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Synergistic Effect in Mixed Capillary Gas Chromatographic Stationap Phases Containing Heptakis(2,3,6-tri-o-pentyl)-β-cyclodextrin and Dibenzo-18-crown-6 被引量:1
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作者 Li Ming YUAN Ruo Nong FU +3 位作者 Xue Xian CHEN Shi Hong GUl Rong Ji DAI (Chemistry Department of Yunnan Normal University.Kunming 650092)(Department of Chemical Engineering.Beijing institute of Technology,BEijing 100081)(Solar Energy Research Institute ofyunna 《Chinese Chemical Letters》 SCIE CAS CSCD 1999年第3期223-226,共4页
used-silical capillary columns containing heptakis(2、3、6-tri-o-pentyl)-β-cyclodextrinand dibenzo-18-crown-6 were prepared.By studying the selectivity of mixed stationary phases forsome solute pairs.as well a... used-silical capillary columns containing heptakis(2、3、6-tri-o-pentyl)-β-cyclodextrinand dibenzo-18-crown-6 were prepared.By studying the selectivity of mixed stationary phases forsome solute pairs.as well as comparing with the heptakis(2.3、6-tri-O-pentyl)-β-cyclodextrin and thedibenzo-18-crown-6 used as individual stationary phase、the synergistic effects were observed.These effects were affected by the column temperature.mixed ratio and linear velocity of carrier gas. 展开更多
关键词 gas chromatography mixed stationary phase synergistic effect heptakis(2.3.6-tri-o-pentyl)-β-cyclodextrin DIBENZO-18-CROWN-6
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An Excellent Gas Chromatographic Stationary Phase for Separation of Phenol and Cresol Isomers--Heptakis(2,6-di-O-pentyl-3-O-allyl)-β-Cyclodextrin
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作者 Yue Qin ZHANG, Xue Yan SHI, Ruo Nong FU (School of Chemical Engineering and Materials Science. Beijing Institute of Technology, Beijing 10008) 《Chinese Chemical Letters》 SCIE CAS CSCD 2000年第3期265-266,共2页
Heptakis(2.6-di-O-pentyl-3-O-ally)-β-cyclodextrin as an excellent gas chromatographic stationary phase separating phenol and cresol isomers is described.
关键词 gas chromatographic stationary phase phenol and cresol isomers heptakis(2.6-di-Opentyl-3-O-allyl)-β-cyclodextrin.
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Formation conditions and accumulation characteristics of Bozhong 19-6 large condensate gas field in offshore Bohai Bay Basin 被引量:7
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作者 XU Changgui YU Haibo +1 位作者 WANG Jun LIU Xiaojian 《Petroleum Exploration and Development》 2019年第1期27-40,共14页
Based on the study of natural gas resource, low buried hill trap formation mechanism, high quality reservoir control factors and natural gas preservation conditions, the formation conditions and reservoir accumulation... Based on the study of natural gas resource, low buried hill trap formation mechanism, high quality reservoir control factors and natural gas preservation conditions, the formation conditions and reservoir accumulation characteristics of Bozhong 19-6 large condensate gas field were summarized. Large gas generation potential of multiple sets of thick humic-sapropelic source rocks in high maturity stage in Bozhong depression was the basis of large gas field formation. The multi-stage tectonic evolution since Indosinian period formed large-scale buried hill traps. The Tanlu fault activity formed multi-type reservoirs, and buried hill metamorphic rock of Archean and sand-conglomerate of Kongdian Formation were high-quality reservoirs. Thick overpressure