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           Determination of Cyromazine and Dicyclanil Residues on¡¡Greasy Wool by High Performance Liquid Chromatography¡¡FAN Yuan-Mu£¬YU Xue-Jun£¬GU Xiao-Jun£¬YIN Ju-Yi£¬QIU Ya-Jun,CHEN Shu-Bing£¬CHEN Jie£¬ZHAN Jia£¬HE Xiao-Yu£¬CHEN Jun£¬HUANG Shao-Tang*£¨Ningbo Entry-Exit Inspection and Quarantine Buereau of People¡¯s Republic of China£¬Ningbo 315012£©Abstract  A method for the determination of cyromazine and dicyclanil residues on greasy wool was developed with HPLC and confirmed with HPLC-MS/MS.The cyromazine and dicyclanil residues on greasy wool were extracted with 1% trichloroacetic acid solution with ultrasonic£¬and cleaned up by MCX SPE column.The HPLC separation was performed on a Hypersil NH2 using water-acetonitrile(£Ö/£Ö) as the mobile phase with gradient elution and detected at the wavelength of 214 nm.The corroboration method of HPLC-MS/MS was used with electro-spray ionization of positive ion mode.The £ÛM+H]£« and characteristic ions of dicyclanil were m/z 191.0£¬150.0 and 163.0£¬and cyromazine were m/z 167.0£¬85.0 and 125.0.The linear ranges of cyromazine and dicyclanil were 0.05£­5.0 mg/L.There were good linear relationships between the peak area and concentration in the linear range.The correlation coefficient was 0.9999.The detection limit of cyromazine was 0.02 mg/kg£¬and dicyclanil was 0.01 mg/kg.The average recoveries of cyromazine and the dicyclanil were 95.0%£­99.9% and 83.6%£­92.2%£¬respectively.

¡¡¡¡Keywords  Cyromazine£»Dicyclanil£»£Çreasy wool£»Pesticide residue£»£Èigh performance liquid chromatography£»£Èigh performance liquid chromatography-tandem mass spectrometry

¡¡¡¡1  ÒýÑÔ

¡¡¡¡ÃðÓ¬°·£¬ÓÖÃû»·±û°±àº£¬ÊÇÈýàºÀàÀ¥³æÉú³¤µ÷½Ú¼Á£¬¿ÉÒÖÖÆË«³áÄ¿¼°²¿·ÖÇʳáÄ¿À¥³æÓ׳æµÄÉú³¤·¢ÓýºÍÓ𻯣¬±»¹ã·ºÌí¼Óµ½¶¯ÎïËÇÁÏÖУ¬ÓÃÓÚ¿ØÖƶ¯Îï¾ÇÉáÄÚÓ¬ÇùµÄÉú³¤·¢Óý¡£ÆäÔÚ¶¯ÎïÌåÄڵĴúлÎïÈý¾ÛÇè°·£¬Äܵ¼ÖÂСÊó°òë×Ö×Áö£¬ÃÀ¹úºÍÅ·Ã˸÷¹ú¾ùÖÆ¶¨ÁËÑϸñµÄËÇÁÏÌí¼ÓŨ¶ÈºÍÐó²úÆ·ÖеÄ×î¸ß²ÐÁôÏÞÁ¿Îª0.05 mg/kg¡£ »·³æë棬ÓÖÃûµØÎôÄá¶û£¬ÊǸÉÈÅÀ¥³æ±íƤÐγɵÄÀ¥³æÉú³¤µ÷½Ú¼Á£¬¾ßÓкÜÇ¿µÄ¸½×ÅÁ¦£¬¶ÔÌåÍâ¼ÄÉú³æ¾ßÓÐÁ¼ºÃµÄ³ÖЧÐÔ£¬ÄÜÓÐЧ·ÀÖÎÃÞ»¨¡¢ÓñÃ×µÈ×÷ÎïµÄÂÌäòíÏó¡¢ÑÌѿҹ¶ê¡¢ÃÞÁåÏóµÈº¦³æ£¬²¢ÓÐЧ·ÀÖμÒÓ¬ºÍ°£¼°ÒÁÎá£1992Äê¹ú¼ÊÑòë¾ÖΪ¹Ø×¢Éú̬»·¾³£¬¿ªÊ¼¶Ôº¬Ö¬Ñòë½øÐÐÒ©Îï²ÐÁô¼ì²â[1]£¬ 1994ÄêÔÚÑòëÖмì³öÃðÓ¬°·£¬1999Äê¼ì³ö»·³æë档ŷÃËÓйطÄ֯ƷÉú̬±êÇ©£¨Eco-labe1£©±ê×¼µÄÖ¸Á2002£¯37I£¯EC£©ºÍ¹ú¼Ê·Ä֯ƷÉú̬ѧÑо¿Óë¼ì²âЭ»áµÄÉú̬·Ä֯Ʒ±ê×¼100£¨Oeko-Tex standard 100£©¶¼¶Ôɱ³æ¼ÁÔÚÑòë»ò·Ä֯ƷÖеIJÐÁôÌá³öÁËÏÞÁ¿ÒªÇó¡£2007ÄêÐÞ¶©µÄEco-labe1±ê×¼[2]¹æ¶¨£¬À¥³æÉú³¤µ÷½Ú¼ÁÔÚº¬Ö¬Ñòë¼°ÆäËüº¬½Çµ°°×ÏËάÖеIJÐÁô²»µÃ³¬¹ý2 mg/kg¡£

