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1.
建立了一种利用固相萃取法对固体废物浸出液(TCLP)中二硝基苯进行萃取,DB-5石英毛细管柱(30 m×0.25 mm×0.25μm)进行分离,质谱检测器检测二硝基苯的方法。方法在0.002 0~0.020 0 mg/L之间线性关系良好,二硝基苯三种同分异构体的检出限均为0.5μg/L,模拟样品加标回收率为93%~96%,RSD≤2%;实际固体废物样品测定的加标回收率为95%~98%。  相似文献   
2.
采用加速溶剂萃取法提取沉积物中的有机氯和多氯联苯,提取液用凝胶色谱法净化后用气相色谱-质谱法测定。方法在5.00μg/L~200μg/L范围内线性良好,当取样量为10.0 g时,方法检出限为0.03μg/kg~0.37μg/kg,空白样品2个质量比水平的加标回收率为70.8%~121%,测定结果的RSD为2.7%~11.5%。用该方法测定实际样品,结果 12个抽检的沉积物样品中多氯联苯均未检出,9个样品中有机氯检出。  相似文献   
3.
采用固相微萃-气相色谱/质谱法(SPME-GC/MS)对GSM和2-MIB进行富集检测。实验对萃取富集和仪器条件进行了优化,得出最佳实验条件:NaCl投加量30%,萃取温度65℃,萃取时间40 min,解吸3 min,不分流进样,SIM模式采集数据。实验还对萃取头的使用次数和维护进行了探讨。利用已经建立的SPME-GC/MS法对佛山市28家水厂的出厂水和原水、佛山典型景观千灯湖和亚艺公园湖水进行普查。该法具有操作简单快速、能实现自动化连续检测、准确、灵敏度高等特点,适用于饮用水中嗅味物质定性和定量。  相似文献   
4.
Several animal (lamb, poultry and swine) fatty wastes were pyrolyzed under nitrogen, in a laboratory scale fixed-bed reactor and the main products (liquid bio-oil, solid bio-char and syngas) were obtained. The purpose of this study is to produce and characterize bio-oil and bio-char obtained from pyrolysis of animal fatty wastes. The maximum production of bio-oil was achieved at a pyrolysis temperature of 500 °C and a heating rate of 5 °C/min. The chemical (GC–MS analyses) and spectroscopic analyses (FTIR analyses) of bio-oil showed that it is a complex mixture consisting of different classes of organic compounds, i.e., hydrocarbons (alkanes, alkenes, cyclic compounds…etc.), carboxylic acids, aldehydes, ketones, esters,…etc. According to fuel properties, produced bio-oils showed good properties, suitable for its use as an engine fuel or as a potential source for synthetic fuels and chemical feedstock. Obtained bio-chars had low carbon content and high ash content which make them unattractive for as renewable source energy.  相似文献   
5.
采用便携式GC-MS法快速测定固定污染源废气中VOCs,32种VOCs在2×10~(-7)~1×10~(-6)范围内线性良好,方法检出限为2×10~(-9)~1×10~(-8),标准气体样品6次测定结果的RSD为1.9%~19.1%,环境空气样品的加标回收率为66.2%~116%。在实际现场监测固定污染源中VOCs时,使用速查(Survey)功能可初步判断样品浓度,确定稀释倍数。比对试验结果表明,气袋和玻璃注射器采样法对VOCs测定结果无显著性差异。  相似文献   
6.
利用快速溶剂萃取(ASE)和在线吸附净化,气相色谱-质谱(GC/MS)联用测定水产品中8种合成麝香.以正己烷为萃取溶剂,中性氧化铝为吸附剂,在100℃的温度下对水产品进行萃取.实验结果表明,方法的检测限为0.1—0.5 ng·g-1;在浓度1—80 ng·g-1的范围内,峰面积与样品浓度呈良好线性关系;8种合成麝香的回...  相似文献   
7.
