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Survey of Pesticide Industry in China
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| Inhalt der Studie: |
China now plays an important role in pesticide production in the world. It is the biggest pesticide producer currently, whose output volume and export volume reached 2.23 million tonnes and 0.51 milli.....
China now plays an important role in pesticide production in the world. It is the biggest pesticide producer currently, whose output volume and export volume reached 2.23 million tonnes and 0.51 million tonnes respectively in 2009. Additionally, China is also a huge pesticide consumption market with sustainable tillage area of over 150 million hectares each year, and annual demand volume reaching over 400,000 tonnes. In recent years, China’s pesticide industry has witnessed fast but not so sound development. On one hand, its output is growing quickly with CAGR (2001-2009) up to 24.94%. Herbicide output reached 816,000 tonnes in 2009 after quick development in recent two years, exceeding that of insecticide for the first time and becoming the largest pesticide category. Through proper cooperation, merger and market exploitation, some domestic producers has showed the trend and ambition to join the international competition with agrochemicals giants. On the other hand, there are many serious problems appeared, like the currently obvious overcapacity. Hit by global economic crisis, more and more producers are facing profit decrease, continuous deficit and even possible bankruptcy. Still, with macroscopic readjustment and control by governmental policies and resource optimization via free competition in the market, it’s sure that there’s tremendous room for the further development of China’s pesticides, China’s pesticide production structure has been greatly adjusted with phaseout of traditional products with overcapacity and increasing expansion of new potential pesticide capacity, which will obviously change current total supply balance in China. In the future, pesticide market in China will witness more trade frictions among domestic producers, as well as much more commercial and cooperation opportunities. In this update report, CCM International will concretely analyze details and characteristics of current pesticide industry in China, and provide forecasts and suggestions to help you capture the overall trend and commercial opportunities. Compared with the former edition in 2008, this edition enhances the following parts: - Marked characteristics of China’s pesticide industry - Industrial distribution of China’s pesticide industry - New R&D result of innovative AI developed in recent years in China - New production technologies to be greatly promoted in the future - Influencing policies on current and future pesticide industry in China - More details of current major products in China, including concrete output, capacity, consumption, price, import and export, technology, registration, key player, development trend, etc. - Potential commercial opportunities for pesticide industry in China - A new appendix covering the list of details of 100 top pesticide AIs and their corresponding intermediates. This report is helpful to: - Companies engaged in production, R&D and sales of pesticides. - Traders paying close attention to pesticide market in China - Analysts and consultants trying to gain insight into pesticide industry and market in China - Chambers of commerce and associations paying attention to pesticide industry and market in China Companies Listed Nanjing Redsun Co., Ltd. Zhejiang Wynca Chemical Industry Group Co., Ltd. Jiangsu Yangnong Chemical Group Co., Ltd.. …… Jiangsu Tianrong Co., Ltd. Dalian Raiser Pesticides Co., Ltd. …… [Studien Infos ausblenden] |
