1,108
Views
65
CrossRef citations to date
0
Altmetric
Original Articles

Spectroscopy: The Best Way Toward Green Analytical Chemistry?

, , , &
Pages 119-138 | Received 08 Dec 2006, Accepted 19 Dec 2006, Published online: 13 Mar 2007

References

  • Office of Pollution Prevention and Toxics . 1996 . 1994 Toxics Release Inventory, Public Data Release, Executive Summary, June, EPA‐745‐S‐96‐001 Washington DC : U.S. Environmental Protection Agency .
  • Anastas , P. T. 1999 . Green chemistry and the role of analytical methodology development . Critical Reviews in Analytical Chemistry , 29 ( 3 ) : 167 – 175 .
  • Anastas , P. T. and Breen , J. J. 1997 . Design for the environment and green chemistry: The heart and soul of industrial ecology . Journal of Cleaner Production , 5 ( 1–2 ) : 97 – 102 .
  • Anastas , P. T. and Warner , J. C. 1998 . “ Principles of green chemistry ” . In Green Chemistry: Theory and Practice 29 – 56 . New York : Oxford University Press .
  • Namieśnik , J. 2001 . Green analytical chemistry—Some remarks . Journal of Separation Science , 24 ( 2 ) : 151 – 153 .
  • Hou , X. D. and Jones , B. T. 2000 . Field instrumentation in atomic spectroscopy . Microchemical Journal , 66 ( 1–2 ) : 115 – 145 .
  • Baron , P. A. 1994 . Direct‐reading instruments for aerozols . A review. Analyst , 119 : 35 – 40 .
  • Stierman , D. J. and Ruedidili , L. C. 1998 . Integrating geophysical and hydrogeological data: an efficient approach to remedial investigations of contaminated ground water . ASTM Special Technical Publication , 963 : 43 – 57 .
  • Worthington , P. G. 1976 . Hydrogeophysical equivalence for water salinity, porosity and matrix conduction in arenaceous aquifers . Ground Water , 14 ( 4 ) : 224 – 232 .
  • Raynie , D. E. 2006 . Modern extraction techniques . Analytical Chemistry , 78 ( 12 ) : 3997 – 4003 .
  • Dan , D. Z. 2003 . “ Introduction ” . In Modern Microwave Sample Preparation Technology 1 – 13 . Chengdu : Sichuan University Press .
  • Jin , Q. H. , Dai , S. S. and Huang , K. M. 2001 . Microwave Chemistry , 1st ed Beijing : Science Press .
  • Bendicho , C. and Lavilla , I. 2000 . Encyclopaedia of Separation Science: Applications of Ultrasound‐Assisted Metal Extractions Vol. 9. , London : Academic Press .
  • Hauptmann , P. , Lucklum , R. , Püttmer , A. and Henning , B. 1998 . Ultrasonic sensors for process monitoring and chemical analysis: State‐of‐the‐art and trends . Sensors and Actuators A: Physical , 67 ( 1–3 ) : 32 – 48 .
  • Barnett , N. W. , Lenehan , C. E. and Lewis , S. W. 1999 . Sequential injection analysis: An alternative approach to process analytical chemistry . Trends in Analytical Chemistry , 18 ( 5 ) : 346 – 353 .
  • Namieśnik , J. 2000 . Trends in environmental analytics and monitoring . Critical Reviews in Analytical Chemistry , 30 ( 2–3 ) : 221 – 269 .
  • Wang , J. 2002 . Real‐time electrochemical monitoring: Toward green analytical chemistry . Accounts of Chemical Research , 35 ( 9 ) : 811 – 816 .
  • Wang , H. Z. 2001 . “ The actuality and prospect of direct analysis for fused metal ” . In Analytical Chemistry in the 21st Century , 1st ed Edited by: Wang , E. K. 323 – 333 . Beijing : Science Press .
  • Workman , J. Jr. , Koch , M. and Veltkamp , D. J. 2006 . Process analytical chemistry . Analytical Chemistry , 77 ( 12 ) : 3789 – 3806 .
