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Survey of Rice Insecticides in China

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Published Date : 30 November 2011
Pages : 57
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Summary

Countries covered: China

Survey of Rice Insecticides in China


Rice, following corn, is the crop with the second largest planting area of 29.63 million hectares in China in 2009, accounting for about 18.68% of China's total crop planting area. About 10.27 million hectares of paddy fields which takes up over 45% of total rice planting area in China suffer from rice insect damage each year. China produced over 2,340,000 tonnes of insecticides in 2010, of which about 32,000 tonnes (calculated by AI) was used to kill insects in rice fields. What is the general situation of rice planting in China in the recent three years? What is the change of the domestic rice insecticides market in the recent three years? CCM International will give a summary in this report.

The usage volume of insecticides on rice, which occupies 10% of the total usage of pesticides China, is more than that of any other crops. It is certain that market size of rice insecticides will expand significantly and the market structure will change remarkably in the following years. What are the major insecticides using on rice in the recent three years? Which manufactures produce these products? What are the situations of these products of these insecticides in the recent three years, such as register situation, market share, demand, price etc.? What is the future of the rice insecticides market in China? CCM international will reveal all these details and forecast in this report.

In the recent years, Many MNCs have attached great importance to the promotion of new insecticides in China's rice fields, which intensified the market competition of rice insecticides in China. How are the promotion situations of the popular brands of MNCs' rice insecticides? What are the differences between domestic and overseas company in circulation channel? CCM International will give descriptions in this report.

In this survey, emphasis will be placed on the following aspects:

Figure out market summary of rice insecticides in China in recent 3 years.
Provide supply and demand situation of major rice insecticides, including abamectin, chlorpyrifos, imidacloprid, etc. In particular, market share of key products by players or by insects will be emphasized.
Reveal MNCs' dynamics in Chinese rice insecticide market, and figure out promotion situation of several popular brands of rice insecticides of MNCs, such as Rynaxypyr, Virtako, and so on.
Progress circulation channel study of rice insecticides through comparison of domestic companies and overseas companies.
Forecast future development of rice insecticides in China.

 

Table of Contents :

Executive summary
Methodology and source
1 Overview of rice insecticides in China
2 Market of rice insecticides in China
2.1 Market summary

2.1.1 - Rice planting in China
2.1.2 - Market volume and value, 2008-2010
2.1.3 - Share of key products, 2008-2010

2.2 Situation of key products

2.2.1 Abamectin
2.2.2 Chlorpyrifos
2.2.3 Imidacloprid
2.2.4 Dichlorvos
2.2.5 Acephate
2.2.6 Triazophos
2.2.7 Pymetrozine
2.2.8 Buprofezin

2.3 Market of patented rice insecticide products by MNCs

2.3.1 General
2.3.2 Popular brands

3 Circulation channel study (comparison of domestic companies and overseas companies)
4 Outlook, 2011-2015
4.1 Future development trend of rice insecticides in China
4.2 Market volume to 2015
4.3 Market structure of key products to 2015
5 Conclusion & Commercial opportunities
Disclaimers

LIST OF TABLES
Table 1-1 Main rice insects and insecticides applied in China
Table 2.2.1-1 Registration situation of abamectin technical in China, 2008-2010
Table 2.2.1-2 Registration situation of abamectin formulation on rice in China, 2008-2010
Table 2.2.1-3 Capacity and output of abamectin technical (calculated by 95%) by producer in China, 2008-2010
Table 2.2.1-4 Demand situation of major abamectin formulations (volume and value) in China, 2008-2010
Table 2.2.2-1 Registration situation of chlorpyrifos technical in China, 2008-2010
Table 2.2.2-2 Registration situation of chlorpyrifos formulations on rice in China, 2008-2010
Table 2.2.2-3 Capacity and output of chlorpyrifos technical (calculated by 97%) by manufacturer in China, 2008-H1 2011
Table 2.2.2-4 Demand situation of major chlorpyrifos formulations (volume and value) in China, 2008-2010
Table 2.2.3-1 Registration situation of imidacloprid technical in China, 2008-2010
Table 2.2.3-2 Registration situation of imidacloprid formulations on rice in China, 2008-2010
Table 2.2.3-3 Capacity and output of imidacloprid technical (calculated by 95%) by producer in China, as of Nov. 2011
Table 2.2.3-4 Demand situation of major imidacloprid formulations (volume and value) in China, 2008-2010
Table 2.2.4-1 Registration situation of dichlorvos technical in China, 2008-2010
Table 2.2.4-2 Registration situation of dichlorvos formulations on rice in China, 2008-2010
Table 2.2.4-3 Capacity and output of dichlorvos technical (calculated by 95%) by producer in China, 2008-2010
Table 2.2.4-4 Demand situation of major dichlorvos formulations (volume and value) in China, 2008-2010
Table 2.2.5-1 Registration situation of acephate technical in China, 2008-2010
Table 2.2.5-2 Registration situation of acephate formulations on rice in China, 2008-2010
Table 2.2.5-3 Capacity and output of major acephate technical (calculated by 97%) producers in China, 2008-2010
Table 2.2.5-4 Demand situation of major acephate formulations (volume and value) in China, 2008-2010
Table 2.2.6-1 Registration situation of triazophos technical in China, 2008-2010
Table 2.2.6-2 Registration situation of triazophos formulation on rice in China, 2008-2010
Table 2.2.6-3 Capacity and output of major triazophos technical (calculated by 85%) producers in China, 2009-2010
Table 2.2.6-4 Demand situation of triazophos major formulations (volume and value) in China, 2009-2010
Table 2.2.7-1 Registration situation of pymetrozine technical in China, 2007-2010
Table 2.2.7-2 Registration situation of pymetrozine formulation on rice in China, 2008-2011
Table 2.2.7-3 Capacity and output of major pymetrozine technical (calculated by 95%) producers in China, 2009-Aug. 2011
Table 2.2.7-4 Demand situation of pymetrozine major formulations (volume and value) in China, 2009-2010
Table 2.2.8-1 Registration situation of buprofezin technical in China, 2008-2010
Table 2.2.8-2 Registration situation of buprofezin formulation on rice in China, 2008-2011
Table 2.2.8-3 Capacity and output of major buprofezin technical (calculated by 95%) producers in China, 2008-2010
Table 2.2.8-4 Demand situation of buprofezin major formulations (volume and value) in China, 2008-2010