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Executive summary Definition, scope and methodology I Overview of China’s pesticide industry I-1 Development history of Chinese pesticide industry I-2 Marked characteristics of China’s pesticide industry I-3 Overview of historical production of Chinese pesticide II Factors influencing Chinese pesticide industry II-1 Policies factors - Pesticide manufacturer approval policies - Pesticide registration administration policies - Sewage discharge regulations related to pesticide - Outlook II-2 Social environment II-2.1 Characteristics of pesticide users II-2.2 Urbanization II-2.3 Controversial issue of safety of GM Crops II-3 Economic factors II-4 Environmental/natural factors - Situation of crop cultivation (Structure and area) - Situation of GM crops - Situation of non-tillage crops - Pest and disease occurrence and resistance II-5 Technological factors III Market analysis of major insecticides in China III-1 Overview of Chinese insecticides industry III-2 DDVP III-3 Acephate III-4 Trichlorfon III-5 Chlorpyrifos III-6 Dimethoate III-7 Imidacloprid III-8 Beta-cypermethrin III-9 Phoxim III-10 Abamectin III-11 Other insecticides III-11.1 Malathion III-11.2 Acetamiprid III-11.3 Endosulfan IV Market analysis of major herbicides in China IV-1 Overview of Chinese herbicides industry IV-2 Glyphosate IV-3 Acetochlor IV-4 Paraquat IV-5 Butachlor IV-6 Atrazine IV-7 Quizalofop-P-ethyl IV-8 Nicosulfuron IV-9 Other herbicides - Alachlor - Metolachlor - Glufosinate-ammonium V Market analysis of major fungicides in China V-1 Overview of Chinese fungicide industry V-2 Mancozeb V-3 Carbendazim V-4 Chlorothalonil V-5 Thiophanate methyl V-6 Tebuconazole V-7 Triadimefon V-8 Prochloraz V-9 Other fungicides - Propiconazole - Difenoconazole - Phosethyl Al - Dimethomorph VI Competitive landscape and future supply/demand forecast VI-1 Key competitiveness and weakness of Chinese pesticide industry in global market VI-2 Key factors and driving forces for the development of pesticide industry in China VI-3 Future forecast on pesticide industry to 2015 VI-3.1 Introduction to the forecast VI-3.2 Forecast on insecticides to 2015 VI-3.3 Forecast on herbicides to 2015 VI-3.4 Forecast on fungicides to 2015 VII SWOT analysis of top 10 pesticide manufacturers VIII Commercial opportunity in Chinese pesticide industry - Benefits for foreign investors - Preferred regions for agrochemicals - Commercial opportunities IX Appendix: Profiles of key 30 pesticide manufacturers IX-1 Nanjing Redsun Co., Ltd. IX-2 Zhejiang Wynca Chemical Industry Group Co., Ltd. IX-3 Jiangsu Yangnong Chemical Group Co., Ltd. IX-4 Anhui Huaxing Chemical Industry Co., Ltd. IX-5 Shandong Weifang Rainbow Chemical Co., Ltd. IX-6 Zhejiang Jinfanda Bio-chemical Co., Ltd. IX-7 Hubei Sanonda Co., Ltd. IX-8 Nantong Jiangshan Agrochemical & Chemical Co., Ltd. IX-9 Shandong Binnong Technology Co., Ltd. IX-10 Jiangsu Changlong Chemical Co., Ltd. IX-11 Jiangsu Fengshan Group Co., Ltd. IX-12 Jiangsu Kwin Group Co., Ltd. IX-13 Shandong Qiaochang Chemical Co., Ltd. IX-14 Jiangsu Changqing Agrochemical Co., Ltd. IX-15 Jiangsu Huifeng Agrochemical Co., Ltd. IX-16 Shandong Huayang Technology Co., Ltd. IX-17 Hebei Veyong Bio-Chemical Co. Ltd. IX-18 Zhejiang Jingma Chemicals Co., Ltd. IX-19 Shandong Dacheng Pesticide Co., Ltd. IX-20 Hunan Haili Chemical Industry Co., Ltd. IX-21 Jiangsu Good Harvest-Weien Agrochemical Co., Ltd. IX-22 Hangzhou Qingfeng Agrochemical Co., Ltd. IX-23 Fujian Sannong Group Co., Ltd. IX-24 ZhongShan Chemical Industries Group IX-25 Sichuan Lier Chemical Co., Ltd. IX-26 Anhui Guangxin Agrochemical Chemicals Co., Ltd. IX-27 Jiangsu Lanfeng Bio-Chem Co., Ltd. IX-28 Ningxia Sanxi Chemical Co., Ltd. IX-29 Jiangsu Tianrong Co., Ltd. IX-30 Dalian Raiser Pesticides Co., Ltd. [Inhaltsverzeichnis ausblenden] |