  • Workman , J. Jr. , Koch , M. and Veltkamp , D. J. 2003 . Process analytical chemistry . Analytical Chemistry , 75 ( 12 ) : 2859 – 2876 .
  • Workman , J. Jr. , Creasy , K. E. , Doherty , S. , Leonard , B. , Koch , M. , Ullman , A. H. and Veltkamp , D. J. 2001 . Process analytical chemistry . Analytical Chemistry , 73 ( 12 ) : 2705 – 2718 .
  • Workman , J. Jr. , Veltkamp , D. J. , Dohe , S. , Anderson , B. B. , Creasy , K. E. , Koch , M. , Tatera , J. F. , Robinson , A. L. , Bond , L. , Burgess , L. W. , Bokerman , G. N. , Ullman , A. H. , Darser , G. P. , Mozayeni , F. , Bamberger , J. A. and Greenwood , M. S. 1999 . Process analytical chemistry . Analytical Chemistry , 71 ( 12 ) : 121 – 180 .
  • Blaser , W. W. , Bedeweg , R. A. , Harner , R. S. , LaPack , M. A. , Leugers , A. , Martin , D. P. , Pell , R. J. , Workman , J. Jr. and Wright , L. G. 1995 . Process analytical chemistry . Analytical Chemistry , 67 ( 12 ) : 47R – 70R .
  • Beebe , K. R. , Blaser , W. W. , Bredeweg , R. A. , Chauvel , J. P. Jr. , Harner , R. S. , LaPack , M. , Leugers , A. , Martin , D. P. , Wright , L. G. and Yalvac , E. D. 1993 . Process analytical chemistry . Analytical Chemistry , 65 ( 12 ) : 199R – 216R .
  • Jin , Q. H. 2000 . “ Foreseeing the trends of development of analytical chemistry and analytical instruments ” . In Analytical Chemistry: Achievements and Challenges Edited by: Huang , B. L. and Zhang , Z. J. Chongqing : Southwest Nomal University Press .
  • Kalnicky , D. J. and Singhvi , R. 2001 . Field portable XRF analysis of environmental samples . Journal of Hazardous Materials , 83 ( 1–2 ) : 93 – 122 .
  • Piorek , S. 1994 . Principles and applications of man—Portable X‐ray fluorescence spectrometry . Trends in Analytical Chemistry , 13 ( 7 ) : 281 – 286 .
  • Hou , X. D. , He , Y. H. and Jones , B. T. 2004 . Recent advances in portable X‐ray fluorescence spectrometry and applications . Applied Spectroscopy Reviews , 39 ( 1 ) : 1 – 25 .
  • Sarrazin , P. , Blake , D. F. , Bish , D. , Vaniman , D. and Collins , S. 1998 . A miniature XRD/XRF instrument for in‐situ characterization of Martian soils and rocks . Journal de Physique IV , 8 : Pr5/465 – Pr5/470 .
  • Blake , D. F. 2000 . Remote X‐ray diffraction and X‐ray fluorescence analysis on planetary surfaces . Advances in X‐Ray Analysis , 43 : 518 – 527 .
  • Gao , R. Q. and Fan , S. F. 2002 . Principles and applications of modern near infrared spectroscopic techniques . Fenxi Yiqi , 3 : 9 – 12 .
  • Hindle , P. H. 2001 . “ Historical development ” . In Handbook of Near Infrared Analysis , 2nd edn. Edited by: Burns , D. A. and Ciurczak , E. W. 1 – 7 . New York : Marcel Dekker Inc .
  • Lu , W. Z. 2001 . “ Modern near infrared spectroscopic analysis ” . In Analytical Chemistry in the 21st Century , 1st edn. Edited by: Wang , E. K. 36 – 45 . Beijing : Science Press .
  • Tosi , S. , Rossi , M. , Tamburini , E. , Vaccari , G. , Amaretti , A. and Matteuzzi , D. 2003 . Assessment of in‐line near‐infrared spectroscopy for continuous monitoring of fermentation processes . Biotechnology Progress , 19 ( 6 ) : 1816 – 1821 .
