Acta Agriculturae Zhejiangensis ›› 2024, Vol. 36 ›› Issue (7): 1677-1685.DOI: 10.3969/j.issn.1004-1524.20231046
• Quality and Safety of Agricultural Products • Previous Articles Next Articles
SHI Guiyuan1,2(), HUANG Wenyuan2,3, DUAN Tingting2, LI Ming2, GUO Yiqing1,*(
), ZHANG Ying2,3,*(
)
Received:
2023-08-31
Online:
2024-07-25
Published:
2024-08-05
化合物 Compound | 保留时间 Retention time/min | 母离子 Precursor ion(m/z) | 监测离子对 Product ion(m/z) | S-lens电压 S-lens voltage/V | 碰撞能量 Collision energy/V |
---|---|---|---|---|---|
多菌灵Carbendazim | 3.5 | 191.9 | 131.8/159.9* | 57 | 31/18 |
三唑酮Triadimefon | 3.8 | 294.1 | 224.9/196.8* | 88 | 13/15 |
戊唑醇Tebuconazole | 4.0 | 308.0 | 124.9/70.0* | 77 | 37/22 |
苯醚甲环唑Difenoconazole | 4.1 | 406.0 | 336.9/250.9* | 73 | 17/26 |
Table 1 The mass spectrometric parameters of 4 kinds of fungicides
化合物 Compound | 保留时间 Retention time/min | 母离子 Precursor ion(m/z) | 监测离子对 Product ion(m/z) | S-lens电压 S-lens voltage/V | 碰撞能量 Collision energy/V |
---|---|---|---|---|---|
多菌灵Carbendazim | 3.5 | 191.9 | 131.8/159.9* | 57 | 31/18 |
三唑酮Triadimefon | 3.8 | 294.1 | 224.9/196.8* | 88 | 13/15 |
戊唑醇Tebuconazole | 4.0 | 308.0 | 124.9/70.0* | 77 | 37/22 |
苯醚甲环唑Difenoconazole | 4.1 | 406.0 | 336.9/250.9* | 73 | 17/26 |
Fig.1 Effects of different washing methods on the residual concentration of 4 kinds of fungicides in Bletilla striata Data marked without the same lowercase letter indicated significant differences at P<0.05, and each pesticide was independent of each other. The same as below.
加工过程 Processing process | 加工因子Processing factor | |||
---|---|---|---|---|
多菌灵 Carbendazim | 三唑酮 Triadimefon | 戊唑醇 Tebuconazole | 苯醚甲环唑 Difenoconazole | |
清水清洗Washing with clean water | 0.79 | 0.83 | 0.95 | 0.95 |
2%淀粉水清洗Washing with 2% starch solution | 0.67 | 0.77 | 0.87 | 0.87 |
2%小苏打水清洗Washing with 2% baking soda solution | 0.69 | 0.65 | 0.90 | 0.80 |
2%食盐水清洗Washing with 2% salt solution | 0.42 | 0.55 | 0.60 | 0.68 |
水煮4 min Boiling for 4 min | 0.32 | 0.37 | 0.36 | 0.47 |
水煮5 min Boiling for 5 min | 0.39 | 0.41 | 0.43 | 0.55 |
水煮6 min Boiling for 6 min | 0.41 | 0.47 | 0.48 | 0.61 |
40 ℃烘干Oven drying at 40 ℃ | 3.23 | 3.19 | 2.83 | 2.15 |
50 ℃烘干Oven drying at 50 ℃ | 3.10 | 3.13 | 2.68 | 2.15 |
60 ℃烘干Oven drying at 60 ℃ | 2.53 | 3.10 | 2.43 | 2.08 |
全过程Whole processing | 0.34 | 0.63 | 0.52 | 0.67 |
Table 2 The processing factors of 4 kinds of fungicides in the preliminary processing of Bletilla striata
加工过程 Processing process | 加工因子Processing factor | |||
---|---|---|---|---|
多菌灵 Carbendazim | 三唑酮 Triadimefon | 戊唑醇 Tebuconazole | 苯醚甲环唑 Difenoconazole | |
清水清洗Washing with clean water | 0.79 | 0.83 | 0.95 | 0.95 |
2%淀粉水清洗Washing with 2% starch solution | 0.67 | 0.77 | 0.87 | 0.87 |
2%小苏打水清洗Washing with 2% baking soda solution | 0.69 | 0.65 | 0.90 | 0.80 |
2%食盐水清洗Washing with 2% salt solution | 0.42 | 0.55 | 0.60 | 0.68 |
水煮4 min Boiling for 4 min | 0.32 | 0.37 | 0.36 | 0.47 |
水煮5 min Boiling for 5 min | 0.39 | 0.41 | 0.43 | 0.55 |
水煮6 min Boiling for 6 min | 0.41 | 0.47 | 0.48 | 0.61 |
40 ℃烘干Oven drying at 40 ℃ | 3.23 | 3.19 | 2.83 | 2.15 |
50 ℃烘干Oven drying at 50 ℃ | 3.10 | 3.13 | 2.68 | 2.15 |
60 ℃烘干Oven drying at 60 ℃ | 2.53 | 3.10 | 2.43 | 2.08 |
全过程Whole processing | 0.34 | 0.63 | 0.52 | 0.67 |