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LIST OF TABLES Table I-1.1 Development of Pesticide Industry in China, 1949-2010 Table I-3.1 Number of pesticide producers with three certificates in China, 2003-2009 Table I-3.2 Output of pesticide technical, 1994-2009, tonne Table I-3.3 Registration of water-based formulations in China, as of Aug. 23th, 2010 Table I-3.4 Registration of two traditional formulations in China, as of Aug. 23th, 2010 Table I-3.5 Pesticide output in China by region, 2003~2009, tonne Table I-3.6 Commercialized AI with China’s independent intellectual property rights, as of Aug. 2010 Table I-3.7 Potential innovative AI to be commercialized soon Table I-3.8 New registration of pesticide formulations in China, 2006-2008 Table II-1.1 Major administrations and policies on pesticides or pesticide industry in China Table II-1.2 New entrance threshold stipulated in the Notice No. 485 [2008] Table II-1.3 Contrast of pesticide enterprises’ registration capital between current standard and “Pesticide Production Entrance Conditions (draft)”, million USD Table II-1.4 Restricted pesticides in “Pesticide Production Entrance Conditions (draft) [2009]” Table II-1.5 New polices issued in recent two years for pesticide industry in China Table II-1.6 Components of effluent standards of pollutants for pesticide industry, 2008 Table II-1.7 Effluent standards of pollutants for heterocyclic pesticides industry, mg/l Table II-1.8 Integrated wastewater discharge standard, GB8978-1996, Mg/l Table II-1.9 Environmental protection policies and environmental cost in pesticide industry in China, as of August 2010 Table II-4.1 Global planting area of GM crops, 2000~2009, million hectare Table II-4.2 Non-tillage cultivation system development plan in China, million ha. Table II-4.3 Advantages of non-tillage cultivation technology Table II-4.4 Areas of diseases and insect pests, breakdown by major traditional crops, 2003-2010 Table II-4.5 Areas of diseases and insect pests of the major traditional crops, breakdown by disease and pests, 2003-2010 Table II-4.6 Areas of diseases and insect pests, breakdown by major cash crops, 2006-2010, million ha. Table II-4.7 Areas of diseases and insect pests on major cash crops (vegetable, apple, orange), breakdown by diseases and pests, 2006-2010 Table II-4.8 Common pesticide-resistant insect pests and diseases in China Table II-5.1 Technologies to be greatly promoted in the coming three years in China Table III-1.1 Classifications of insecticides in China Table III-2.1 Registration situation of DDVP in China, as of Aug. 23, 2010 Table III-2.2 Key manufacturers of DDVP technical in China, 2010 Table III-3.1 Registration situation of acephate in China, as of Aug. 23, 2010 Table III-3.2 Number of acephate registrations in China, 2002-2010 Table III-3.3 Key Chinese manufacturers of acephate technical, 2010 Table III-4.1 Target pests of trichlorfon in China Table III-4.2 Registration situation of trichlorfon in China, as of Aug. 23, 2010 Table III-4.3 Key Chinese manufacturers of trichlorfon technical, 2010 Table III-5.1 Registration situation of chlorpyrifos in China, as of Aug. 23, 2010 Table III-5.2 Key Chinese manufacturers of chlorpyrifos technical, 2010 Table