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Progress in Chemistry 1997, Vol. 9 Issue (02): 179- Previous Articles   Next Articles

• Review •

The Progress of Sample Preparation and Treatment Solvent-Free Extraction Technologies

Huang Junxiong   

  1. (Research Center for Eco-Environmental Sciences,Chinese Academy of Sciences, Beijing 100085, China)
  • Received: Revised: Online: Published:
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Solvent free extraction as a promising technique for sample preparation and pretreatment which has become one of the most important research areas in modern analytical chemistry has attracted much attention recently. The basic principles and applications of the methods, such as gas phase extraction, supercritical fluid extraction, mem brane extraction, solid phase extraction, and solid phase micro extraction were described in this paper. The trends in the development of these methods were also discussed.

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[1 ] Mulligan K J , McCauley H, J. Chromatogr. Sci. , 1995, 33, 49.
[2 ] Organic Volatile Impurities, The United States Pharmacopeia X X I I ,National Formulary X V I I , 6th Supplement, The United States Pharmacopeial Convention Pockvill, MD, 1993, 2927~ 2929.
[3 ] Dennis K J , Josephs P A , Dokladalova J , Pharmacopeial Forum , 1992, 18, 2964.
[4 ] Kidd W C III, Pharmacopeial Forum , 1993, 19, 5063.
[5 ] Peuton Z, J. High Resol. Chromatogr. , 1992, 15, 329.
[6 ] Kumar N , Gow J G, J. Chromatogr. A , 1994, 667, 235.
[7 ] Markelov M , A S TM E 219Meeting , Atlanta, GA , 1990.
[8 ] Markelov M , Guzowski J P Jr, Anal. Chim. Acta, 1993, 276, 235.
[9 ] Schuberth J , Anal. Chem. , 1996, 68, 1317.
[10 ] Wang H W , Simmons M S, Deininger R A , J. Chromatogr. Sci. , 1995, 33, 109.
[11 ] 1995 Annual Bookof A S TM Standards, Vol. 14. 02, American Society for Testing and Materials,Philadelphia, PA , 1995, 870.
[12 ] Karkkainen M , Seppala I, Himberg K, J. Forensic Sci. , 1994, 39 , 186.
[13 ] Analytical Supercritical Fluid Chromatographyand Extraction (eds. Lee M L , Markides K E) , Provo, U T , 1990.
[14 ] Taylor L T , Anal. Chem. , 1995, 67, 364A.
[15 ] McNally M E P, Anal. Chem. , 1995, 67, 308A.
[16 ] Pipkin W , L C2GC, 1992, 10 (1) , 14.
[17 ] Kauffman J , Anal. Chem. , 1996, 68, 248A.
[18 ] Maxwell R J , Parks O W , Piotrowski E G, J. High Resol. Chromatogr. , 1992, 15, 807.
[19 ] Levy J M , Houck R K, American Laboratory , 1993, 4, 36R.
[20 ] Sauvage E, Rocca J L , Toussaint G, J. High Resol. Chromatogr. , 1993, 16, 234.
[21 ] Luquede Castero M , Tena M , Trendsin Anal. Chem. , 1996, 15, 32.
[22 ] Yang Y, Bowadt S, Hawthorne S, Miller D, Anal. Chem. , 1995, 67, 4571.
[23 ] Lin Y, Brauer R D, Laintz K E, Wai C M , Anal. Chem. , 1993, 65 (18) , 2549.
[24 ] Ashraf-Khorassani M , Combs M , Taylor L , J. High Resol. Chromatogr. , 1995, 18, 709.
[25 ] Burford M , Hawthorne S, Miller D, Anal. Chem. , 1993, 65, 1497.
[26 ] Burford M , Hawthorne S, Miller D, J. Chromatogr. , 1993, 657A , 413.
[27 ] Lee H, Peart T , J. Chromatogr. , 1994, 663, 87.
[28 ] Witter B, Francke W , Knauth H D, Fresenius J. Anal. Chem. , 1995, 353, 107.
[29 ] Rochette E A , Harch J B, Hill H H, Environ. Sci. Technol. , 1996, 30, 1220.
[30 ] Reimer G, Noot D, Suarez A , Intern. J. Environ. Anal. Chem. , 1995, 59, 91.
[31 ] Seidel V , Lindner W , Intern. J. Environ. Anal. Chem. , 1995, 59, 1.
[32 ] Bicking M K L , Hayes T G, Kiley J C, Deming S N , J. Chromatogr. Sci. , 1993, 31, 170.
