[1] |
Lange F,Scheurer M,Brauch H J. Artificial sweeteners—a recently recognized class of emerging environmental contaminants: A review [J]. Anal Bioanal Chem,2012,403(9):2503-2518
|
[2] |
Tollefsen K E,Nizzetto L,Huggett D B. Presence, fate and effects of the intense sweetener sucralose in the aquatic environment [J]. Sci Total Environ,2012,438:510-516
|
[3] |
Ferrer I,Thurman E M. Analysis of sucralose and other sweeteners in water and beverage samples by liquid chromatography/time-of-flight mass spectrometry [J]. J Chromatog A,2010,1217(25):4127-4134
|
[4] |
Gan Z W,Sun H W,Wang R N,et al. A novel solid-phase extraction for the concentration of sweeteners in water and analysis by ion-pair liquid chromatography-triple quadrupole mass spectrometry [J]. J Chromatogr A,2013,1274:87-96
|
[5] |
Loos R,Gawlik B M,Boettcher K,et al. Sucralose screening in European surface waters using a solid-phase extraction-liquid chromatography-triple quadrupole mass spectrometry method [J]. J Chromatogr A,2009,1216(7):1126-1131
|
[6] |
Ordóñez E Y,Quintana J B,Rodil R,et al. Determination of artificial sweeteners in water samples by solid-phase extraction and liquid chromatography-tandem mass spectrometry [J]. J Chromatogr A,2012,1256:197-205
|
[7] |
Scheurer M,Brauch H J,Lange F. Analysis and occurrence of seven artificial sweeteners in German waste water and surface water and in soil aquifer treatment (SAT) [J]. Anal Bioanal Chem,2009,394(6):1585-1594
|
[8] |
Brorström-Lundén E,Svenson A,Viktor T,et al. Measurements of sucralose in the Swedish Screening Program 2007- PARTⅠ; Sucralose in surface waters and STP samples [R]. 2008
|
[9] |
Brorström-Lundén E,Svenson A,Viktor T,et al. Measurements of sucralose in the Swedish screening program 2007-part Ⅱ; sucralose in biota samples and regional STP samples [R]. 2008
|
[10] |
Neset T S,Singer H,Longree P,et al. Understanding consumption-related sucralose emissions[CD1*3]A conceptual approach combining substance-flow analysis with sampling analysis [J]. Sci Total Environ,2010,408(16):3261-3269
|
[11] |
Van Stempvoort D R,Roy J W,Brown S J,et al. Artificial sweeteners as potential tracers in groundwater in urban environments [J]. J Hydrol,2011,401(1/2):126-133
|
[12] |
Morlock G E,Schuele L,Grashorn S. Development of a quantitative high-performance thin-layer chromatographic method for sucralose in sewage effluent, surface water, and drinking water [J]. J Chromatogr A,2011,1218(19):2745-2753
|
[13] |
Huntscha S,Singer H P,Mcardell C S,et al. Multiresidue analysis of 88 polar organic micropollutants in ground, surface and wastewater using online mixed-bed multilayer solid-phase extraction coupled to high performance liquid chromatography-tandem mass spectrometry [J]. J Chromatogr A,2012,1268:74-83
|
[14] |
Zygler A,Wasik A,Kot-Wasik A,et al. Determination of nine high-intensity sweeteners in various foods by high-performance liquid chromatography with mass spectrometric detection [J]. Anal Bioanal Chem,2011,400(7):2159-2172
|
[15] |
Buerge I J,Keller M,Buser H R,et al. Saccharin and other artificial sweeteners in soils: Estimated inputs from agriculture and households, degradation, and leaching to groundwater [J]. Environ Sci Technol,2010,45(2):615-621
|
[16] |
Lillicrap A,Langford K,Tollefsen K E. Bioconcentration of the intense sweetener sucralose in a multitrophic battery of aquatic organisms [J]. Environ Toxicol Chem,2011,30(3):673-681
|
[17] |
Torres C I,Ramakrishna S,Chiu C A,et al. Fate of sucralose during wastewater treatment [J]. Environ Eng Sci,2011,28(5):325-331