¡¡¡¡Ä¿Ç°£¬ÓйØÃðÓ¬°·ºÍ»·³æëæ²ÐÁôÁ¿¼ì²â·½·¨½ÏÉÙ[3~8]£¬Ö÷ÒªÓÐÊ߲˺ÍÍÁÈÀÖÐÃðÓ¬°·¼°Æä´úлÎïÈý¾ÛÇè°·µÄ¼ì²â£¬¼ì²â·½·¨Ö÷ÒªÓÐHPLC£¬HPLC-MS/MSºÍGC-MS£¬¶øº¬Ö¬ÑòëÖÐÃðÓ¬°·¡¢»·³æëæ²ÐÁôÁ¿¼ì²â·½·¨Î´¼û±¨µÀ¡£ÃðÓ¬°·¡¢»·³æëæÓëÈý¾ÛÇè°·µÄ»¯Ñ§½á¹¹ÏàËÆ£¬±¾Ñо¿²Î¿¼ÎÄÏ×[3¡«12]£¬½¨Á¢ÁËÈýÂÈÒÒËáÈÜÒºÌáÈ¡£¬MCXÖù¸»¼¯Óë¾»»¯£¬¸ßЧҺÏàÉ«Æ×£¨HPLC£©¼ì²âµÄ·½·¨¡£

¡¡¡¡2  ÊµÑ鲿·Ö

¡¡¡¡2.1  ÒÇÆ÷ÓëÊÔ¼Á

¡¡¡¡Agilent1100 HPLC£¨ÃÀ¹úAgilent¹«Ë¾£©£» API 3000 MS/MS´®ÁªÖÊÆ×¼ì²âÆ÷£¨¼ÓÄôóABI ¹«Ë¾£©£» SIGMA-3K̨ʽ¸ßËÙÀä¶³ÀëÐÄ»ú£¨Sigma¹«Ë¾£©£» QL-901ÐýÎлìºÏÆ÷£¨ÆäÁÖ±´¶ûÒÇÆ÷ÖÆÔ칫˾£©£» ¹ÌÏàÝÍÈ¡ÒÇ£¨Supelco¹«Ë¾£©£» N-EVAPTMµª´µÒÇ£» ³¬Éù²¨ÇåÏ´ÒÇ£¨50 Hz£©£» Oasis MCX SPEÖù£¨ÃÀ¹úWaters¹«Ë¾£©¡£

