坳陷、塔里木盆地、渤海油区等区域污染现状作了详细介绍,对石油勘探开发中重要污染源之一——化学助剂造成的污染也作了总括. 相似文献
40.
PENG Zhaohui ZHOU Jixun & ZHANG Renhe .Institute of Acoustics Chinese Academy of Sciences Beijing China .School of Mechanical Engineering Georgia Institute of Technology Atlanta GA USA 《中国科学G辑(英文版)》2004,47(6):702-716
1 Introduction Backward scattering of sound due to sediment is the main source of shallow waterreverberation. In order to predict the reverberation or detect sediment properties frommeasured reverberation data, a reasonable in-plane bistatic backward scattering (BBS)model is essential. The scattering can be caused by the roughness of water-sediment in-terface or by inhomogeneities within the volume of sediment. A great deal of researchhas been done on sediment backscattering, most of which h… 相似文献