lacustrine mudstone and weak neotectonic movement provided good preservation conditions. Bozhong 19-6 gas reservoir was a condensate gas reservoir with very high condensate oil content, and the gas origin was humic-sapropelic and kerogen-cracking gas, and the gas field had large gas thickness, high gas column characteristics and the accumulation process was first oil and then gas. The buried hill reservoir was a massive reservoir and the Kongdian reservoir was a stratified reservoir. The gas field had multi-channel hydrocarbon intense charge from overpressure source rocks, atmospheric-weak overpressure reservoir favorable for accumulation, thick overpressure mudstone caprock favorable for preservation, and natural gas ultra-late rapid accumulation model. 展开更多
关键词 OFFSHORE Bohai Bay Basin Bozhong 19-6 gas field CONDENSATE gas low buried HILL METAMORPHIC rock reservoir accumulation characteristics ARCHEAN
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固相萃取-气相色谱-质谱法同时测定水中9种药品及个人护理用品 被引量:25
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作者 贾妍艳 谭建华 +3 位作者 徐晨 汤嘉骏 王赢利 解启来 《色谱》 CAS CSCD 北大核心 2014年第3期263-267,共5页
采用固相萃取-气相色谱-质谱联用技术,建立了水体中9种药品及个人护理用品(水杨酸、萘普生、布洛芬、对乙酰氨基酚、降固醇酸、三氯生、双氯酚酸、酮洛芬和双酚 A)的定量分析方法。水样品经稀盐酸调节至 pH =3后,采用 Oasis HLB 固... 采用固相萃取-气相色谱-质谱联用技术,建立了水体中9种药品及个人护理用品(水杨酸、萘普生、布洛芬、对乙酰氨基酚、降固醇酸、三氯生、双氯酚酸、酮洛芬和双酚 A)的定量分析方法。水样品经稀盐酸调节至 pH =3后,采用 Oasis HLB 固相萃取小柱进行富集净化;选用三甲基氢氧化硫( TMSH)为衍生化试剂,在常温条件下对目标物进行快速甲基化;以气相色谱-质谱法选择离子监测模式(GC-MS-SIM)进行检测,由2,4,5-涕丙酸为内标进行定量分析。本实验分别对固相萃取和衍生化等前处理条件进行了系统的研究。在优化的实验条件下,方法的回收率为50.7~115.4%,相对标准偏差均不高于10%,检出限为0.03~0.30μg / L,定量限为0.15~1.50μg / L。利用该方法对东莞市某农田灌溉水进行了分析,4种目标物在样品中有检出,最大质量浓度范围为0.176~0.998μg / L。结果表明该方法操作简便,灵敏可靠。 展开更多
关键词 固相萃取 衍生化 气相色谱-质谱联用 药品及个人护理用品 水样 solid phase extraction(SPE) gas chromatography-mass spectrom-etry(GC-MS) pharmaceuticals and personal care products(PPCPs)
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气相色谱-负化学源质谱联用法测定水产品及食用油中氟乐灵的残留量 被引量:9
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作者 王莉 夏广辉 +5 位作者 沈伟健 吴斌 张睿 陆慧媛 沈崇钰 赵增运 《色谱》 CAS CSCD 北大核心 2014年第3期314-317,共4页
建立了一种可用于水产品及食用油中氟乐灵残留量分析的分散型固相萃取-气相色谱-负化学离子源质谱方法。水产品及食用油经乙腈提取,4℃冷藏后,采用分散型固相萃取法净化,由气相色谱-负化学离子源质谱选择离子监测技术进行测定与确证... 建立了一种可用于水产品及食用油中氟乐灵残留量分析的分散型固相萃取-气相色谱-负化学离子源质谱方法。水产品及食用油经乙腈提取,4℃冷藏后,采用分散型固相萃取法净化,由气相色谱-负化学离子源质谱选择离子监测技术进行测定与确证,同位素内标法定量。在1~40μg / L 范围内氟乐灵农药的线性关系良好;方法定量限(LOQ)为0.02μg / kg;对鳗鱼、烤鳗、梭子蟹、小龙虾、猪油和橄榄油等6种复杂基质进行1.0、2.0和3.0μg / kg 等3个水平的添加回收试验,平均回收率均处于80%~100%之间,RSD≤10.3%;无干扰现象出现。该方法可作为水产品及食用油中氟乐灵残留检测的确证方法。 展开更多
关键词 分散型固相萃取 气相色谱-负化学离子源质谱联用 选择离子监测 氟乐灵 水产品 食用油 disperse solid phase extraction( DSPE) gas chromatography-negative chemical ionization mass SPECTROMETRY ( GC-MS NCI ) selected ion monitoring ( SIM )
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福建姜黄挥发油化学成分的HS-SPME-GC-MS分析 被引量:18
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作者 强悦越 韦航 +4 位作者 方灵 吴妙鸿 谭索 曾绍校 傅建炜 《中国食品添加剂》 CAS 2020年第1期147-153,共7页
采用水蒸气蒸馏法提取福建姜黄挥发油,应用顶空固相微萃取进样结合气相色谱-串联质谱联用技术(HS-SPME-GC-MS)分析姜黄挥发油的化学成分。结果表明:姜黄挥发油含有量为7.2%(mL/g),从姜黄挥发油中共分出62个色谱峰,初步鉴定出了其中的51... 采用水蒸气蒸馏法提取福建姜黄挥发油,应用顶空固相微萃取进样结合气相色谱-串联质谱联用技术(HS-SPME-GC-MS)分析姜黄挥发油的化学成分。结果表明:姜黄挥发油含有量为7.2%(mL/g),从姜黄挥发油中共分出62个色谱峰,初步鉴定出了其中的51种化学成分,占总挥发油总量的98.41%。在鉴定的化合物中,主要为单萜类化合物和倍半萜类化合物,其中新发现一种主要成分为β-柏木烯,相对含量占比高达26.58%,这可作为福建姜黄挥发油的特征成分和主要品质指标。本研究结果将为福建姜黄植物药材的品质评价提供科学依据。 展开更多
关键词 姜黄挥发油 顶空固相微萃取技术(Head space solid phase micro-extraction HS-SPME) 气相色谱-质谱联用技术(gas chromatography-mass spectrometry GC-MS) 化学成分
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