[33 ] Camel V , Tambute A , Caude M , J. Chromatogr. , 1993, 642, 263.
[34 ] Burford M D, Hawthorne S B, Miller D J , Anal. Chem. , 1993, 65 (11) , 1497.
[35 ] McEachern P R, Foster G D, J. Chromatogr. , 1993, 632, 119.
[36 ] Lee H, Peart T E, Hong-You R L , Gere D R, J. Chromatogr. A , 1993, 653, 83.
[37 ] Gere D R, Knipe C R, Castelli P, Hedrick H et al. , J. Chromatogr. Sci. , 1993, 31, 246.
[38 ] Snyder J L , Grob R L , McNally M E, Oostdyk T S, J. Chromatogr. Sci. , 1993, 31, 183.
[39 ] Liu Y, Lopez-Avila V , Alcaraz M , Beckert W , J. High Resol. Chromatogr. , 1993, 16, 106.
[40 ] Lembke P, Engelhardt H, Chromatographia, 1993, 35, 509.
[41 ] Engelhardt H, Hass P, J. Chromatogr. Sci. , 1993, 31, 13.
[42 ] Verschuere M , Sandra P, David F, J. Chromatogr. Sci. , 1992, 30, 388.
[43 ] Bicking M K L , J. Chromatogr. Sci. , 1992, 30, 358.
[44 ] Messer D C, Taylor L T , J. High Resol. Chromatogr. , 1992, 15, 238.
[45 ] Boenke A , Van Egmond H P, Wagstaffe P J , Fresenius J. Anal. Chem. , 1993, 345, 224.
[46 ] Johansen H R, Thorstensen C, Greibrokk T , Becher G, J. High Resol. Chromatogr. , 1993, 16,148.
[47 ] Johansen H R, Becher G, Greibrokk T , Fresenius J. Anal. Chem. , 1992, 344, 486.
[48 ] Cross R F, Ezzell J L , Richter B E, J. Chromatogr. Sci. , 1993, 31, 162.
[49 ] Cotton N J , Bartle K D, Clifford A A , Dowie C J , J. Chromatogr. Sci. , 1993, 31, 157.
[50 ] Daneshfar A , Barzegar M , Ashraf-Khorassani M , J. High Resol. Chromatogr. , 1995, 18, 446.
[51 ] Hedrick J , Taylor L , J. High Resol. Chromatogr. , 1992, 15, 151.
[52 ] Mulcahey L , Taylor L , Anal. Chem. , 1992, 64, 981.
[53 ] Wang J , Marshall W , Anal. Chem. , 1994, 66, 3900.
[54 ] Croft M , Murby E, Wells R, Anal. Chem. , 1994, 66, 4459.
[55 ] Lopez-Avila V , Benedicto J , Dodhiwala N S, Young R, Bechert W F, J. Chromatogr. Sci. , 1992,30, 335.
[56 ] Hawthorne S B, Miller D J , Hegvik K M , J. Chromatogr. Sci. , 1993, 31, 26.
[57 ] Taguchi M , Hobo T , Maeda T , J. High Resol. Chromatogr. , 1991, 14, 140.
[58 ] Pinkston J D, Delaney T E, Bowling D J , Chester T L , J. High Resol. Chromatogr. , 1991, 14,401.
[59 ] Cotton N J , Bartle K D, Clifford A A , Ashraf S, Moulder R, Dowie C J , J. High Resol. Chromatogr. , 1991, 14, 164.
[60 ] Ashraf-KhorassaniM , Boyer D S, Levy J M , J. Chromatogr. Sci. , 1991, 29, 517.
[61 ] Lou X, Janssen H, Cramers C, J. High Resol. Chromatogr. , 1995, 18, 483.
[62 ] Stalling D L , Saim S, Kuo K C, Stunkel J J , J. Chromatogr. Sci. , 1992, 30, 486.
[63 ] Liu M H, Kapila S, Nam K S, Elseewi A A , J. Chromatogr. , 1993, 639, 151.
[64 ] Ashraf-Khorassani M , Barzegar M , Yamani Y, J. High Resol. Chromatogr. , 1995, 18, 472.
[65 ] Koeber R, Niessner R, Fresenius J. Anal. Chem. , 1996, 354, 464.
[66 ] Yang Y, Baumann W , Fresenius J. Anal. Chem. , 1996, 354, 56.
[67 ] Cortes H J , Green L S, Campbell R M , Anal. Chem. , 1991, 63 (23) , 2719.
