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Gas chromatography with nitrogen phosphorus detector (GC-NPD) was applied to the simultaneous determination of 15 organophosphorus and 6 organonitrogen pesticides residues in Angelica sinensis. The pesticides were extracted by microwave-assisted extraction (MAE) and ultrasound-assisted extraction (UAE) techniques, respectively. The experimental variables were optimized through orthogonal array experimental design. Cleanup of extracts was performed with column chromatography using florisil and neutral aluminum as the sorbents. The determination of pesticides in the final extracts was carried out by GC-NPD. Under optimized conditions, the average recoveries obtained from MAE and UAE are in the range of 75.1–129% and 70.6–129%, respectively, and the relative standard deviations of MAE and UAE were 3.1–10.6% and 1.0–17.8%, respectively.  相似文献   
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本文阐述了石油地质体中有机氮化合物的基本地球化学性质、分布与检测方法,以及可能的成因机制,浅析了此类化合物的研究意义,旨在介绍有机氮化合物的研究现状及其在油藏地球化学中的应用。  相似文献   
3.
采用污泥活性炭(SAC)、TiO2/SAC、Fe3O4/SAC作为敏化剂,结合微波处理技术对污泥进行了预处理,通过分析滤液中COD、DNA、氮、磷、有机物的含量及组分,探索微波+敏化剂的最佳处理条件.SAC负载TiO2和Fe3O4后强化了其对电磁波的介电损耗和磁滞损耗,tan δε分别增加了1.8和1.3倍,tan δμ分别增加到0.26和0.67.TiO2/SAC投加量为0.25g/gSS时,样品滤液的COD浓度是1900mg/L,是原污泥和单独微波处理的4.52倍和1.86倍;Fe3O4/SAC投加量为0.35g/gSS时,样品滤液的COD浓度是2540mg/L,是原污泥和单独微波处理的6.05倍和2.45倍,Fe3O4/SAC强化污泥破壁效果更好.此时,样品滤液中TN、TP、蛋白质、多糖浓度分别为原污泥的7.7倍、16倍、7.49倍和71.69倍,微生物胞内和胞外聚合物中的物质大量释放,滤液中的溶解性有机物大大增加.微波+敏化剂的预处理方法有利于对污泥中氮、磷及有机物进行资源化利用与回收.  相似文献   
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A gas chromatographic method without derivatization was developed for the residue analysis of 10 organonitrogen and 9 organophosphorus pesticides in soil and water. The samples were blended or shaken with acetone for extraction. The extracts were cleaned up by coagulation, then, re-extracted with three 50 ml portions of dichloromethane. The final residue was detected by gas chromatography equipped with NPD. All of the 19 pesticides were completely separated at a constant temperature. The method described above was applicable to the simultaneous determination of 10 organonitrogen and 9 organophosphorus pesticides .in soil and water with the satisfactory recovery (from 82.42% to 103.57%), coefficient of variance (from 0.17% to 12.57%) and limit of detection (from 0.0006 ppm to 0.058 ppm).  相似文献   
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提出了用气相色谱直接测定水、土、粮食水果和蔬菜中10种有机氮农药多残留的分析方法.样品采用丙酮振荡或组织捣碎提取,二氯甲烷萃取,经凝结或柱层析法净化.使用Sigma2型带NPD的气谱仪测定.气谱柱长1m,内径0.2cm,填充5%OV-17/Gas Chrom Q(80—100目),该柱在恒温的色谱条件下能将10种有机氮农药完全分离.通过方法回收率及八种类型样品的添加回收率证实方法的可靠及可行性,共添加回收率为81.76—102.03%,变异系数0.52—10.33%,最低检测浓度为0.0004—0.0218ppm.  相似文献   
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