张衍  郑炜  刘锐  李伟  李荧  陈吕军 《环境工程学报》2012,6(12):4355-4360
对化学合成橡胶碱洗废水进行了有机组分和可生化性分析,废水主要含有氯甲烷、六甲苯、异丁醇、甲醇等污染物质,生化降解实验中废水TOC可在6d内从60.9mg/L下降至0.0mg/L,可生化降解性好,适于生化处理。选择混凝.生物接触氧化组合工艺对废水进行处理,采用优化条件(pH=8、PAC=40mg/L、PAM=8mg/L)进行混凝,碱洗废水COD去除率为9.95%~72.94%(平均31.51%);混凝后的碱洗废水与冲洗废水1:5混合进行接触氧化处理,在HRT为36h的情况下,COD去除率为65.6%-72.6%(平均70.4%),出水COD为134~331mg/L,满足企业废水排放市政管网的要求;同时,实验发现COD去除率与COD容积负荷存在指数函数变化关系。  相似文献   
8.
An extraction method based on matrix solid-phase dispersion was developed to determine pirimicarb, methyl parathion, malathion, procymidone, α -endosulfan and β -endosulfan in lettuce using gas chromatography-mass spectrometry. The best results were obtained using 4.0 g of lettuce, 2.0 g of silica as dispersant sorbent, 0.1 g of activated carbon as clean up sorbent and acetonitrile as eluting solvent. The method was validated using lettuce samples fortified with pesticides at six different concentration levels (0.1 to 2.0 mg/kg). Average recoveries (7 replicates) ranged from 50 to 120 %, with relative standard deviations between 0.6 and 8.0 %. Detection and quantification limits for lettuce ranged from 0.01 to 0.02 mg/kg and 0.04 to 0.10 mg/kg, respectively.  相似文献   
9.
环境中总石油烃的气相色谱分析测定   总被引:1,自引:0,他引:1  
将总石油烃划分为挥发性汽油类(C6~C10)、可萃取柴油和重油类(C10~C40)两部分,分别建立了通过吹扫捕集、液液萃取和超声溶剂萃取分离富集,气相色谱-火焰离子化检测器(GC-FID)测定环境水体和土壤中总石油烃的分析方法。以汽油、柴油、润滑油标准溶液进行外标校正,以色谱出峰总面积进行定量。汽油类(C6~C10)的检出限分别为0.04mg/L和0.42mg/kg,柴油和重油类(C10~C40)的检出限分别为0.06mg/L和4.9mg/kg。方法的精密度和准确度均良好。  相似文献   
10.
Dissipation curves of azoxystrobin and of the neonicotinoids acetamiprid and thiacloprid in peach; azinphos-methyl and carbaryl in pear and azoxystrobin, chlorfenapyr and chlorpyrifos in high-tunnel tomato crops were studied in the Southern region of Uruguay. An analytical methodology based on solid phase extraction (SPE) and detection by High Performance Liquid Chromatography with Diode Array Detector (HPLC/DAD) was used for acetamiprid and thiacloprid. Coupled SPE and detection by Gas Chromatography with Mass Selective Detector (GC/MSD) was used for the detection of azinphos-methyl, azoxystrobin, carbaryl, chlorfenapyr and chlorpyrifos residues. Curves were modeled mathematically with Solver program of Microsoft Excel®. The best fit for acetamiprid and thiacloprid in peach was achieved with the exponential model (r2=0.961 and 0.944, respectively). In the case of peach fruits there is not a Maximum Residue Limit (MRL) for acetamiprid in the Codex Alimentarius, while 0.5 mg/kg is the value rated for thiacloprid. The MRLs accepted by the European Union (EU) are 0.1 mg/kg for acetamiprid and 0.3 mg/kg for thiacloprid. According to the curves determined in these experiments, thiacloprid residues 10 to 12 days after application (daa) were below the MRLs established by both sources. In the case of acetamiprid, 25 daa would be required, according to the exponential mathematical model, to get residues levels below the MRL values established by the EU. For azinphos methyl in pear, the residues detected were mathematically fitted to an exponential model (r2=0.999). According to it, residue levels under the MRL established by the EU (0.05 mg/kg) are gotten in our conditions in 20 daa. In plastic tunnel tomato chlorfenapyr residues were not detected from 16 daa, having the dissipation curve an exponential trend. In the same condition, there was not a decay of the azoxystrobin concentration during a 24-day trial, being it around 0.40 ± 0.05 mg/kg.  相似文献   
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