Survey of Triazole Fungicides in China

  • June 2014
  • -
  • CCM International Limited
  • -
  • 131 pages

Background:
Triazole fungicides are low-toxicity and efficient fungicides that are becoming more and more popular in China. They are widely used in all kinds of crops, such as grain crops like wheat, rice, and economic crops like apple and banana. Among these applications, grain crops are the main downstream of triazole fungicides.

Industrial affairs:
In recent years, the production of triazole fungicides in China has been increasing. Meanwhile, the triazole fungicide industry has seen steady growth in domestic consumption as well as rapid increase in export in recent years.

China's position:
China has become one of the major supplying countries of triazole fungicides in the world, with its products exported to countries all over the world. Some giant players of chemical pesticides in the world have established close relationships with China’s producers and consider China as their raw material production bases.

Purpose of report:
CCM devotes itself to researching the up-to-date situation of triazole fungicides in China and helps customers know deeply about the development of these products.

Application users:
- Raw material manufacturers of triazole fungicides
- Purchasers of triazole fungicides;
- Production managers of triazole fungicides;
- Professionals from fungicide field and its related application industries
- Investors who are interested in China’s triazole fungicide industry and its application areas

Report topics:
- Supply summary of triazole fungicides (capacity, output, key manufacturers) and demand summary by volume & value in China, 2010-2013;
- Detailed study of 10 major triazole fungicides (triadimefon, triadimenol, tebuconazole, flutriafol, propiconazole, difenoconazole, diniconazole, myclobutanil, epoxiconazole, flusilazole) on the production, export, price and consumption from 2010-2013;
- Forecast on Chinese triazole fungicides on supply & demand, and identification of key factors influencing the development of this industry;
- Commercial opportunities.

Forecast on industry:
CCM predicts that the growth of the triazole fungicide industry in China will slow down during 2014-2018. However, the degree of different products are varied. In the report, CCM will provide the development trend of triazole fungicides in China’s market and the output forecast of China’s triazole fungicides during 2014-2018.

Value to clients:
- Discovering the main producers of triazole fungicides in China;
- Understanding the production and consumption of China’s triazole fungicides;
- Obtaining the forecast of China’s triazole fungicides output from 2014 to 2018;

Methodology:
- Desk based research
- Telephone interviews
- CCM’s distinctive Trend Forecast Model

Table Of Contents

Executive summary 1
Introduction and scope of study 3
Methodology and source 4
1 Introduction to triazole fungicides in China 7
1.1 Development history of triazole fungicides 7
1.2 Position in Chinese fungicide industry 8
1.3 Governmental policies related to triazole fungicide industry 9
2 Supply and demand of triazole fungicides 20
2.1 Supply and demand summary, 2010-2013 20
2.1.1 Supply summary 20
2.1.1.1 Production summary (capacity and output) 20
2.1.1.2 Key manufacturers 21
2.1.2 Demand summary 22
2.1.2.1 Consumption volume and market value 22
2.1.2.2 Consumption by crops 24
2.2 Supply and demand of main products 27
2.2.1 Triadimefon 27
2.2.1.1 Production technology 27
2.2.1.2 Registration 28
2.2.1.3 Production, 2010-2013 29
2.2.1.4 Export, 2010-2013 30
2.2.1.5 Price, 2010-2013 31
2.2.1.6 Consumption, 2010-2013 33
2.2.1.7 Outlook, 2014-2018 35
2.2.2 Triadimenol 36
2.2.2.1 Production technology 36
2.2.2.2 Registration 36
2.2.2.3 Production, 2010-2013 37
2.2.2.4 Export, 2010-2013 38
2.2.2.5 Price, 2010-2013 39
2.2.2.6 Consumption, 2010-2013 41
2.2.2.7 Outlook, 2014-2018 42
2.2.3 Tebuconazole 43
2.2.3.1 Production technology 43
2.2.3.2 Registration 44
2.2.3.3 Production, 2010-2013 46
2.2.3.4 Export, 2010-2013 48
2.2.3.5 Price, 2010-2013 50
2.2.3.6 Consumption, 2010-2013 51
2.2.3.7 Outlook, 2014-2018 53
2.2.4 Flutriafol 54
2.2.4.1 Production technology 54
2.2.4.2 Registration 56
2.2.4.3 Production, 2010-2013 56
2.2.4.4 Export, 2010-2013 58
2.2.4.5 Price, 2010-2013 59
2.2.4.6 Consumption, 2010-2013 61
2.2.4.7 Outlook, 2014-2018 62
2.2.5 Propiconazole 63
2.2.5.1 Production technology 63
2.2.5.2 Registration 64
2.2.5.3 Production, 2010-2013 66
2.2.5.4 Export, 2010-2013 67
2.2.5.5 Price, 2010-2013 69
2.2.5.6 Consumption, 2010-2013 70
2.2.5.7 Outlook, 2014-2018 72
2.2.6 Difenoconazole 72
2.2.6.1 Production technology 72
2.2.6.2 Registration 74
2.2.6.3 Production, 2010-2013 75
2.2.6.4 Export, 2010-2013 76
2.2.6.5 Price, 2010-2013 78
2.2.6.6 Consumption, 2010-2013 79
2.2.6.7 Outlook, 2014-2018 80
2.2.7 Diniconazole 81
2.2.7.1 Production technology 81
2.2.7.2 Registration 82
2.2.7.3 Production, 2010-2013 83
2.2.7.4 Export, 2010-2013 84
2.2.7.5 Price, 2010-2013 85
2.2.7.6 Consumption, 2010-2013 86
2.2.7.7 Outlook, 2014-2018 87
2.2.8 Myclobutanil 88
2.2.8.1 Production technology 88
2.2.8.2 Registration 89
2.2.8.3 Production, 2010-2013 90
2.2.8.4 Export, 2010-2013 91
2.2.8.5 Price, 2010-2013 92
2.2.8.6 Consumption, 2010-2013 93
2.2.8.7 Outlook, 2014-2018 94
2.2.9 Epoxiconazole 95
2.2.9.1 Production technology 95
2.2.9.2 Registration 96
2.2.9.3 Production, 2010-2013 97
2.2.9.4 Export, 2010-2013 98
2.2.9.5 Price, 2010-2013 99
2.2.9.6 Consumption, 2010-2013 101
2.2.9.7 Outlook, 2014-2018 102
2.2.10 Flusilazole 103
2.2.10.1 Production technology 103
2.2.10.2 Registration 104
2.2.10.3 Production, 2010-2013 105
2.2.10.4 Export, 2010-2013 106
2.2.10.5 Price, 2010-2013 107
2.2.10.6 Consumption, 2010-2013 108
2.2.10.7 Outlook, 2014-2018 110
3 Supply and demand of common intermediate (1,2,4-triazole) 110
3.1 Brief introduction 110
3.2 Production technology 110
3.3 Production summary and key manufacturers, 2010-2013 111
3.4 Price, 2010-2013 113
3.5 Consumption summary, 2010-2013 113
4 Forecast 114
4.1 Factors influencing China's triazole fungicide industry 114
4.1.1 Governmental policies 114
4.1.2 Social environment 115
4.1.3 Economic factors 116
4.1.4 Crop structure 117
4.1.5 Disease occurrence and pesticide resistance 118
4.1.6 Industry competition 119
4.2 Supply and demand forecast to 2018 119
5 Conclusion and recommendation 121

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