¡¡¡¡ÃðÓ¬°·£¨Cyromazine£©ºÍ»·³æë棨Dicyclanil£©£¬¹º×ÔDr.Ehrenstorfer£¬´¿¶È99.0%£» ÒÒëæºÍ¼×´¼£¨HPLC¼¶£¬ Tedia¹«Ë¾£©£¬°±Ë®ºÍÈýÂÈÒÒËᣨ·ÖÎö´¿£©£»  Ë®Îª³¬´¿Ë®¡£

¡¡¡¡º¬Ö¬ÑòëÑùÆ·£¨Àû»ªÑò빤ҵÓÐÏÞ¹«Ë¾£¬±àºÅ060427£¬070126£¬071031£¬070716£¬071012£©£¬£­20 ¡æ±£´æ¡£

¡¡¡¡2.2  ÊÔÑùǰ´¦Àí

¡¡¡¡³ÆÈ¡2 gÊÔÑùÓÚ250 mL×¶ÐÎÆ¿ÖУ¬¼ÓÈë80 mL 1% ÈýÂÈÒÒËáÈÜÒº£¬Õñµ´£¬Ê¹ÈÜÒº³ä·ÖÈóʪÑòëºó³¬ÉùÌáÈ¡30 min£¬¹ýÂË£¬È¡40 mLÂËÒº¹ýSPEÖù¾»»¯¡£

¡¡¡¡·Ö±ðÓÃ6 mL¼×´¼¡¢6 mLˮԤÁÜÏ´MCXÖù£¬È»ºóÉÏÊÔÑù£¬ÓÃ6 mL 0.01 mol/L HClÈÜҺϴµÓMCXÖù£¬ÔÙÓÃ6 mLË®ºÍ6 mL¼×´¼Ï´µÓMCXÖù£¬³é¸ÉºóÓÃ10%°±Ë®-¼×´¼ÈÜÒº6 mLÏ´ÍѲ¢½ÓÊÕ£¬Ï´ÍÑÒºÓÚ40 ¡æË®Ô¡ÖÐÒÔµªÆø´µ¸É£¬×îºóÓÃ1 mLÒÒëæÈܽⲢ¶¨ÈÝ£¬¹ý0.45 ¦ÌmÂËĤºó±¸Óá£
   
¡¡¡¡2.3  É«Æ×ÖÊÆ×Ìõ¼þ

¡¡¡¡Hypersil NH2É«Æ×Öù£¨250 mm¡Á4.6 mm£¬ 5 ¦Ìm£©£»ÖùΣº30 ¡æ£»Á÷ËÙ£º1.0 mL/min£»¼ì²â²¨³¤£º214 nm£»½øÑùÁ¿£º20 ¦ÌL¡£Á÷¶¯Ïࣺˮ£¨A£©-ÒÒëæ(B)£¬ÌݶÈÏ´ÍÑ£º 0¡«5.5 min£¬ 97% B£»5.5¡«6 min£¬97%¡ú90% B£»6¡«20 min£¬90% B£»20¡«21 min£¬90%¡ú97% B¡£

¡¡¡¡MS/MSÌõ¼þ£ºÕýÀë×ÓµçÅçÎíµçÀ루ESI+£©£»Àë×ÓÔ´Îí»¯Î¶ȣº500 ¡æ£»Åö×²Æø¡¢ÆøÁ±ÆøºÍÎí»¯Æø¾ùΪ¦­£²£¬Á÷Á¿·Ö±ðΪ8£¬6ºÍ14 mL/min£» ¾Û½¹µçѹ£º82 V£»ÎüÈëµçѹ£º10 V£»ÅöײµçºÉÎüÈëµçѹ£º13 V£»ÒÔ¶à·´Ó¦¼à²âģʽ²â¶¨£»ÆäËüÌõ¼þ¼û±í1¡£

