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1.
紫外分光光度法测定水中油的方法改进戴泳(瑞安市环境监测站325200)水中油的紫外分光光度法因操作简单,灵敏度高成为国内较为广泛采用的方法之一。但该法的测定回收率大约为74.6%,不够理想,且要求标准油最好用脱芳烃石油醚从待测水样中萃取油品,蒸馏精制...  相似文献   

2.
采用C18固相膜萃取对地下水中15种多环芳烃进行富集净化,以二氯甲烷作洗脱溶剂,高效液相色谱法,荧光检测器测定。对萃取、浓缩和色谱条件进行优化,在1.ooixg/L~40.0μg/L范围内测定标准系列溶液并绘制标准曲线,相关系数R2〉0.999;15种多环芳烃的仪器检出限为0.4ng/L~3.0ng/L;对地下水样品加标,平均回收率在75.7%~96.7%之间;标准溶液平行测定7次的RSD为3.1%~11.9%。  相似文献   

3.
地表水中矿物油分析技术探讨张向东郭玉文(山东滨州地区环境监测站,滨州256614)①标准油品的选择:应选择被测样品中石油醚的萃取物作为标准油品,也可根据测定波长下标准油品与被测样品的吸光度是否一致或相当来选择,这样可消除测定偏差;②石油醚纯度的选择:...  相似文献   

4.
一、透光率试验:用经脱芳烃并重蒸馏过的石油醚(30~60℃,以下简称WYM),从待测水样中萃取油品,经无水硫酸钠脱水后过滤(滤纸预先用WYM洗过),将滤液置于蒸馏瓶中于65±5℃水浴上蒸馏,用细口瓶接收溜液,在滤液所剩较少时,取下蒸馏瓶,倾出滤液于瓷蒸发皿中(用WYM洗净),放在65±5℃恒温箱中赶尽残剩的石油醚,得石油标准油品,备用。另取馏液经脱芳烃并重蒸馏得石油醚,待测(以下简称DCM)。用蒸馏水(新鲜)作参比,10mm石英比色皿,在254nm处,测定WYM和DCM的透光率(表1)。  相似文献   

5.
多环芳烃测定中净化方法的研究   总被引:2,自引:1,他引:1  
王伟 《干旱环境监测》2009,23(4):200-204,208
对多环芳烃测定中的净化方法进行研究,为了选出最佳净化柱,在一定条件下分别采用硅胶LC-Si、弗罗里LC-Florisil和C18固相萃取净化柱对一定浓度的多环芳烃标准溶液进行净化,测定吸附后流出液多环芳烃浓度,计算吸附率;测定洗脱后流出液多环芳烃浓度,计算洗脱率。测定结果为硅胶、弗罗里和C18固相萃取净化柱对多环芳烃的吸附率分别在87.1%~100%,99.5%~100%和96.6%~100%之间,洗脱率分别在0~106%,78.7%.109%和79.0%~115%之间。结果表明,GC/MS内标法测定样品中多环芳烃使用最理想的净化柱为弗罗里净化小柱,其次为C18净化小柱,最后为硅胶净化小柱。  相似文献   

6.
连续流动-固相微萃取方法富集水中多环芳烃的探讨   总被引:1,自引:0,他引:1       下载免费PDF全文
建立了连续流动-固相微萃取富集、气相色谱测定水中多环芳烃的方法,探讨了流量和溶液体积对萃取效果的影响。方法在0μg/L-40μg/L范围内线性良好,8种多环芳烃的检出限为0.05μg/L-0.5μg/L,样品测定的相对标准偏差〈7%,加标回收率为87.0%~112%。  相似文献   

7.
建立了微波萃取一高效液相色谱测定土壤中多环芳烃组分的方法,详尽地叙述了土样预处理过程。当土壤样品取样量为10g时,在荧光检测器上响应的组分检出限为1-10ng/kg,在二极管阵列检测器上响应的组分检出限为0.25-0.5μg/kg。加标回收率为84.3%-93.3%,回收率较高,相对标准偏差为2.8%-5.8%,精密度较好。方法简便、灵敏。  相似文献   