LIST OF FIGURES
Figure 1-1 Prevention area of pests on rice in China, 2008-2010
Figure 1-2 Prevention area of main pests on rice in China, 2008-2010
Figure 2.1.1-1 Planting area of grain and rice in China, 2008-2010
Figure 2.1.1-2 Output of grain and rice in China, 2008-2010
Figure 2.1.1-3 Rice planting area by province in China, 2010
Figure 2.1.1-4 Rice output by province in China, 2010
Figure 2.1.2-1 Market of rice insecticides in China by volume and value, 2008-2010
Figure 2.1.3-1 Market share of key rice insecticides in China by volume, 2008-2010
Figure 2.1.3-2 Market share of key rice insecticides in China by value, 2008-2010
Figure 2.2.1-1 Prices of abamectin 95% technical and 1.8% EC in China, Apr.2008-Sept.2011
Figure 2.2.1-2 Consumption situation of abamectin (calculated by AI) on rice in China, 2008-2010
Figure 2.2.2-1 New and extended registrations of chlorpyrifos in China, 1987-March 2011
Figure 2.2.2-2 Price of chlorpyrifos 95% technical and 480gL EC in China, 2008-Oct. 2011
Figure 2.2.2-3 Consumption situation of chlorpyrifos (calculated by AI) on rice in China, 2008-2010
Figure 2.2.3-1 New and extended registrations of imidacloprid in China, 2000-2011
Figure 2.2.3-2 Price of imidacloprid 95% technical and 10% WP in China, 2008-Oct. 2011
Figure 2.2.3-3 Consumption situation of imidacloprid (calculated by AI) on rice in China, 2008-2010
Figure 2.2.4-1 Annual registrations of dichlorvos in China, 1995-March 2011
Figure 2.2.4-2 Price of dichlorvos 95% technical in China, 2008-Aug. 2011
Figure 2.2.4-3 Price of dichlorvos 80% EC in China, 2009-2010
Figure 2.2.4-4 Consumption situation of dichlorvos (calculated by AI) on rice in China, 2008-2010
Figure 2.2.5-1 Prices of acephate 97% technical and 30% EC in China, 2008-Aug. 2011
Figure 2.2.5-2 Consumption situation of acephate (calculated by AI) on rice in China, 2008-2010
Figure 2.2.6-1 Prices of triazophos 85% technical and 20% EC in China, 2008-Aug. 2011
Figure 2.2.6-2 Consumption situation of triazophos (calculated by AI) on rice in China, 2009-Aug. 2011
Figure 2.2.7-1 Prices of pymetrozine 95% technical and 25% WP in China, 2008-Oct. 2011
Figure 2.2.7-2 Consumption situation of pymetrozine (calculated by AI) on rice in China, 2009-Aug. 2011
Figure 2.2.8-1 Prices of buprofezin 95% technical and 25% WP in China, 2008-Oct. 2011
Figure 2.2.8-2 Consumption situation of buprofezin (calculated by AI) on rice in China, 2008-2010
Figure 2.3.2-1 Competition analysis of main rice insecticides in China, 2008
Figure 4.2-1 Forecast on domestic pesticide output (calculated by 100% AI), 2011-2015
Figure 4.2-2 Forecast on domestic demand for pesticides (calculated by 100% AI), 2011-2015
Figure 4.2-3 Forecast on domestic demand for insecticides on rice (calculated by 100% AI), 2011-2015
Figure 4.3-1 Market share of key insecticides on rice in China, 2010
Figure 4.3-2 Forecast on market share of key insecticides on rice in China, 2015
Figure 4.3-3 Forecast on domestic market volume for key insecticides on rice, 2011-2015

 

Published By : CCM International Ltd

 


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