¡¡¡¡±í1  ÃðÓ¬°·ºÍ»·³æëæµÄLC-MS/MS²â¶¨Ìõ¼þ£¨ÂÔ£©

¡¡¡¡Table 1  Determination conditions of cyromazine and dicyclanil

¡¡¡¡*£º¶¨Á¿Àë×Ó¶Ô(£Ñuantitative ions)¡£

¡¡¡¡3  ½á¹ûÓëÌÖÂÛ

¡¡¡¡3.1  ÌáÈ¡¾»»¯Ìõ¼þµÄÑ¡Ôñ

¡¡¡¡ÓÉÓÚÃðÓ¬°·ºÍ»·³æëæ¾ùΪ¼«ÐÔÎïÖÊ£¬Î¢ÈÜÓÚË®£¬¿ÉÈÜÓÚÈÈË®¡¢ÒÒ´¼£¬Æä½á¹¹Ó뻯ѧÐÔÖÊÓëÈý¾ÛÇè°··Ç³£½Ó½ü¡£³£¼ûµÄÈý¾ÛÇè°·ÌáȡҺÓУºÁ×ËáÑλº³åÈÜÒº(pH 2)¡¢Ï¡HCl¡¢20%¶þÒÒ°·¡¢20%°±Ë®-ÒÒëæÈÜÒº¡¢¼×´¼µÈ¡£±¾Ñо¿±È½ÏÁ˼״¼¡¢ÒÒëæ¡¢Ë®ºÍ1%ÈýÂÈÒÒËáË®ÈÜÒºµÈ²»Í¬ÈܼÁµÄÌáȡЧ¹û£¬×îÖÕÑ¡¶¨ÒÔ1%ÈýÂÈÒÒËáΪÌáÈ¡¼Á¡£±È½ÏÁ˲»Í¬Ê±¼äµÄÌáȡЧÂÊ£¬×îÖÕÈ·¶¨³¬ÉùÌáÈ¡30 min¡£ÃðÓ¬°·ºÍ»·³æëæ¾ùΪÈõ¼îÐÔ»¯ºÏÎ±È½ÏÁËENVITM-FlorisilСÖù¡¢Waters Oasis HLBСÖù¼°Waters Oasis MCXСÖù¾»»¯Ð§¹û£¬ÊµÑé±íÃ÷£¬ÔÚWaters Oasis MCX¹ÌÏàÝÍȡСÖùÉϾ»»¯Ð§¹û×îºÃ¡£ÔÚËáÐÔÌõ¼þÏÂÉÏÑù£¬Ê¹´ý²âÎï±£³ÖÕýÀë×Ó̬¶ø±»Îü¸½ÔÚ¹ÌÏàÝÍÈ¡ÖùÉÏ£¬ÒÀ´ÎÓÃ6 mL 0.01 mol/L HClÈÜÒº¡¢ 6 mLË®ºÍ6 mL¼×´¼Ï´µÓMCXÖù£¬ÔÙÓÃ6 mL 10%°±Ë®-¼×´¼ÈÜҺϴÍÑ£¬ÄÜÓÐЧȥ³ý»ùÖʸÉÈÅ£¬¿É»ñµÃ½Ï¸ßµÄ»ØÊÕÂʺͽϺõÄÖØÏÖÐÔ¡£

¡¡¡¡3.2  É«Æ×Ìõ¼þµÄÑ¡Ôñ

¡¡¡¡Í¼1  ÃðÓ¬°·¡¢»·³æëæ±ê×¼ÈÜÒº£¨a£©¡¢¿Õ°×ÑòëÑùÆ·(b)¼°¼Ó±êÑòëÑùÆ·(c)É«Æ×ͼ£¨ÂÔ£©

¡¡¡¡Fig.1  Chromatogram of standard solution£¨a£©£¬ greasy wool blank sample(b) and greasy wool sample added standard solution(c)

