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農(nóng)藥(第1卷)/農(nóng)藥獸藥多組分殘留質(zhì)譜分析技術(shù)(英文版)

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農(nóng)藥(第1卷)/農(nóng)藥獸藥多組分殘留質(zhì)譜分析技術(shù)(英文版) 版權(quán)信息

農(nóng)藥(第1卷)/農(nóng)藥獸藥多組分殘留質(zhì)譜分析技術(shù)(英文版) 本書特色

本書是《農(nóng)藥獸藥多組分殘留質(zhì)譜分析技術(shù)》的第1卷農(nóng)藥篇,介紹了農(nóng)藥多殘留分析技術(shù)和千余種農(nóng)藥不同色譜-質(zhì)譜條件下的質(zhì)譜參數(shù),實(shí)現(xiàn)了一次樣品制備,GC-MS和LC-MS/MS同時(shí)測(cè)定,擴(kuò)大了檢測(cè)目標(biāo)的范圍。書中包括20項(xiàng)適用于10余類農(nóng)產(chǎn)品(包括水果、蔬菜、糧谷、茶葉、中草藥、食用菌、果蔬汁、蜂蜜、動(dòng)物組織、水產(chǎn)品、牛奶、奶粉及飲用水)中800多種農(nóng)藥化學(xué)污染物殘留的色譜-質(zhì)譜分析方法。

本書可供從事食品安全、農(nóng)業(yè)環(huán)境保護(hù)及農(nóng)藥開發(fā)利用等技術(shù)研究與應(yīng)用的技術(shù)人員參考,也可作為大學(xué)教學(xué)參考用書。

農(nóng)藥(第1卷)/農(nóng)藥獸藥多組分殘留質(zhì)譜分析技術(shù)(英文版) 內(nèi)容簡(jiǎn)介

本書是《農(nóng)藥獸藥多組分殘留質(zhì)譜分析技術(shù)》的卷農(nóng)藥篇,介紹了農(nóng)藥多殘留分析技術(shù)和千余種農(nóng)藥不同色譜-質(zhì)譜條件下的質(zhì)譜參數(shù),實(shí)現(xiàn)了一次樣品制備,GC-MS和LC-MS/MS同時(shí)測(cè)定,擴(kuò)大了檢測(cè)目標(biāo)的范圍。書中包括20項(xiàng)適用于10余類農(nóng)產(chǎn)品(包括水果、蔬菜、糧谷、茶葉、中草藥、食用菌、果蔬汁、蜂蜜、動(dòng)物組織、水產(chǎn)品、牛奶、奶粉及飲用水)中800多種農(nóng)藥化學(xué)污染物殘留的色譜-質(zhì)譜分析方法。
本書可供從事食品安全、農(nóng)業(yè)環(huán)境保護(hù)及農(nóng)藥開發(fā)利用等技術(shù)研究與應(yīng)用的技術(shù)人員參考,也可作為大學(xué)教學(xué)參考用書。

農(nóng)藥(第1卷)/農(nóng)藥獸藥多組分殘留質(zhì)譜分析技術(shù)(英文版)農(nóng)藥(第1卷)/農(nóng)藥獸藥多組分殘留質(zhì)譜分析技術(shù)(英文版) 前言