[1] | 国家药典委员会. 中华人民共和国药典:2020年版一部[M]. 北京: 中国医药科技出版社, 2020:106. |
[2] | 马嘉慕, 刘晓云, 任雪阳, 等. 基于AHP-SOM聚类-TOPSIS的白及保胃护肝保健食品配方设计与评价[J]. 中草药, 2021, 52(18): 5676-5687. |
MA J M, LIU X Y, REN X Y, et al. Formula design and evaluation of health food with protection of gastric mucosa and liver of Bletillae Rhizoma based on AHP-SOM-TOPSIS algorithm[J]. Chinese Traditional and Herbal Drugs, 2021, 52(18): 5676-5687.(in Chinese with English abstract) | |
[3] | 李维峰, 何鹏搏, 张学文, 等. 白及新病害叶枯病及其病原菌鉴定[J]. 中药材, 2022, 45(10): 2304-2308. |
LI W F, HE P B, ZHANG X W, et al. Leaf blight of Bletilla striata and identification of its pathogen[J]. Journal of Chinese Medicinal Materials, 2022, 45(10): 2304-2308.(in Chinese) | |
[4] | 侯秀明, 王晗怡, 陈婷婷, 等. 白及炭疽病病原菌的鉴定及其室内防治药剂筛选[J]. 西南大学学报(自然科学版), 2023, 45(6): 66-75. |
HOU X M, WANG H Y, CHEN T T, et al. Identification the pathogen of anthracnose on Bletilla striata in Guangxi Province and fungicide screening in laboratory[J]. Journal of Southwest University(Natural Science Edition), 2023, 45(6): 66-75.(in Chinese with English abstract) | |
[5] | 肖欧丽, 李敏敏, 李瑞瑆, 等. 中药材中农药残留现状及标准体系建设研究进展[J]. 植物保护, 2022, 48(5): 1-14. |
XIAO O L, LI M M, LI R X, et al. The status quo of pesticide residues in Chinese medicinal materials and the construction of a standard system[J]. Plant Protection, 2022, 48(5): 1-14.(in Chinese with English abstract) | |
[6] | AHAMMED SHABEER T, SOMKUWAR R, SHARMA A K, et al. Multi-residue method validation, processing factor and monitoring of thirteen targeted fungicide residues in the process of wine making[J]. Journal of Food Composition and Analysis, 2023, 115: 104912. |
[7] | 郭璐瑶, 董丰收, 李远播, 等. 中药材上农药应用现状及其炮制加工过程对农药残留的影响[J]. 农药学学报, 2021, 23(4): 636-649. |
GUO L Y, DONG F S, LI Y B, et al. Present situation of pesticides application in Chinese medical herbs and the impact of processing on pesticide residues[J]. Chinese Journal of Pesticide Science, 2021, 23(4): 636-649.(in Chinese with English abstract) | |
[8] | 方琦, 张俊, 周锦云. 加工过程对柑橘罐头多菌灵残留的影响[J]. 浙江农业学报, 2018, 30(9): 1599-1603. |
FANG Q, ZHANG J, ZHOU J Y. Effect of processing on carbendazim residue in canned citrus[J]. Acta Agriculturae Zhejiangensis, 2018, 30(9): 1599-1603.(in Chinese with English abstract) | |
[9] | ZHAO L W, LIU F M, GE J, et al. Changes in eleven pesticide residues in jujube (Ziziphus jujuba Mill.) during drying processing[J]. Drying Technology, 2018, 36(8): 965-972. |
[10] | LI C J, ZHU H M, LI C Y, et al. The present situation of pesticide residues in China and their removal and transformation during food processing[J]. Food Chemistry, 2021, 354: 129552. |
[11] | 刘霞, 郑雅芹, 孙绎柠, 等. 白及无公害栽培体系研究[J]. 世界科学技术-中医药现代化, 2022, 24(4): 1445-1451. |
LIU X, ZHENG Y Q, SUN Y N, et al. Research of pollution-free cultivation system of Bletilla striata[J]. Modernization of Traditional Chinese Medicine and Materia Medica-World Science and Technology, 2022, 24(4): 1445-1451.(in Chinese with English abstract) | |
[12] | 何晓梅, 陈存武, 宋程, 等. 大别山栽培白及不同部位总酚含量测定及其抗氧化活性研究[J]. 中成药, 2022, 44(2): 656-660. |
HE X M, CHEN C W, SONG C, et al. Determination of total phenols in different parts of cultivated Bletilla striata in Dabie Mountain and its antioxidant activity[J]. Chinese Traditional Patent Medicine, 2022, 44(2): 656-660.(in Chinese) | |