[68 ] Pratt K F, Pawliszyn J , Anal. Chem. , 1992, 64, 2101.
[69 ] Kotiaho T , Lauritsen F R, Choudhury T K, Cooks R G, Tsao G T , Anal. Chem. , 1991, 63, 875A.
[70 ] Yang M J , Harms S, Luo Y Z, Pawliszyn J , Anal. Chem. , 1994, 66, 1339.
[71 ] Yang M J , Pawliszyn J , Anal. Chem. , 1993, 65, 1758.
[72 ] Pratt K F, Pawliszyn J , Anal. Chem. , 1992, 64, 2107.
[73 ] Yang M J , Pawliszyn J , Anal. Chem. , 1993, 65, 2538.
[74 ] Luo Y, Yang M J , Pawliszyn J , J. High Resol. Chromatogr. , 1995, 18, 727.
[75 ] Yang M J , Luo Y, Pawliszyn J , Chemtech, 1994, (10) , 31.
[76 ] Lindegard B, Jonsson J A , Mathiasson L , J. Chromatogr. , 1992, 573, 191.
[77 ] Mathiasson L , Nilve G, Ulen B, Intern. J. Environ. Anal. Chem. , 1991, 45, 1171
[78 ] Jonsson J A , Mathiasson L , Trends Anal. Chem. , 1992, 11, 106.
[79 ] Gronberg L , Lovkvist P, Jonsson J A , Chromatographia, 1992, 33 (1, 2) , 77.
[80 ] Nilve G, Stebbins R, Chromatographia, 1992, 33, 269.
[81 ] Moskvin L N , J. Chromatogr. , 1994, 669, 81.
[82 ] Moskvin L N , Simon J , Talanta, 1994, 41, 1765.
[83 ] Loffler P, Simon J , Katruzov A , Moskvin L N , Fresenius J. Anal. Chem. , 1995, 352, 613.
[84 ] Loconto P, L C-GC, 1991, 9 (11) , 752.
[85 ] Barcelo D, Analyst, 1991, 116, 618.
[86 ] Horack J , Majors R E, L C2GC, 1993, 11, 74.
[87 ] Moors M , Massart D L , Anal. Chim. Acta, 1992, 262, 135.
[88 ] Hennion H C, Trends Anal. Chem. , 1991, 10, 317.
[89 ] Markell C, Hagen D F, Bunnelle V A , L C2GC, 1991, 9, 332.
[90 ] Larrivee M , Poole C F, Anal. Chem. , 1994, 66, 139.
[91 ] Mills M , Thurman E, Anal. Chem. , 1992, 64, 1985.
[92 ] Kraut-Vass A , Thoma J , J. Chromatogr. , 1991, 538, 233.
[93 ] Evans O , Jacobs B J , Cohen A L , Analyst, 1991, 116, 15.
[94 ] Brouwer E R, Van Iperen D, Liska I, Intern. J. Environ. Anal. Chem. , 1992, 47, 257.
[95 ] Me Donnell T , Rosenfeld J , Rais-Firouz A , J. Chromatogr. , 1993, 629, 41.
[96 ] Redondo M , Ruiz M , Boluda R, Font G, Chromatographia, 1993, 36, 187.
[97 ] Kaye B, Herron W , Macrae P, Robinson S, Stopher D, Venn R, Wild W , Anal. Chem. , 1996, 68,1658.
[98 ] Tanaka M , Yamazaki H, Anal. Chem. , 1996, 68, 1513.
[99 ] Kane M , Dean J , Hitchen S, Dowle C, Tranter R, Analyst, 1995, 120, 355.
[100 ] Ho J S, Tang P H, J. Chromatogr. Sci. , 1992, 30, 344.
[101 ] Howard A L , Taylor L T , J. Chromatogr. Sci. , 1992, 30, 374.
[102 ] Hennion M C, Trends Anal. Chem. , 1991, 10, 317.
[103 ] Hotter G, Ramis I, Bioque G, Sarmiento C, Fernandez J , Rosello-Catafau J , Gelpi E, Chromatographia, 1993, 36, 33.
[104 ] Johnson W , Fendinger N , Plimmer J , Anal. Chem. , 1991, 63, 1510.
[105 ] Vander Hoff G, Gort S, Baumann R et al. , J. High Resol. Chromatogr. , 1991, 14, 456.
[106 ] Molto J , Pico Y, Font G et al. , J. Chromatogr. , 1991, 555, 137.