Food safety is a major security issue necessary to ensure the sound development of human society. The widespread use of pesticides, veterinary drugs, and other agricultural chemicals have contributed to widespread contamination in agricultural products. The long-term consumption of food with high residues of pesticides and veterinary drugs will cause both acute and chronic toxicity in humans and induce resistant strains, thus resulting in allergies, cancer, mutation, and teratogenicity. In order to ensure human health and food safety,countries all over the world have issued strict food safety and hygiene standards. The People’s Republic of China (PRC) has implemented strict monitoring of pesticide and veterinary drug residues, such as maximum residue limits for veterinary drugs in food of animal origin (Announcement No. 235 of the Ministry of Agriculture of the People’s Republic of China) and national food safety standards: Maximum residue limits for pesticides in food (GB 2763- 2016). The commonly used pesticides and veterinary drugs approved in China and the main agricultural products of urban residents’ daily consumption are almost all covered.
The book is a systematic summary of the high-throughput chromatographymass spectrometry technique for the analysis of multipesticides, veterinary drugs, and other agricultural chemical residues in agriculture products of plant and animal origin. Its technical characteristics are mainly embodied in the simultaneous determination of hundreds of compounds, as well as low cost and high efficiency.
This book is divided into two volumes. In Volume 1, pesticides and related chemicals are selected as the main research object, while gas chromatographymass spectrometry (GC-MS), gas chromatography-tandem mass spectrometry (GC-MS-MS), and liquid chromatography-tandem mass spectrometry (LC-MSMS) are concerned. This volume includes more than 20 analytical methods for the high-throughput analysis of multipesticide residues, and more than 1000 pesticides and related chemicals in more than 10 kinds of agricultural products and drinking water can be detected, and 400–500 kinds of pesticide residues can be detected simultaneously with the pretreatment undertaken just once. The methods for the analysis of 793 pesticides and related chemical residues in foods of plant origin applicable to fruit juices, vegetable juices, fruit wines, fruits, vegetables, cereals, tea, Chinese medicinal herbs (ramulus mori, honeysuckle, Chinese wolfberry, and lotus leaf), and edible fungi (mushroom) are introduced in Part 1; the methods for the analysis of 790 pesticides and related chemical residues in foods of animal origin applicable to honey, milk, milk powder, aquatic products (globefish, eel, and prawn), and animal muscle tissues are presented in Part 2; while the methods for the analysis of 450 pesticides and related chemical residues in drinking water are introduced in Part 3. Furthermore, the three major parameter databases adopted in the analysis of more than 1000 pesticides and related chemicals are also included in this volume: ①chromatography-mass spectrometry characteristic parameters include retention time, quantitative and qualitative ions, fragment voltage and collision energy, etc.;②performance parameters of the methods include linear equation, linear range and correlation coefficient, etc.; and③gel permeation chromatography (GPC) purification analysis parameters.
In Volume 2, the methods for the analysis of 20 species (nearly 200 kinds) of veterinary drug residues in edible animal tissues (muscle, liver, kidney, and fat), dairies (milk and milk powder), bee products (honey, royal jelly, and its lyophilized powder), aquatic products (globefish, eel, and roasted eel) and animal urine are selected as main subjects of study. The 65 analytical methods for the analysis of multiveterinary drug residues are described in different chapters by category (sulfonamides, β-adrenergic agonists, aminoglycosides, chloramphenicols,β-lactams, macrolides, nitrofurans, anabolic steroids, nonsteroidal anabolic steroids, glucocorticoids, fluoroquinolones, tetracyclines, sedatives, pyrazolones, quinoxalines, nitromidazoles, benzimidazoles, levamisole, thiourea pyrimidines, and polyethers), and 90% of the methods are LC-MS-MS. Meanwhile the physical and chemical properties, efficacy, side effects, and maximum allowable residual limit of all the compounds are also provided.
In short, this book is the summary of the work of the author team who, for more than 20 years, engaged in the research and practice of detection technology of pesticides and veterinary drug residues. These methods for the analysis of pesticides and veterinary drugs are innovative research results based on the international frontier of pesticides and veterinary drug residue analysis, and the analytical techniques adopted are new technologies widely concerned in the field of residue analysis in the world today. The performance indexes of the methods can meet the requirements of the Codex Alimentarius Commission and the world’s major developed countries; meanwhile the methods are in conformity with the developing trend of international residue analysis and they are advanced in the world. In addition, the methods established in this book have become the current effective national standard methods in China and they can be used as the detection basis of relevant testing institutions and the law basis of the relevant government departments. Nevertheless, due to the limitations of the level, there may be unavoidable errors. We would kindly ask the users of this publication to provide feedback to the authors so that subsequent editions may be improved upon.