III-5.3 Production quality comparison between technology A and B Table III-6.1 Registration situation of dimethoate in China, as of Aug. 23, 2010 Table III-6.2 Key Chinese manufacturers of dimethoate technical, 2009-2010 Table III-7.1 Registration situation of imidacloprid in China, as of Aug. 23, 2010 Table III-7.2 Key Chinese manufacturers of imidacloprid technical, 2010 Table III-7.3 Main technologies of imidacloprid production, 2010 Table III-8.1 Registration situation of beta-cypermethrin in China, as of Aug. 23, 2010 Table III-8.2 Key Chinese manufacturers of beta-cypermethrin in China, 2010 Table III-9.1 Registration situation of phoxim in China, as of Aug. 23, 2010 Table III-9.2 Key Chinese manufacturers of phoxim technical, 2009-2010 Table III-10.1 Registration situation of abamectin in China, as of Aug. 23, 2010 Table III-10.2 Key Chinese manufacturers of abamectin technical, 2010 Table III-11.1.1 Key Chinese manufacturers of malathion technical, 2010 Table III-11.2.1 Key Chinese manufacturers of acetamiprid technical, 2010 Table III-11.3.1 Key Chinese manufacturers of endosulfan technical, 2010 Table IV-1.1 Classifications of herbicide Table IV-2.1 Registration situation of glyphosate in China, as of Aug. 23, 2010 Table IV-2.2 Output of glyphosate technical in China by different pathways, 2005-2009 Table IV-2.3 Key producers of glyphosate technical in China, as of Sep. 2010 Table IV-2.4 Comparison of different pathways Table IV-2.5 Drivers and barriers for the development of glyphosate industry in China Table IV-3.1 Registration situation of acetochlor in China, as of Aug. 23, 2010 Table IV-3.2 Key producers of acetochlor technical in China, as of Sep. 2010 Table IV-3.3 Material consumption quota for two acetochlor production pathway, kg/t butachlor 100% AI Table IV-3.4 Drivers and barriers for the development of acetochlor industry in China Table IV-4.1 Registration situation of paraquat in China, as of Aug. 23, 2010 Table IV-4.2 Supply and demand of paraquat in China, 2003~2009, tonne Table IV-4.3 Key producers of paraquat TK in China, as of Sep. 2010 Table IV-4.4 Current situation of paraquat technology in China, 2010 Table IV-5.1 Registration situation of butachlor in China, as of Aug. 23, 2010 Table IV-5.2 Key producers of butachlor technical in China, as of Sep. 2010 Table IV-5.3 Material consumption quota for two butachlor production pathways, kg/t butachlor 100% AI Table IV-5.4 Drivers and barriers for the development of butachlor industry in China Table IV-6.1 Registration situation of atrazine in China, as of Aug. 23, 2010 Table IV-6.2 Key producers of atrazine technical in China, as of Sep. 2010 Table IV-6.3 Comparison of solvent route and water route for atrazine production Table IV-7.1 Registration situation of quizalofop-P-ethyl in China, as of Aug. 23, 2010 Table IV-7.2 Comparison of quizalofop-P-ethyl and its competitive products Table IV-7.3 Key producers of quizalofop-P-ethyl technical in China, as of Sep. 2010 Table IV-7.4 Comparison of the two production routes of quizalofop-P-ethyl Table IV-7.5 Drivers and barriers for the development of quizalofop-P-ethyl industry in China Table IV-8.1 Registration situation of nicosulfuron in China, as of Aug. 23, 2010 Table IV-8.2 Key producers of nicosulfuron technical in China, as of Sep. 2010 Table IV-8.3 Drivers and barriers for the development of nicosulfuron industry in China Table IV-9.1 Registration situation of alachlor in China, as of Aug. 23, 2010 Table IV-9.2 Key producers of alachlor technical in China, as of Sep. 2010 Table IV-9.3 Registration situation of metolachlor in China, as of Aug. 23, 