[107 ] Strausbauch M , Madden B, Wettstein P, Lander J , Electrophoresis, 1995, 16, 541.
[108 ] Lander J , Clin. Chem. , 1995, 41, 495.
[109 ] Beattie J , Self R, Richards M , Electrophoresis, 1995, 16, 322.
[110 ] Strausbauch M , Landers J , Wettstein P, Anal. Chem. , 1996, 68, 306.
[111 ] Arthur C, Chai M , Pawliszyn J , J. Microcol. , 1993, 5, 51.
[112 ] Hawthorne S, Miller D, Pawliszyn J , Arthur C, J. Chromatogr. , 1992, 603, 185.
[113 ] Louch D, Mortlagh S, Pawliszyn J , Anal. Chem. , 1992, 64, 1187.
[114 ] Zhang Z, Yang M J , Pawliszyn J , Anal. Chem. , 1994, 66, 844A.
[115 ] Boyd-Boland A , Pawliszyn J , J. Chromatogr. , 1995, 704, 163.
[116 ] Eisert R, Levsen K, Wiinsch G, J. Chromatogr. , 1994, 638, 175.
[117 ] Eisert R, Levsen K, Fresenius J. Anal. Chem. , 1995, 351, 555.
[118 ] Arthur C, Killam L , Motlagh S, Lim M , Potter D, Pawliszyn J , Environ. Sci. Technol. , 1992,26, 979.
[119 ] Buchholz K, Pawliszyn J , Anal. Chem. , 1994, 66, 160.
[120 ] Schafer B, Engewald W , Fresenius J. Anal. Chem. , 1995, 352, 535.
[121 ] Pan L , Adams M , Pawliszyn J , Anal. Chem. , 1995, 67, 4396.
[122 ] Motlagh S, Pawliszyn J , Anal. Chim. Acta, 1993, 284, 265.
[123 ] Arthur C, Killam L , Buchholz K, Pawliszyn J , Anal. Chem. , 1992, 64, 1960.
[124 ] Chen J , Pawliszyn J , Anal. Chem. , 1995, 67, 2530.
[125 ] Boyd-Boland A A , Pawliszyn J , Anal. Chem. , 1996, 68, 1521.
[126 ] Potter D, Pawliszyn J , J. Chromatogr. , 1992, 625, 247.
[127 ] Cisper M E, Earl W L , Nogar N S, Hemberger P H, Anal. Chem. , 1994, 66, 1897.
[128 ] Otu E, Pawliszyn J , Microchim. Acta, 1993, 112, 41.
[129 ] Chai M , Arthur C, Pawliszyn J , Belardi R, Pratt K, Analyst, 1993, 118, 1501.
[130 ] Zhang Z, Pawliszyn J , J. High Resol. Chromatogr. , 1993, 16, 689.
[131 ] Zhang Z, Pawliszyn J , Anal. Chem. , 1993, 65, 1843.
[132 ] Berg J , Am. Lab. , 1993, Nov. , 18.
[133 ] Potter D, Pawliszyn J , Environ. Sci. Technol. , 1994, 28, 298.
[134 ] Buchholz K, Pawliszyn J , Environ. Sci. Technol. , 1993, 27 (13) , 2844.
[135 ] Arthur C, Belardi R, Pratt K, Motlagh S, Pawliszyn J , J. High Resol. Chromatogr. , 1992, 15,741.
[136 ] Mindrup R, Shirey R, Proceeding of the Water Quality Technology Conference, Miami, FL , 1993.
[137 ] Arthur C, Buchholz K, Motlagh S, Killam L , Pawliszyn J , Proceeding of the 15th Annual E PA Conferenceon Analysis of Pollutants in the Environment, Norfolk, VA , May, 1992.
[138 ] Arthur C, Potter D, Buchholz K, Motlagh S, Pawliszyn J , L C2GC, 1992, 10, 656.
[139 ] Shirey R, J. High Resol. Chromatogr. , 1995, 18, 495.
[140 ] Nilsson T , Pelusio F, Montanarella L , Larsen B, Facchetti S, Madson J , J. High Resol. Chromatogr. , 1995, 18, 617.
[141 ] Morcillo Y, Cai Y, Bayona J , J. High Resol. Chromatogr. , 1995, 18, 767.
[142 ] Boyd-Boland A , Chai M , Luo Y, Zhang Z, Yang M , Pawliszyn J , Gorecki T , Environ. Sci. Technol. , 1994, 28, 569.

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