Guo-Fang Pang

農(nóng)藥(第1卷)/農(nóng)藥獸藥多組分殘留質(zhì)譜分析技術(shù)(英文版) 目錄

Main Researchers/Editors xiii

Preface xv

Brief Introduction xvii



1. Introduction 1

1.1 Insecticides 1

1.1.1 Organophosphate Insecticides 1

1.1.2 Carbamate Insecticides 2

1.1.3 Organochlorine Insecticides 2

1.1.4 Pyrethroid Insecticides 2

1.1.5 Neonicotinoid Insecticides 2

1.2 Herbicides 3

1.2.1 Phenolic Herbicides 3

1.2.2 Phenoxy Acid Herbicides 3

1.2.3 Benzoic Acid Herbicides 4

1.2.4 Diphenyl Ether Herbicides 4

1.2.5 Dinitroaniline Herbicides 4

1.2.6 Amide Herbicides 4

1.2.7 Carbamate Herbicides 5

1.2.8 Thiocarbamate Herbicides 5

1.2.9 Urea Herbicides 5

1.2.10 Sulfonylurea Herbicides 5

1.2.11 S-Triazine Herbicides 5

1.2.12 Quaternary Ammoniums Herbicides 6

1.2.13 Organophosphate Herbicides 6

1.2.14 Other Herbicides 6

1.3 Bactericides 6

1.3.1 Triazole Bactericides 7

1.3.2 Amide Bactericides 7

1.3.3 Pyridinamine Bactericides 7

1.3.4 Strobin Bactericides 7

1.3.5 Oxazo Bactericides 8

1.3.6 Pyrrole Bactericides 8

1.3.7 Amino Acid Bactericides 8

1.3.8 Derivants of Cinnamic Acid 8

1.3.9 Others 8

1.4 Pesticides Banned in the World 8

1.4.1 Pesticides Banned in China 8

1.4.2 Pesticides Banned in Japan 9

1.4.3 Pesticides Banned in European Union 9



2. Analytical Methods for 793 Pesticides and Related

Chemical Residues in Products of Plant Origin 11

2.1 Determination of 512 Pesticides and Related Chemical Residues

in Fruit Juice and Wine: LC-MS-MS Method (GB/T 23206-2008) 11

2.1.1 Scope 11

2.1.2 Principle 11

2.1.3 Reagents and Materials 11

2.1.4 Apparatus 21

2.1.5 Sample Pretreatment 21

2.1.6 Determination 22

2.1.7 Precision 24

Researchers 24

2.2 Determination of 500 Pesticides and Related Chemical Residues

in Fruits and Vegetables: GC-MS Method (GB/T 19648-2006) 25

2.2.1 Scope 25

2.2.2 Principle 25

2.2.3 Reagents and Materials 25

2.2.4 Apparatus 35

2.2.5 Sample Pretreatment 35

2.2.6 GC-MS Determination 36

2.2.7 Precision 37

Researchers 37

2.3 Determination of 450 Pesticides and Related Chemical Residues

in Fruits and Vegetables: LC-MS-MS Method(GB/T 20769-2008) 37

2.3.1 Scope 37

2.3.2 Principle 45

2.3.3 Reagents and Materials 45

2.3.4 Apparatus 46

2.3.5 Sample Pretreatment 46

2.3.6 Determination 47

2.3.7 Precision 49

Researchers 50

2.4 Determination of 475 Pesticides and Related Chemical Residues

in Grains: GC-MS Method (GB/T 19649-2006) 50

2.4.1 Scope 50

2.4.2 Principle 50

2.4.3 Reagents and Materials 50

2.4.4 Apparatus 59

2.4.5 Sample Pretreatment 59

2.4.6 GC-MS Method Determination 60

2.4.7 Precision 61

Researchers 61

2.5 Determination of 486 Pesticides and Related Chemical Residues

in Grains: LC-MS-MS Method (GB/T 20770-2008) 61

2.5.1 Scope 61

2.5.2 Principle 69

2.5.3 Reagents and Materials 69

2.5.4 Apparatus 71

2.5.5 Sample Pretreatment 71

2.5.6 Determination 72

2.5.7 Precision 73

Researchers 73

2.6 Determination of 519 Pesticides and Related Chemical

Residues in Tea Leaves: GC-MS Method (GB/T 23204-2008) 74

2.6.1 Scope 74