2010 Table IV-9.4 Key producers of metolachlor technical in China, as of Sep. 2010 Table IV-9.5 Registration situation of glufosinate-ammonium in China, as of Aug. 23, 2010 Table V-1.1 Classification and major products of fungicide in China Table V-1.2 Classification and major products of fungicide in China Table V-2.1 Registration situation of mancozeb in China, as of Aug. 23, 2010 Table V-2.2 Key Chinese manufacturers of mancozeb technical, 2010 Table V-3.1 Registration situation of carbendazim in China, Aug. 23, 2010 Table V-3.2 Key producers of carbendazim TC in China, 2010 Table V-4.1 Registration situation of chlorothalonil in China, Aug. 23, 2010 Table V-4.2 Key producers of chlorothalonil TC in China, 2010 Table V-5.1 Registration situation of thiophanate methyl in China, Aug. 23, 2010 Table V-5.2 Key producers of thiophanate methyl TC in China, 2010 Table V-6.1 Registration situation of triadimefon in China, Aug. 23, 2010 Table V-6.2 Key producers of triadimefon TC in China, 2010 Table V-7.1 Registration situation of prochloraz in China, Aug. 23, 2010 Table V-7.2 Key producers of prochloraz TC in China, 2009~2010 Table V-8.1 Registration situation of tebuconazole in China, Aug. 23, 2010 Table V-8.2 Key producers of tebuconazole TC in China, 2009~2010 Table V-9.1 Key Chinese manufacturers of propiconazole technical, 2010 Table V-9.2 Key Chinese manufacturers of difenoconazole technical, 2010 Table V-9.3 Key Chinese manufacturers of phosethyl AI technical, 2010 Table V-9.4 Key Chinese manufacturers of dimethomorph technical, 2010 Table VI-2.1 China’s policies for boosting peasants’ income Table VI-2.2 Comparison of labor supply and cost between China and the US Table V-3.1.1 Assumptions of future GDP growth in China Table VI-3.2.1 Trends influencing insecticide development Table VI-3.2.2 Historical growth rate of insecticide and pesticide output, 2004-2009 Table VI-3.3.1 Trends influencing herbicide development Table VI-3.3.2 Historical growth rate of herbicide and pesticide output, 2004-2009 Table VI-3.4.1 Trends influencing fungicide development Table VI-3.4.2 Historical growth rate of fungicide and pesticide output, 2004-2009 Table VII-1 SWOT analysis of Nanjing Redsun Co., Ltd., 2010 Table VII-2 SWOT analysis of Anhui Huaxing Chemical Industry Co., Ltd., 2010 Table VII-3 SWOT analysis of Jiangsu Yangnong Chemical Group Co., Ltd., 2010 Table VII-4 SWOT analysis of Zhejiang Wynca Chemical Industry Group Co., Ltd., 2010 Table VII-5 SWOT analysis of Shandong Huayang Technology Co., Ltd., 2010 Table VII-6 SWOT analysis of Nantong Jiangshan Agrochemical & Chemical Co., Ltd., 2010 Table VII-7 SWOT analysis of Shandong Weifang Rainbow Chemical Co., Ltd., 2010 Table VII-8 SWOT analysis of Shandong Dacheng Pesticide Co., Ltd., 2010 Table VII-9 SWOT analysis of Hubei Sanonda Co., Ltd., 2010 Table VII-10 SWOT analysis of Shandong Qiaochang Chemical Co., Ltd., 2010 LIST OF FIGURES Figure I-3.1 Output value of pesticide 2001, 2007-2009, million USD Figure I-3.2 Pesticide technical structure by output, 2001-2009 Figure I-3.3 Output structure comparison of pesticide production, 1994 and 2009 Figure I-3.4 Regional output distribution of pesticide technical production in China, 2009 Figure II-3.2.1 Per capita disposable income of urban residents in China, 2000~2009 Figure II-3.2.2 Per capita net income of rural residents in China, 2000~2009 Figure II-4.1 China’s crop planting area, 1991~2009 Figure II-4.2 Comparison of China’s crop planting area, 2002 and 2009 Figure II-4.3 Planting area of major grain crops in China, 1991-2009 Figure II-4.4 Global GM crops planting area, 