|
[18] |
Oppenheimer J,Eaton A,Badruzzaman M,et al. Occurrence and suitability of sucralose as an indicator compound of wastewater loading to surface waters in urbanized regions [J]. Water Res,2011,45(13):4019-4027
|
[19] |
Scheurer M,Storck F R,Graf C,et al. Correlation of six anthropogenic markers in wastewater, surface water, bank filtrate, and soil aquifer treatment [J]. J Environ Monit,2011,13(4):966-973
|
[20] |
干志伟,孙红文,冯碧婷. 人工甜味剂在污水处理厂和自来水厂的归趋 [J]. 环境科学研究,2012,25(11):1250-1256
|
[21] |
Buerge I J,Buser H R,Kahle M,et al. Ubiquitous occurrence of the artificial sweetener acesulfame in the aquatic environment: An ideal chemical marker of domestic wastewater in groundwater [J]. Environ Sci Technol,2009,43(12):4381-4385
|
[22] |
Kokotou M G,Asimakopoulos A G,Thomaidis N S. Artificial sweeteners as emerging pollutants in the environment: Analytical methodologies and environmental impact [J]. Anal Methods,2012,4(10):3057-3070
|
[23] |
Hollender J,Zimmermann S G,Koepke S,et al. Elimination of organic micropollutants in a municipal wastewater treatment plant upgraded with a full-scale post-ozonation followed by sand filtration [J]. Environ Sci Technol,2009,43(20):7862-7869
|
[24] |
Scheurer M,Godejohann M,Wick A,et al. Structural elucidation of main ozonation products of the artificial sweeteners cyclamate and acesulfame [J]. Environ Sci Pollut Res Int,2012,19(4):1107-1118
|
[25] |
Soh L,Connors K A,Brooks B W,et al. Fate of sucralose through environmental and water treatment processes and impact on plant indicator species [J]. Environ Sci Technol,2011,45(4):1363-1369
|
[26] |
Sharma V K,Sohn M,Anquandah G A,et al. Kinetics of the oxidation of sucralose and related carbohydrates by ferrate(VI) [J]. Chemosphere,2012,87(6):644-648
|
[27] |
Mead R N,Morgan J B,Avery G B,et al. Occurrence of the artificial sweetener sucralose in coastal and marine waters of the United States [J]. Mar. Chem.,2009,116(1/4):13-17
|
[28] |
Muller C E,Gerecke A C,Alder A C,et al. Identification of perfluoroalkyl acid sources in Swiss surface waters with the help of the artificial sweetener acesulfame [J]. Environ Pollut,2011,159(5):1419-1426
|
[29] |
Labare M,Alexander M. Microbial cometabolism of sucralose, a chlorinated disaccharide, in environmental samples [J]. Appl Microbiol Biotechnol,1994,42(1):173-178
|
[30] |
Knight I. The development and applications of sucralose, a new high-intensity sweetener [J]. Can J Physiol Pharmacol,1994,72(4):435-439
|
[31] |
Kahle M,Buerge I J,Hauser A,et al. Azole fungicides: Occurrence and fate in wastewater and surface waters [J]. Environ Sci Technol,2008,42(19):7193-7200
|
[32] |
Drewes J,Heberer T,Reddersen K. Fate of pharmaceuticals during indirect potable reuse [J]. Water Sci Technol,2002,46(3):73-80
|
[33] |
Aschmann S M,Chew A A,Arey J,et al. Products of the gas-phase reaction of OH radicals with cyclohexane: Reactions of the cyclohexoxy radical [J]. J Phys Chem A,1997,101(43):8042-8048
|
[34] |
Barletta B,Bolzacchini E,Fossati L,et al. Metal-free functionalization of the unactivated carbon-hydrogen bond: The oxidation of cycloalkanes to cycloalkanones with ozone [J]. Ozone-Sci Eng,1998,20(2):91-98
|
[35] |
Scheurer M,Storck F R,Brauch H J,et al. Performance of conventional multi-barrier drinking water treatment plants for the removal of four artificial sweeteners [J]. Water Res,2010,44(12):3573-3584
|
[36] |
Mawhinney D B,Young R B,Vanderford B J,et al. Artificial sweetener sucralose in US drinking water systems [J]. Environ Sci Technol,2011,45(20):8716-8722
|