2.6.2 Determination of 490 Pesticides and Related Chemical Residues in Tea: GC-MS Method 74

2.6.3 Determination of 29 Acidic Herbicides in Tea:GC-MS Method 85

Researchers 91

2.7 Determination of 448 Pesticides and Related Chemical

Residues in Tea Leaves: LC-MS-MS Method (GB/T23205-2008) 92

2.7.1 Scope 92

2.7.2 Principle 92

2.7.3 Reagents and Materials 92

2.7.4 Apparatus 101

2.7.5 Sample Pretreatment 101

2.7.6 Determination 102

2.7.7 Precision 103

Researchers 103

2.8 Determination of 488 Pesticides and Related Chemical

Residues in Mulberry Twig, Honeysuckle, Barbary Wolfberry

Fruit, and Lotus Leaf: GC-MS Method (GB/T 23200-2008) 103

2.8.1 Scope 103

2.8.2 Principle 104

2.8.3 Reagents and Materials 104

2.8.4 Apparatus 113

2.8.5 Sample Pretreatment 113

2.8.6 Determination 114

2.8.7 Precision 115

Researchers 115

2.9 Determination of 413 Pesticides and Related Chemical

Residues in Mulberry Twig, Honeysuckle, Barbary Wolfberry

Fruit, and Lotus Leaf: LC-MS-MS Method (GB/T 23201-2008) 115

2.9.1 Scope 115

2.9.2 Principle 115

2.9.3 Reagents and Materials 116

2.9.4 Apparatus 123

2.9.5 Sample Pretreatment 123

2.9.6 Determination 124

2.9.7 Precision 126

Researchers 126

2.10 Determination of 503 Pesticides and Related Chemical

Residues in Mushrooms: GC-MS Method (GB/T 23216-2008) 126

2.10.1 Scope 126

2.10.2 Principle 126

2.10.3 Reagents and Materials 127

2.10.4 Apparatus 136

2.10.5 Sample Pretreatment 136

2.10.6 Determination 137

2.10.7 Precision 138

Researchers 138

2.11 Determination of 440 Pesticides and Related Chemical

Residues in Edible Fungus: LC-MS-MS Method(GB/T 23202-2008) 138

2.11.1 Scope 138

2.11.2 Principle 138

2.11.3 Reagents and Materials 146

2.11.4 Apparatus 147

2.11.5 Sample Pretreatment 147

2.11.6 Determination 148

2.11.7 Precision 149

Researchers 149



3. Analytical Methods for 790 Pesticides and Related

Chemical Residues in Products of Animal Origin 151

3.1 Determination of 511 Pesticides and Related Chemical

Residues in Milk and Milk Powder: GC-MS Method(GB/T 23210-2008) 151

3.1.1 Scope 151

3.1.2 Principle 151

3.1.3 Reagents and Materials 151

3.1.4 Apparatus 162

3.1.5 Sample Pretreatment 162

3.1.6 Determination 163

3.1.7 Precision 164

Researchers 164

3.2 Determination of 493 Pesticides and Related Chemical

Residues in Milk and Milk Powder: LC-MS-MS Method(GB/T 23211-2008) 165

3.2.1 Scope 165

3.2.2 Principle 165

3.2.3 Reagents and Materials 165

3.2.4 Apparatus 175

3.2.5 Sample Pretreatment 175

3.2.6 Determination 176

3.2.7 Precision 178

Researchers 178

3.3 Determination of 485 Pesticides and Related Chemical

Residues in Fugu, Eel, and Prawn: GC-MS Method(GB/T 23207-2008) 179

3.3.1 Scope 179

3.3.2 Principle 187

3.3.3 Reagents and Materials 187

3.3.4 Apparatus 188

3.3.5 Sample Pretreatment 189

3.3.6 Determination 190

3.3.7 Precision 191

Researchers 191

3.4 Determination of 450 Pesticides and Related Chemical

Residues in Fugu, Eel, and Prawn: LC-MS-MS Method(GB/T 23208-2008) 192

3.4.1 Scope 192