1996~2009 Figure II-4.5 Insect-resistant GM crops planting area in China, 1999~2009 Figure II-4.6 Total stricken area of crop diseases and insect pests, 2003~2010 Figure II-4.7 Structure of grain loss caused by plant diseases, insect pests and weeds, 2009 Figure III-1.1 Capacity and output of insecticides, 2005-2009 Figure III-2.1 Capacity and output of DDVP technical, 2005-2009 Figure III-2.2 Price change of DDVP technical, 2005-2010 Figure III-2.3 Consumption structure of DDVP in China by volume, 2009 Figure III-2.4 Forecast on supply of DDVP technical in China, 2010-2015 Figure III-3.1 Capacity and output of acephate technical, 2005-2009 Figure III-3.2 Price change of acephate technical, 2005-2010 Figure III-3.3 Consumption structure of acephate in China by volume, 2009 Figure III-3.4 Forecast on supply of acephate technical in China, 2010-2015 Figure III-4.1 Capacity and output of trichlorfon technical, 2005-2009 Figure III-4.2 Price change of trichlorfon, 2005-2010 Figure III-4.3 Consumption structure of trichlorfon in China by volume, 2009 Figure III-4.4 Forecast on supply of trichlorfon technical in China, 2010-2015 Figure III-5.1 Capacity and output of chlorpyrifos technical, 2005-2009 Figure III-5.2 Price change of chlorpyrifos technical, 2005-2010 Figure III-5.3 Consumption structure of chlorpyrifos in China by volume, 2009 Figure III-5.4 Forecast on supply of chlorpyrifos technical in China, 2010-2015 Figure III-6.1 Output and capacity of dimethoate technical, 2005-2009 Figure III-6.2 Price change of dimethoate technical, 2005-2010 Figure III-6.3 Consumption structure of dimethoate in China by volume, 2009 Figure III-6.4 Forecast on supply of dimethoate technical in China, 2010-2015 Figure III-7.1 Output and capacity of imidacloprid technical, 2005-2009 Figure III-7.2 Price change of imidacloprid technical in China, 2005~2010 Figure III-7.3 Consumption structure of imidacloprid in China by volume, 2009 Figure III-7.4 Forecast on supply of imidacloprid technical in China, 2010-2015 Figure III-8-1Capacity and output of beta-cypermethrin technical, 2005-2009 Figure III-8.2 Price change of beta-cypermethrin technical, 2005-2010 Figure III-8.3 Consumption structure of beta-cypermethrin in China by volume, 2009 Figure III-8.4 Forecast on supply of beta-cypermethrin technical in China, 2010-2015 Figure III-9.1 Capacity and output of phoxim technical, 2005-2009 Figure III-9.2 Price change of phoxim technical, 2005-2010 Figure III-9-3 Consumption structure of phoxim in China by volume, 2009 Figure III-9.4 Forecast on supply of phoxim technical in China, 2010-2015 Figure III-10.1Capacity and output of abamectin technical, 2005-2009 Figure III-10.2 Price change of abamectin technical, 2005-2010 Figure III-10.3 Consumption structure of abamectin in China by volume, 2009 Figure III-10.4 Forecast on supply of abamectin technical in China, 2010-2015 Figure IV-1.1 Capacity and output of herbicides, 2004-2009 Figure IV-1.2 Market share of herbicides by category and market value in China, 2009 Figure IV-1.3 Consumption structure of major herbicides in China by volume, 2009 Figure IV-2.1 Output of glyphosate technical, 2004-2009 Figure IV-2.2 Different pathways of glyphosate technical production in China Figure IV-2.3 Price change of glyphosate technical in China, 2005-2010 Figure IV-2.4 Consumption pattern of glyphosate in China by volume, 2009 Figure IV-2.5 Forecast on supply of glyphosate technical in China, 2010-2015 Figure IV-3.1 Output of acetochlor technical, 2004-2009 Figure IV-3.2 Price change of acetochlor technical in China, 2005-2010 Figure IV-3.3 Consumption structure