¡¡¡¡1,1¡¯£®»·³æë棨Dicyclanil£©£» 2,2¡¯£®ÃðÓ¬°·£¨Cyromazine£©¡£

¡¡¡¡ÔÚ190¡«400 nm²¨³¤·¶Î§ÄÚ¶ÔÃðÓ¬°·¡¢»·³æëæ»ìºÏ±ê×¼ÈÜÒº½øÐв¨³¤É¨Ã裬·¢ÏÖÁ½ÖÖÎïÖʾùÔÚ214 nm´¦ÓнϺÃÎüÊÕ¡£±¾·½·¨ÒÔ214 nmΪ¼ì²â²¨³¤¡£ÒòÃðÓ¬°·ºÍ»·³æëæ¾ùΪ¼«ÐÔÎïÖÊ£¬ÔÚÆÕͨµÄC18ÖùÉϱ£ÁôÖµºÜµÍ£¬ºÜÄѽøÐзÖÎö¡£ÃðÓ¬°·ºÍ»·³æë漫Ò×ÓëC18ÖùÉϲÐÓàµÄ¹è´¼»ùÐγÉÇâ¼ü£¬Ê¹µÃ·åÐÎÍÏ⣬Òò´ËÐèÒªÔÚÁ÷¶¯ÏàÖмÓÈëÀë×Ó¶ÔÊÔ¼Á»ò¼ÓËá¿ÉÒÔÔö¼ÓC18Öù¶ÔÃðÓ¬°·ºÍ»·³æëæµÄ±£Áô²¢¸ÄÉÆ·åÐΡ£±¾Ñо¿²Î¿¼ÎÄÏ×[3~1£²]£¬ ¶Ô²»Í¬µÄC18ÖùºÍNH2Öù½øÐÐÁ˱Ƚϣ¬·¢ÏÖNH2Öù·ÖÀëЧ¹ûÓÅÓÚC18Öù£¬¾ßÌåÌõ¼þ¼û2.3½Ú¡£¶ÔÔÓÖʺÍÄ¿±ê·åÄÜÍêÈ«·ÖÀ룬²¢ÇÒÄÜʹ±ê×¼·åµÄÏìÓ¦½Ï¸ß£¬ËµÃ÷±¾·½·¨¶ÔÃðÓ¬°·ºÍ»·³æëæ²ÐÁôµÄ²â¶¨ÊÇ¿ÉÐеġ£ÃðÓ¬°·ºÍ»·³æëæµÄ±êÑùÈÜÒº¡¢¿Õ°×ÑòëÊÔÑù¼°ÑòëÊÔÑù¼Ó±êÉ«Æ×ͼ¼ûͼ1¡£

¡¡¡¡3.3  ÏßÐÔ¹ØÏµ¼°¼ì³öÏÞ

¡¡¡¡ÓÃÒÒëæÅäÖÆÃðÓ¬°·-»·³æë棨Ũ¶È±È2¡Ã1£©»ìºÏ±êÑùÖü±¸ÈÜÒº£¨ÒÔÃðÓ¬°·Å¨¶È¼Æ£¬ÒÔÏÂͬ£©£¬²¢ÓÃÒÒëæÒÀ´ÎÏ¡ÊÍÖÁ0.05£¬0.1£¬0.5£¬1.0ºÍ5.0 mg/LµÄ±ê×¼¹¤×÷ÇúÏßÈÜÒº£¬ÔÚÓÅ»¯µÄʵÑéÌõ¼þÏ£¬ÃðÓ¬°·ÏßÐÔ·½³ÌÊÇy=216.95x£­2.93£¬Ïà¹ØÏµÊýr=0.99999£»»·³æëæÏßÐÔ·½³ÌΪy=175.32x£­1.19£¬Ïà¹ØÏµÊýr=0.99986£¬Óɴ˿ɼû¶þÕß¾ùÓкܺõÄÏßÐÔ¹ØÏµ¡£¸ù¾ÝS/N¡Ý10£¬±¾·½·¨¶ÔÃðÓ¬°·µÄ¼ì³öÏÞΪ0.02 mg/kg£¬¶Ô»·³æëæµÄ¼ì³öÏÞΪ0.01 mg/kg¡£ÔÚ 0.05¡«5.0 mg/L·¶Î§ÄÚÄܹ»Âú×㶨Á¿·ÖÎö¶þÕß²ÐÁôµÄÒªÇó¡£