3.4.2 Principle 200

3.4.3 Reagents and Materials 200

3.4.4 Apparatus 201

3.4.5 Sample Pretreatment 201

3.4.6 Determination 203

3.4.7 Precision 204

Researchers 204

3.5 Determination of 497 Pesticides and Related Chemical

Residues in Honey, Fruit Juice, and Wine: GC-MS Method(GB/T 19426-2006) 204

3.5.1 Scope 204

3.5.2 Principle 204

3.5.3 Reagents and Materials 213

3.5.4 Apparatus 214

3.5.5 Sample Pretreatment 214

3.5.6 Determination 215

3.5.7 Precision 216

Researchers 217

3.6 Determination of 486 Pesticides and Related Chemical

Residues in Honey: LC-MS-MS Method (GB/T 20771-2008) 217

3.6.1 Scope 217

3.6.2 Principle 217

3.6.3 Reagents and Materials 217

3.6.4 Apparatus 227

3.6.5 Sample Pretreatment 227

3.6.6 Determination 228

3.6.7 Precision 232

Researchers 232

3.7 Determination of 478 Pesticides and Related Chemical

Residues in Animal Muscles: GC-MS Method(GB/T 19650-2006) 232

3.7.1 Scope 232

3.7.2 Principle 232

3.7.3 Reagents and Materials 232

3.7.4 Apparatus 242

3.7.5 Sample Pretreatment 242

3.7.6 Determination 243

3.7.7 Precision 244

Researchers 244

3.8 Determination of 461 Pesticides and Related Chemical

Residues in Animal Muscles: LC-MS-MS Method(GB/T 20772-2008) 245

3.8.1 Scope 245

3.8.2 Principle 253

3.8.3 Reagents and Materials 253

3.8.4 Apparatus 254

3.8.5 Sample Pretreatment 254

3.8.6 Determination 256

3.8.7 Precision 257

Researchers 257



4. Determination of 450 Pesticides and Related

Chemical Residues in Drinking Water: LC-MS-MS Method (GB/T 23214-2008) 259

4.1 Scope 259

4.2 Principle 259

4.3 Reagents and Materials 259

4.4 Apparatus 268

4.5 Sample Pretreatment 269

4.5.1 Preparation of Test Sample 269

4.5.2 Extraction 269

4.5.3 Clean-up 269

4.6 Determination 269

4.6.1 LC-MS-MS Operating Condition 269

4.6.2 Qualitative Determination 271

4.6.3 Quantitative Determination 271

4.7 Precision 272

Researchers 272



5. Basic Research on Chromatography-Mass Spectroscopy

Characteristic Parameters of Pesticide and Chemical Pollutants 273

5.1 Mass Spectrometry Data of 1200 Pesticides and Chemical

Pollutants Determined by GC-MS, GC-MS-MS, and LC-MS-MS 277

5.1.1 Retention Times, Quantifier and Qualifier Ions of

567 Pesticides and Chemical Pollutants Determined by GC-MS 277

5.1.2 Monitoring of Selected Ions for 567 Pesticides

and Chemical Pollutants Determined by GC-MS 311

5.1.3 Retention Time, Quantifier and Qualifier Ions, and

Collision Energies of 454 Pesticides and Chemical Pollutants Determined by GC-MS-MS 321

5.1.4 Monitoring of Selected Ions for 454 Pesticides

and Chemical Pollutants Determined by GC-MS-MS 349

5.1.5 Retention Time, Quantifier and Qualifier Ions,

and Collision Energies of 284 Environmental Pollutants by GC-MS-MS 356

5.1.6 Retention Times, Selective Ions, and Relative Abundances

of Endosulfans Determined by GC-NCI-MS 374

5.1.7 Retention Times, Quantifying and Qualifying Ions,

Declustering Potentials, and Collision Energies of 9 Environmental Pollutants Determined by LC-MS-MS 375