8.
用丙酮/正己烷(1∶1)混合溶剂,微波萃取法提取环境空气总悬浮颗粒物(TSP)中16种多环芳烃组分,各组分萃取率为66%~83%,萃取效果较好。高效液相色谱法二极管阵列检测器和荧光检测器串联可同时测出16种多环芳烃组分。在二极管阵列检测器响应的组分检测限为2 5μg/L~5 0μg/L,荧光检测器响应的组分检测限为0 01μg/L~0 1μg/L。对25μg/L16种多环芳烃标液作精密度试验,相对标准差均<5%,精密度好。取两个交通干线环境空气样品作TSP中多环芳烃测定,16种组分中除蒽、茚并(1,2,3cd)芘、芘、苊烯4种组分外,其他12种组分均有检出。  相似文献   

9.
搅拌棒萃取-热脱附/气质联用法测定水中2-MIB和土臭素   总被引:2,自引:0,他引:2  
采用搅拌棒萃取-热脱附/气质联用法测定水中2-甲基异莰醇和土臭素,优化了搅拌棒萃取和热脱附进样的条件。试验表明:两种目标化合物在1.00 ng/L~200 ng/L范围内线性良好,2-甲基异莰醇的相关系数为0.9993,土臭素的相关系数为0.9997,方法检出限分别为0.31 ng/L和0.15 ng/L;空白和实际样品的加标回收率为82.4%~116%,测定结果的RSD<10%。  相似文献   

10.
以3种常见食用油的蒸馏抽提冷凝物为标准品,用紫外分光光度法研究食用油烟气浓度的分析方法。结果表明油烟标准品和样品的最大吸收波长均为264nm;标准管油烟含量为0 ̄100μg围时,吸光度与油烟量间呈良好的线性关系(相关系数r为0.994 ̄0.999);该法测油烟含量的准确度即变异系数(CV%)为1.3% ̄8.5%(X=3.9%),回收率为90.83% ̄106.69%(99.4%),检测下限0.1μg  相似文献   

11.
Air emission data from offshore oil platforms, gas and oil processing installations and contribution of marine activities at the Sonda de Campeche, located at the Gulf of Mexico, were compiled and integrated to facilitate the study of long range transport of pollutants into the region. From this important region, roughly 76% of the total Mexican oil and gas production is obtained. It was estimated that the total air emissions of all contaminants are approximately 821,000 tons per year. Hydrocarbons are the largest pollutant emissions with 277,590 tons per year, generated during flaring activities, and SOx in second place with 185,907 tons per year. Marine and aviation activities contribute with less than 2% of total emissions. Mass of pollutants emitted per barrel of petroleum produced calculated in this work, are in the range reported by similar oil companies.  相似文献   

12.
研究小东江水闸至斜岭全程10Km河段底质中石油和酚类污染物含量的沿程分布,并对底质进行浸溶试验,结果表明,该河段底质中石油平均含量为27.58mg/kg,酚类为0.098mg/kg,石油平均浸出率为35%,酚类平均浸出率为49%,在一定的条件下,可能导致水体的二次污染。  相似文献   

13.
石油类测定质量自控方法探讨   总被引:1,自引:0,他引:1  
探讨了水中石油类测定中自控标准样品的配制方法,按1∶1∶1的比例配制正十六烷、姥鲛烷和甲苯混合标准溶液,对国家标准样品的测定值在保证值范围内。配制的20.0 mg/L和1.00 mg/L高、低两种质量浓度的混合标准溶液,连续7 d随水样同时测定的相对误差≤7.0%,RSD在1.3%~6.7%范围。  相似文献   

14.
红外分光光度法测定水中石油类,可用S-316(六氯四氟丁烷)作提取剂,测定了以S-316为溶剂配制的正十六烷,姥鲛烷和甲苯溶液的校正系数,并对该校正系数作了检验,比较了S-316和CCl4的本底值和萃取率,结果表明S-316可作为红外法测定水中石油类的提取剂,并具有毒性小,萃取率高等特点。  相似文献   

15.
Screening by gas chromatography with flame ionization detection and gas chromatography-mass spectrometry has been carried out on sludge extracts of wastewater treatment basins. Soxhlet extraction with trichlorotrifluoroethane was applied. The yields for petroleum hydrocarbons and PAH recovery were high, usually in excess of 90%. The proposed investigations permit a quick assessment of petroleum pollutants in the environment.  相似文献   