¡¡¡¡±í2  ÑòëÑùÆ·¼Ó±ê»ØÊÕÂÊʵÑé½á¹û£¨ÂÔ£©

¡¡¡¡Table 2  Spiked recoveries of cyromazine and dicyclanil on greasy wool sample

¡¡¡¡3.4  ¾«ÃܶȺͻØÊÕÂÊʵÑé

¡¡¡¡ÔÚÏàͬµÄʵÑéÌõ¼þÏ£¬·Ö±ð²â¶¨Ìí¼Ó0.2£¬ 1.0ºÍ2.0 mg/kgÃðÓ¬°·±ê׼Ʒ£¬0.1£¬ 0.5ºÍ1.0 mg/kg»·³æëæ±ê×¼µÄº¬Ö¬ÑòëÑùÆ·¸÷3´Î£¬Æ½¾ù»ØÊÕÂʼì²â½á¹û¼û±í2¡£°´ÕÕ2.2½ÚÖÐÃðÓ¬°·¡¢»·³æëæÌáÈ¡·½·¨£¬¶ÔÑòë½øÐÐ3ÖÖŨ¶ÈµÄÌí¼Ó»ØÊÕÂʺ;«ÃܶÈʵÑ飬Æäƽ¾ùÌí¼Ó»ØÊÕÂÊ£º ÃðÓ¬°·ÔÚ95.0%~99.9%Ö®¼ä£¬»·³æëæÔÚ83.6%¡«92.2%Ö®¼ä£» ÃðÓ¬°·µÄÏà¶Ô±ê׼ƫ²îΪ7.£±%¡«17.£¶%£¬»·³æëæµÄÏà¶Ô±ê׼ƫ²îΪ6.1%¡«17.3%¡£ËµÃ÷±¾·½·¨¶ÔÑòëÖÐÃðÓ¬°·ºÍ»·³æëæµÄ¼ì²âÖØÏÖÐԺã¬×¼È·¶È½Ï¸ß¡£

¡¡¡¡3.5  HPLC-MS/MSÈ·Ö¤

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¡¡¡¡Fig.2  Total ion chromatogram of dicyclanil and cyromazine

¡¡¡¡1.»·³æë棨Dicyclanil£©£»2.ÃðÓ¬°·£¨Cyromazine£©.

¡¡¡¡3.6  ÑùÆ·²â¶¨

¡¡¡¡Ó¦Óý¨Á¢µÄ·½·¨²â¶¨º¬Ö¬ÑòëÑùÆ·ÖеÄÃðÓ¬°·¡¢»·³æëæµÄº¬Á¿£¬¸ù¾Ý»¯ºÏÎïµÄÉ«Æ×·å±£Áôʱ¼ä¶¨ÐÔ£¬·åÃæ»ý¶¨Á¿£¬¸ù¾Ý»¯ºÏÎïµÄÖÊÆ×Àë×Ó·á¶È±È½øÐÐÈ·Ö¤£¬¼ì²â½á¹û¼û±í3£¬ÑòëÑùÆ·É«Æ×ͼ¼ûͼ3¡£
  
¡¡¡¡Í¼3  ÑòëÑùÆ·É«Æ×ͼ£¨ÂÔ£©

¡¡¡¡Fig.3  Chromatogram of greasy wool sample

¡¡¡¡1£® »·³æë棨Dicyclanil£©£»  2£® ÃðÓ¬°·£¨Cyromazine£©¡£

¡¡¡¡±í3  º¬Ö¬ÑòëÑùƷʵÑé½á¹û£¨ÂÔ£©

¡¡¡¡Table 3  Results of cyromazine and dicyclanil in greasy wool sample

¡¾²Î¿¼ÎÄÏס¿
  1 Nunn C R£¬Russell I M£¬Williams S.Residues of Pesticides in Australian Wool 2004-2005: Results from AWI Survey.http://www.awta.com.au/Documents ... TO2005_11_RWG03.pdf£Û2007-04-03£Ý