[13] | 刘金梅, 安兰兰, 刘刚, 等. 白及化学成分和药理作用研究进展与质量标志物预测分析[J]. 中华中医药学刊, 2021, 39(6): 28-37. |
LIU J M, AN L L, LIU G, et al. Research progress on chemical composition and pharmacological effects of Bletilla striate and predictive analysis on quality marker[J]. Chinese Archives of Traditional Chinese Medicine, 2021, 39(6): 28-37.(in Chinese with English abstract) | |
[14] | 席刚俊, 李警保, 史俊, 等. 白芨内生真菌的多样性[J]. 浙江农业学报, 2017, 29(12): 2077-2083. |
XI G J, LI J B, SHI J, et al. Diversity of endophytic fungi in Bletilla striata[J]. Acta Agriculturae Zhejiangensis, 2017, 29(12): 2077-2083.(in Chinese with English abstract) | |
[15] | 吴巧芬, 蓝鹃娟, 夏科, 等. 四种外源有害物质残留对白及药材质量和安全的影响[J]. 北方园艺, 2021(7): 117-122. |
WU Q F, LAN J J, XIA K, et al. Effects of four exogenous hazardous substances residues to the quality and safety in Bletilla striata[J]. Northern Horticulture, 2021(7): 117-122.(in Chinese with English abstract) | |
[16] | 黄文源, 张盈, 陈武瑛, 等. QuEChERS-GC/UHPLC-MS/MS法测定党参和白及中12种农药残留[J]. 农药, 2023, 62(6): 430-436. |
HUANG W Y, ZHANG Y, CHEN W Y, et al. Determination of 12 pesticide residues in Codonopsis pilosula and Bletilla striata by QuEChERS-GC/UHPLC-MS/MS[J]. Agrochemicals, 2023, 62(6): 430-436.(in Chinese with English abstract) | |
[17] | 李凯龙, 陈武瑛, 陈同强, 等. 剁辣椒家常加工对5种农药残留的影响[J]. 食品工业科技, 2021, 42(16): 229-235. |
LI K L, CHEN W Y, CHEN T Q, et al. Effect of chopped pepper processing on the residues of 5 pesticides[J]. Science and Technology of Food Industry, 2021, 42(16): 229-235.(in Chinese with English abstract) | |
[18] | 中华人民共和国农业农村部. 农作物中农药残留试验准则: NY/T 788—2018[S]. 北京: 中国农业出版社, 2018. |
[19] | TIAN F J, QIAO C K, WANG C X, et al. Dissipation behavior of prochloraz and its metabolites in grape under open-field, storage and the wine-making process[J]. Journal of Food Composition and Analysis, 2022, 114: 104846. |
[20] | WU Y L, AN Q S, LI D, et al. Comparison of different home/commercial washing strategies for ten typical pesticide residue removal effects in kumquat, spinach and cucumber[J]. International Journal of Environmental Research and Public Health, 2019, 16(3): 472. |
[21] | Pesticide Properties Database[DB/OL]. [2024-05-24]. https://sitem.herts.ac.uk/aeru/ppdb/en/atoz_fung.htm. |
[22] | POLAT B, TIRYAKI O. Assessing washing methods for reduction of pesticide residues in Capia pepper with LC-MS/MS[J]. Journal of Environmental Science and Health Part B, 2020, 55(1): 1-10. |
[23] | YANG S J, MUN S, KIM H J, et al. Effectiveness of different washing strategies on pesticide residue removal: the first comparative study on leafy vegetables[J]. Foods, 2022, 11(18): 2916. |
[24] | 刘英, 王新全, 汤涛, 等. 不同清洗方法对芹菜中吡虫啉残留的去除效果[J]. 农药学学报, 2019, 21(4): 492-499. |
LIU Y, WANG X Q, TANG T, et al. Removal effect of imidacloprid residue in celery by different washing method[J]. Chinese Journal of Pesticide Science, 2019, 21(4): 492-499.(in Chinese with English abstract) | |
[25] | 虞游毅, 杨璐, 廖享, 等. 高效氯氟氰菊酯和氯氰菊酯在苹果中的残留降解动态及其去除方法[J]. 浙江农业学报, 2018, 30(8): 1376-1381. |
YU Y Y, YANG L, LIAO X, et al. Residual degradation dynamics of lambda-cyhalothrin and cypermethrin in apple and its removal method[J]. Acta Agriculturae Zhejiangensis, 2018, 30(8): 1376-1381.(in Chinese with English abstract) | |
[26] | ALISTER C, ARAYA M, BECERRA K, et al. Industrial prune processing and its effect on pesticide residue concentrations[J]. Food Chemistry, 2018, 268: 264-270. |