  • McClure , W. F. 1994 . Near‐infrared spectroscopy: The giant is running strong . Analytical Chemistry , 66 ( 1 ) : 43A – 54A .
  • Rodriguez‐Otero , J. L. , Hermida , M. and Centeno , J. 1997 . Analysis of dairy products by near‐infrared spectroscopy: A review . Journal of Agricultural and Food Chemistry , 45 ( 8 ) : 2815 – 2819 .
  • Cen , H. Y. and He , Y. 2007 . Theory and application of near infrared reflectance spectroscopy in determination of food quality . Trends in Food Science & Technology , 18 ( 2 ) : 72 – 83 .
  • Hu , J. M. 2001 . “ Laser analysis ” . In Analytical Chemistry in the 21st Century , 1st edn. Edited by: Wang , E. K. 64 – 74 . Beijing : Science Press .
  • Singh , R. 2002 . Raman and the discovery of the Raman effect . Physics in Perspective , 4 ( 4 ) : 399 – 420 .
  • Smith , G. D. and Clark , R. J.H. 2004 . Raman microscopy in archaeological science . Journal of Archaeological Science , 31 ( 8 ) : 1137 – 1160 .
  • Mulvaney , S. P. and Ceating , C. D. 2000 . Raman spectroscopy . Analytical Chemistry , 72 ( 12 ) : 145 – 158 .
  • Pappas , D. , Smith , B. W. and Winefordner , J. D. 2000 . Raman spectroscopy in bioanalysis . Talanta , 51 ( 1 ) : 131 – 144 .
  • Dijkstra , R. J. , Ariese , F. , Gooijer , C. and Brinkman , U. A.Th. 2005 . Raman spectroscopy as a detection method for liquid‐separation techniques . Trends in Analytical Chemistry , 24 ( 4 ) : 304 – 323 .
  • Gondal , M. A. , Dastageer , A. and Shwehdi , M. H. 2004 . Photoacoustic spectrometry for trace gas analysis and leak detection using different cell geometries . Talanta , 62 ( 1 ) : 131 – 141 .
  • Pandhija , S. , Rai , N. K. , Singh , A. K. , Rai , A. K. and Gopal , R. 2006 . Development of photoacoustic spectroscopic technique for the study of materials . Progress in Crystal Growth and Characterization , 52 ( 1–2 ) : 53 – 60 .
  • Dóka , O. , Bicanic , D. D. , Dicko , M. H. and Slingerland , M. A. 2004 . Photoacoustic approach to direct determination of the total phenolic content in red sorghum flours . Journal of Agricultural and Food Chemistry , 52 ( 8 ) : 2133 – 2136 .
  • Kapil , J. C. , Joshi , S. K. and Rai , A. K. 2003 . In situ photoacoustic investigations of some optically transparent samples like ice and snow . Review of Scientific Instruments , 74 ( 7 ) : 3536 – 3543 .
  • Kapil , J. C. , Satyawali , P. K. and Sethi , D. N. 2005 . Vis‐NIR overtone bands of snow: Photoacoustic spectroscopy . Cold Regions Science and Technology , 43 ( 3 ) : 164 – 176 .
  • Li , J. S. , Gao , X. M. , Le , W. Z. , Cao , Z. S. , Deng , L. H. , Zhao , W. X. , Huang , M. Q. and Zhang , W. J. 2006 . Near‐infrared diode laser wavelength modulation‐based photoacoustic spectrometer . Spectrochimica Acta A , 64 ( 2 ) : 338 – 342 .
  • Stchur , P. , Yang , K. X. , Hou , X. D. , Sun , T. and Michel , R. G. 2001 . Laser exited atomic fluorescence spectrometry—A review . Spectrochimica Acta B , 56 ( 9 ) : 1565 – 1592 .
  • Fink , H. , Panne , U. and Niessner , R. 2002 . Process analysis of recycled thermoplasts from consumer electronics by laser‐induced plasma spectroscopy . Analytical Chemistry , 74 ( 17 ) : 4334 – 4342 .