¡¡¡¡2 Revision of the Textile Eco-label Draft final report-July 13th 2007.http://ec.europa.eu/environment/ ... ckground_report.pdf[2008-07-30]

¡¡¡¡3 Sancho J V,Ib¨¢¨¾ez M,Grimalt S£¬Pozo ¦„ £Ê£¬Hern¢~ndez F.Anal.Chim.Acta£¬2005£¬530£¨2): 237~243

¡¡¡¡4 Yokley R A£¬Mayer L C£¬Rezaaiyan R£¬Myra E.Journal of Agricultral Food Chemistry£¬ 2000£¬48(8)£º 3352~3358

¡¡¡¡5 H£Å Mao-Hua(ºÎﻪ)£¬ MU Wei(Ľ ÎÀ)£¬LIU Feng(Áõ ·å)£¬ZHANG Yue-Liang(ÕÅÔÂÁÁ).Journal of Shandong Agricultural University(Natural Science)(ɽ¶«Å©Òµ´óѧѧ±¨)£¬2004£¬35(3) £º 383¡«385

¡¡¡¡6 W£Á£Î£Ç Ran£¨Íõ Ƚ£©£¬L£É£Õ Tie-Zheng(ÁõÌúï£)£¬ L£É£Õ Wei-Rong(ÁøÎ°ÈÙ).Acta Agriculturae Zhejiangens (Õ㽭ũҵѧ±¨)£¬ 2005£¬ 17(6)£º 376¡«379

¡¡¡¡7 G£Õ£Ï Jun(¹ù óÞ)£¬ M£Ï Han-Hong£¨Äªºººê£©£¬ A£Î Feng-Chun£¨°²·ï´º£©£¬ LI Jian-Zhong(ÀÖÐ)£¬ZHENG Ming-Hui(Ö£Ã÷»Ô).Environmental Chemistry£¨»·¾³»¯Ñ§£©£¬2004£¬23(6)£º700~703

¡¡¡¡8 W£Á£Î£Ç Ran£¨Íõ Ƚ£©£¬L£É£Õ Wei-Rong(ÁøÎ°ÈÙ)£¬G£Å£Î£Ç Zhi-Ming£¨¹¢Ö¾Ã÷£©£¬CHEN Ming(³Â Ã÷)£¬LIU Tie-Zeng(ÁõÌúï£).China Feed(ÖйúËÇÁÏ)£¬ 2005£¬ 2£º 34~36

¡¡¡¡9 DD CEN/TS.Materials and articles in contact with foodstuffs-Plastics substances subject to limitation-Part 27etermination of 2,4,6-teiamino-1,3,5-triazine in food simulants

¡¡¡¡10 LIU Mei£¨Áõ ÷£©£¬LI Jin-Qiang(Àî½ðÇ¿)£¬TIAN De-Jian(ÌïµÂ½ð)£¬LI Pei-Nuan(Àů)£¬CAO Peng(²Ü Åô)£¬FU Jian(¸¶ ½¨)£¬LOU Xi-Shan(¦ϲɽ). Chemical Analysis And Meterage(»¯Ñ§·ÖÎö¼ÆÁ¿)£¬2008£¬ 17£¨2£©£º 48~50

¡¡¡¡11 WANG Hao(Íõ ºÆ)£¬LIU Yan-Qin(ÁõÑÞÇÙ)£¬CAO Hong(²Ü ºì)£¬ YANG Hong-Mei(Ñîºì÷)£¬LIU Xiao-Li(ÁõСÁ¦).Chinese J.Anal.Chem.(·ÖÎö»¯Ñ§)£¬2008£¬ 36£¨2£©£º 273~273

¡¡¡¡12 CAO Qin-Ren(²ÌÇÚÈÊ)£¬ OUYANG Ying-Yu(Å·ÑôÓ±è¤)£¬ QIAN Zhen-Jie(Ç®Õñ½Ü)£¬PENG Yu-Fen(ÅíÓñ·Ò).Chinese Journal of Chromatography(É«Æ×)£¬2008£¬ 26£¨3£©£º 339~342
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