5.1.8 Retention Times, Quantifying and Qualifying Ions,Fragmentor, and Collision Energies of 569 Pesticides

and Chemical Pollutants Determined by LC-MS-MS 376

5.1.9 Accurate Masses, Retention Times, Parent Ions,and Collision Energies of 492 Pesticides and Chemical

Pollutants Determined by LC-TOF-MS 410

5.2 Linear Equation Parameters of 1200 Pesticides and

Chemical Pollutants Determined by GC-MS, GC-MS-MS,and LC-MS-MS 457

5.2.1 Linear Equations, Linear Ranges, and Correlation

Coefficients of 567 Pesticides and Chemical Pollutants Determined by GC-MS 457

5.2.2 Linear Equations, Linear Ranges, and Correlation

Coefficients of 466 Pesticides and Chemical Pollutants Determined by GC-MS-MS 491

5.2.3 Linear Equations, Linear Ranges, and Correlation

Coefficients of 284 Environmental Pollutants Determined by GC-MS-MS 519

5.2.4 Linear Equations, Linear Ranges, and Correlation

Coefficients of Endosulfans Determined by GC-MS(NCI) 536

5.2.5 Linear Equations, Linear Ranges, and Correlation

Coefficients of 9 Environmental Pollutants Determined by LC-MS-MS 537

5.2.6 Linear Equations, Linear Ranges, and Correlation

Coefficients of 569 Pesticides and Chemical Pollutants Determined by LC-MS-MS 538

5.3 GPC Analytical Parameters of Pesticides and Chemical Pollutants 572

5.3.1 GPC Analytical Parameters of 744 Pesticides and Chemical Pollutants 572

5.3.2 GPC Analytical Parameters of 107 Pesticides and Chemical Pollutants 599

Appendix A: Index of 1039 Pesticides and Chemical Pollutants Determined

by GC-MS, GC-MS-MS and LC-MS-MS 603

Appendix B: Solvent Selected and Concentration of Mixed Standard

Solution of Pesticides and Chemical Pollutants 661

Appendix C: Physicochemical Properties of 900 Pesticides

and Chemical Pollutants 707

Appendix D: MRM Chromatograms of 493 Pesticides

and Related Chemicals 791



Index 857



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農(nóng)藥(第1卷)/農(nóng)藥獸藥多組分殘留質(zhì)譜分析技術(shù)(英文版) 作者簡(jiǎn)介

龐國(guó)芳,中國(guó)檢驗(yàn)檢疫科學(xué)研究院,研究員,中國(guó)工程院院士,國(guó)家質(zhì)檢總局首席研究員、國(guó)際公職化學(xué)家聯(lián)合會(huì)(AOAC)專家,國(guó)際AOAC 2014年度 Harvey W. Wiley 獎(jiǎng)獲得者。近30年一直工作在食品檢驗(yàn)檢疫一線,致力于食品科學(xué)檢測(cè)技術(shù)理論與實(shí)踐的研究,解決了我國(guó)相關(guān)出口食品、農(nóng)產(chǎn)品等遭遇的技術(shù)瓶頸,為推動(dòng)我國(guó)對(duì)外貿(mào)易發(fā)展做出了杰出貢獻(xiàn)。研究制定了141項(xiàng)國(guó)際、國(guó)家檢測(cè)技術(shù)標(biāo)準(zhǔn)。在國(guó)內(nèi)、國(guó)際出版食品安全檢測(cè)技術(shù)論著10部。發(fā)表論文100余篇,35篇被SCI收錄。3次榮獲國(guó)家科學(xué)技術(shù)進(jìn)步二等獎(jiǎng),6次榮獲國(guó)際AOAC組織頒發(fā)的科學(xué)技術(shù)獎(jiǎng)勵(lì)。

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