  • Luo , G. M. and Wang , Y. M. 2001 . “ The prospect of capillary electrophoresis ” . In Analytical Chemistry in the 21st Century , 1st edn. Edited by: Wang , E. K. 102 – 111 . Beijing : Science Press .
  • Tagliaro , F. and Smith , F. P. 1996 . Forensic capillary electrophoresis . Trends in Analytical Chemistry , 15 ( 10 ) : 513 – 525 .
  • Altria , K. D. and Elder , D. 2004 . Overview of the status and applications of capillary electrophoresis to the analysis of small molecules . Journal of Chromatography A , 1023 ( 1 ) : 1 – 14 .
  • Kraly , J. , Fazal , Md. A. , Schoenherr , R. M. , Bonn , R. , Harwood , M. M. , Turner , E. , Jones , M. and Dovichi , N. J. 2006 . Bioanalyttical applications of capillary electrophoresis . Analytical Chemistry , 78 ( 12 ) : 4097 – 4110 .
  • Ding , J. M. and Vouros , P. 1999 . Advances in CE/MS: Recent developments in interfaces and applications . Analytical Chemistry , 71 ( 11 ) : 378A – 385A .
  • Cammann , G. G. , Guilbault , E. A. , Hall , H. , Kellner , R. and Wolfbeis , O. S. 1996 . The Cambridge Definition of Chemical Sensors New York : Cambridge University Press .
  • Jiang , Z. H. and Ma , L. R. 1995 . Advances in the research of chemical and biological sensors . Bulletin of the Academy of Military Medical Sciences , 19 ( 4 ) : 306 – 309 .
  • Yao , S. Z. 2001 . “ Piezoelectric chemical and bio‐ sensor ” . In Analytical Chemistry in the 21st Century , 1st edn. Edited by: Wang , E. K. 242 – 254 . Beijing : Science Press .
  • Wolfbeis , O. S. 2006 . Fiber‐optic chemical sensors and biosensors . Analytical Chemistry , 78 ( 15 ) : 3859 – 3874 .
  • Manz , A. , Graber , N. and Widmer , H. M. 1990 . Miniaturized total chemical analysis system. A novel concept for chemical sensing . Sensors and Actuators B: Chemistry , 1 ( 1–6 ) : 244 – 248 .
  • Reyes , D. R. , Ilssifidis , D. , Auroux , P.‐A. and Manz , A. 2002 . Micro total analysis systems. 1. Introduction, theory, and technology . Analytical Chemistry , 74 ( 12 ) : 2623 – 2636 .
  • Dittrich , P. S. , Tachikawa , K. and Manz , A. 2006 . Micro total analysis systems. Latest advancements and trends . Analytical Chemistry , 78 ( 12 ) : 3887 – 3907 .
  • Auroux , P.‐A. , Iossifidis , D. , Reyes , D. R. and Manz , A. 2002 . Micro total analysis systems. 2. Analytical standard operations and applications . Analytical Chemistry , 74 ( 12 ) : 2637 – 2652 .
  • Xu , C. L. , Li , B. X. and Zhang , Z. J. 2003 . Recent developments in detectors for micro total analysis system . Chinese Journal of Analytical Chemistry , 31 ( 2 ) : 1520 – 1526 .
  • Greenwood , P. A. , Merrin , C. , McCreedy , T. and Greenway , G. M. 2002 . Chemiluminescence μTAS for the determination of atropine and pethidine . Talanta , 56 ( 3 ) : 539
  • McCreedy , T. 2000 . Fabrication techniques and materials commonly used for the production of microreactors and micro total analytical systems . Trends in Analytical Chemistry , 19 ( 6 ) : 396 – 401 .
  • Hjeresen , D. L. , Kirchhoff , M. M. and Lankey , R. L. 2002 . Green chemistry: Environment, economics, and competiveness . Corporate Environmental Strategy , 9 ( 3 ) : 259 – 266 .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.