16.
Three biosurfactant-producing strains designated as BS-1, BS-3, and BS-4 were screened out from crude oil-contaminated soil using a combination of surface tension measurement and oil spreading method. Thin layer chromatography and infrared analysis indicated that the biosurfactants produced by the three strains were lipopeptide, glycolipid, and phospholipid. The enhancement of solubilization and biodegradation of petroleum hydrocarbons in groundwater employing biosurfactant-producing strains was investigated. The three strain mixtures led to more solubilization of petroleum hydrocarbons in groundwater, and the solubilization rate was 10.5 mg l?1. The combination of biosurfactant-producing strains and petroleum-degrading strains exhibited a higher biodegradation efficiency of 85.4 % than the petroleum-degrading strains (71.2 %). Biodegradation was enhanced the greatest with biosurfactant-producing strains and petroleum-degrading strains in a ratio of 1:1. Fluorescence microscopy images illustrate that the oil dispersed into smaller droplets and emulsified in the presence of biosurfactant-producing strains, which attached to the oil. Thus, the biodegradation of petroleum hydrocarbons in groundwater was enhanced.  相似文献   

17.
根据《水质石油类的测定紫外分光光度法(试行)》(HJ 970—2018)的要求,以正己烷为溶剂,采用自行设计的搅拌式液液萃取器处理样品,萃取相经硅酸镁吸附脱除极性物质后,用紫外分光光度法测定常州市城市饮用水水源地的石油类指标。结果表明:方法检出限为0.01 mg/L,线性范围为0~16.0 mg/L,相关系数为0.9998,4种不同浓度配制样品测定的相对误差为-15.0%~4.0%,相对标准偏差为2.2%~8.8%。各项技术指标均满足《HJ 970—2018》相关质量控制要求,相比手动萃取-红外分光光度法,自动搅拌萃取-紫外分光光度法能有效提高分析效率和降低职业危害。  相似文献   

18.
In order to investigate the distribution of the total petroleum hydrocarbons (TPH) in groundwater and soil, a total of 71 groundwater samples (26 unconfined groundwater samples, 37 confined groundwater samples, and 8 deeper confined groundwater samples) and 80 soil samples were collected in the Songyuan oilfield, Northeast China, and the vertical variation and spatial variability of TPH in groundwater and soil were assessed. For the groundwater from the unconfined aquifer, petroleum hydrocarbons were not detected in three samples, and for the other 23 samples, concentrations were in the range 0.01–1.74 mg/l. In the groundwater from the confined aquifer, petroleum hydrocarbons were not detected in two samples, and in the other 35 samples, the concentrations were 0.04–0.82 mg/l. The TPH concentration in unconfined aquifer may be influenced by polluted surface water and polluted soil; for confined aquifer, the injection wells leakage and left open hole wells may be mainly responsible for the pollution. For soils, the concentrations of TPH varied with sampling depth and were 0–15 cm (average concentration, 0.63 mg/g), >40–55 cm (average concentration, 0.36 mg/g), >100–115 cm (average concentration, 0.29 mg/g), and >500–515 cm (average concentration, 0.26 mg/g). The results showed that oil spillage and losses were possibly the main sources of TPH in soil. The consequences concluded here suggested that counter measures such as remediation and long-term monitoring should be commenced in the near future, and effective measures should be taken to assure that the oilfields area would not be a threat to human health.  相似文献   

19.
This paper describes the use of a potentially implantable infrared reflectometer for the qualitative detection of petroleum and a number of other hydrocarbon solvents. A rugged, low-power, re-useable sensor was evaluated in the laboratory for its ability to detect petrol in soil. A hydrophobic fluoropolymer was used as the sensing surface due to its high selectivity for petroleum hydrocarbons. The photocurrent reflected by this surface from a near IR source was measured to test for petroleum saturation within the membrane, which in turn was an indicator of petroleum in the surrounding soil. The simplicity in the sensor design enabled a stable, low cost detection method for petroleum and other hydrocarbons, ideal for use in sub-surface applications.  相似文献   

20.
通过对石油开发应急管理系统分类及内容分析研究,结果焉耆地石油开发特点,提出焉耆盆地石油勘探开发水污染应急管理系统应具备的内容和功能,为焉耆盆地和其它区域石油开发污染控制提供了参考。  相似文献   

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