[27] | 张志国, 吴萍, 刘洪亮, 等. 中药切制前“水处理”经验介绍[J]. 辽宁中医杂志, 2022, 49(6): 164-167. |
ZHANG Z G, WU P, LIU H L, et al. Experience introduction of processing with water before traditional Chinese medicine cutting[J]. Liaoning Journal of Traditional Chinese Medicine, 2022, 49(6): 164-167.(in Chinese with English abstract) | |
[28] | 王迎鑫, 高庆超, 李亚辉, 等. 苹果泥加工及储藏过程中6种农药残留变化[J]. 食品安全质量检测学报, 2022, 13(24): 8128-8134. |
WANG Y X, GAO Q C, LI Y H, et al. Residue changes of 6 kinds of pesticides during the production and storage of apple puree[J]. Journal of Food Safety & Quality, 2022, 13(24): 8128-8134.(in Chinese with English abstract) | |
[29] | YIGIT N, VELIOGLU Y S. Effects of processing and storage on pesticide residues in foods[J]. Critical Reviews in Food Science and Nutrition, 2020, 60(21): 3622-3641. |
[30] | KEIKOTLHAILE B M, SPANOGHE P, STEURBAUT W. Effects of food processing on pesticide residues in fruits and vegetables: a meta-analysis approach[J]. Food and Chemical Toxicology, 2010, 48(1): 1-6. |
[31] | 朱文学, 赵雅婷, 吴建章, 等. 根茎类中药材干燥技术与装备研究进展[J]. 中国农业大学学报, 2023, 28(1): 153-171. |
ZHU W X, ZHAO Y T, WU J Z, et al. Research progress on drying technology and equipment of rhizome traditional Chinese medicines[J]. Journal of China Agricultural University, 2023, 28(1): 153-171.(in Chinese with English abstract) | |
[32] | 赵柳微. 干制和发酵过程对枣中农药残留的影响[D]. 北京: 中国农业大学, 2015. |
ZHAO L W. Pesticide residue change in drying or fermentation process of jujube[D]. Beijing: China Agricultural University, 2015.(in Chinese with English abstract) | |
[33] | XIAO O L, LI M M, CHEN D Y, et al. The dissipation, processing factors, metabolites, and risk assessment of pesticides in honeysuckle from field to table[J]. Journal of Hazardous Materials, 2022, 431: 128519. |
[34] | LI K L, CHEN T Q, SHI X B, et al. Residue behavior and processing factors of thirteen field-applied pesticides during the production of Chinese traditional fermented chopped pepper and chili powder[J]. Food Chemistry: X, 2023, 19: 100854. |
[35] | ÖZBEY A, KARAGÖZ Ş, CINGÖZ A. Effect of drying process on pesticide residues in grapes[J]. The Journal of Food, 2017, 42(2): 204-209. |
[36] | 王莹, 李耀磊, 于新兰, 等. 人参中五氯硝基苯残留的加工因子测定及其在膳食暴露评估中的应用[J]. 中成药, 2019, 41(2): 368-373. |
WANG Y, LI Y L, YU X L, et al. Determination of processing factors of quintozene in Panax ginseng and their application in dietary exposure assessment[J]. Chinese Traditional Patent Medicine, 2019, 41(2): 368-373.(in Chinese with English abstract) | |
[37] | 涂奇军, 余文博, 刘凯, 等. 苍术中农药残留状况及其炮制过程对农药残留的影响考察[J]. 中国药师, 2022, 25(10): 1798-1805. |
TU Q J, YU W B, LIU K, et al. Evaluation of the pesticide residue in atractylodis rhizoma and effect of processing technology on the pesticide residue[J]. China Pharmacist, 2022, 25(10): 1798-1805.(in Chinese with English abstract) | |
[38] | 陆静娴, 李文庭, 马双成, 等. LC-MS/MS测定菊花不同加工方式下8种农药的加工因子[J]. 中国现代中药, 2023, 25(5): 959-963. |
LU J X, LI W T, MA S C, et al. Determination of processing factors of 8 pesticides in Chrysanthemi Flos extracted under different conditions by LC/MS/MS[J]. Modern Chinese Medicine, 2023, 25(5): 959-963.(in Chinese with English abstract) |
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