of acetochlor in China by volume, 2009 Figure IV-3.4 Forecast on supply of acetochlor technical in China, 2010-2015 Figure IV-4.1 Output of paraquat TK, 2004-2009 Figurer IV-4.2 Chemical principle of MC process and WC process Figurer IV-4.3 Flowchart of AC process Figure IV-4.4 Price of paraquat TK in China, 2005-2010 Figure IV-4.5 Consumption pattern of paraquat in China by volume, 2009 Figure IV-4.6 Forecast on supply of paraquat TK in China, 2010-2015 Figure IV-5.1 Output of butachlor technical, 2004-2009 Figure IV-5.2 Price change of butachlor technical in China, 2005-2010 Figure IV-5.3 Price change of butachlor technical in China, Jan. 2008-Aug. 2010 Figure IV-5.4 Consumption structure of butachlor in China by volume, 2009 Figure IV-5.5 Forecast on supply of butachlor technical in China, 2010-2015 Figure IV-6.1 Output of atrazine technical, 2005-2009 Figure IV-6.2 Flowchart of solvent route Figure IV-6.3 Main reasons for price soar of atrazine technical in 2008 Figure IV-6.4 Price change of atrazine technical in China, 2005-2010 Figure IV-6.5 Consumption pattern of atrazine in China by volume, 2009 Figure IV-6.6 Driving forces and barriers for development of Chinese atrazine Figure IV-6.7 Forecast on supply of atrazine technical in China, 2010-2015 Figure IV-7.1 Output of quizalofop-P-ethyl technical, 2005-2009 Figure IV-7.2 Flowchart of A route Figure IV-7.3 Flowchart of B route Figure IV-7.4 Price of quizalofop-P-ethyl technical in China, 2008 - Aug. 2010 Figure IV-7.5 Distribution of quizalofop-P-ethyl application in China, 2009 Figure IV-7.6 Forecast on supply of quizalofop-P-ethyl technical in China, 2010-2015 Figure IV-8.1 Registrations of nicosulfuron technical, as of Aug. 23, 2010 Figure IV-8.2 Output of nicosulfuron technical in China, 2007~2009 Figure IV-8.3 Price change of nicosulfuron technical in China, 2009 - Apr. 2010 Figure IV-8.4 Consumption pattern of nicosulfuron in China by volume, 2009 Figure IV-8.5 Forecast on supply of nicosulfuron technical in China, 2010-2015 Figure V-1.1 Capacity and output of fungicide, 2003-2009 Figure V-1.2 Market share of fungicides by category and consumption volume in China, 2009 Figure V-2.1 Output of mancozeb technical, 2005-2009 Figure V-2.2 Chemical principle of mancozeb synthesis in China Figure V-2.3 Flowchart of mancozeb synthesis Figure V-2.4 Price change of mancozeb technical, 2005-Sep. 2010 Figure V-2.5 Consumption structure of mancozeb in China by volume, 2009 Figure V-2.6 Forecast on output of mancozeb technical in China, 2010-2015 Figure V-3.1 Output of carbendazim TC in China, 2005-2009 Figure V-3.2 Flow chart of carbendazim Figure V-3.3 Price change of carbendazim TC in China, 2005~2009 Figure V-3.4 Consumption structure of carbendazim TC in China by volume, 2009 Figure V-3.5 Forecast on supply of carbendazim TC in China, 2010~2015 Figure V-4.1 Output of chlorothalonil TC in China, 2005-2009 Figure V-4.2 Flow chart of chlorothalonil Figure V-4.3 Price change of chlorothalonil TC in China, 2005~2009 Figure V-4.4 Consumption structure of chlorothalonil TC in China by volume, 2009 Figure V-4.5 Forecast on supply of chlorothalonil TC in China, 2010~2015 Figure V-5.1 Output of thiophanate methyl TC in China, 2005-2009 Figure V-5.2 Price change of thiophanate methyl TC in China, 2005~2009 Figure V-5.3 Consumption structure of thiophanate methyl TC in China by volume, 2009 Figure V-5.4 Forecast on supply of thiophanate methyl TC in China, 2010~2015 Figure V-6.1 Output of triadimefon TC in China, 2005-2009 Figure V-6.2 Flow chart of triadimerfon Figure V-6.3 Price change of triadimefon TC in China, 2005~2009 Figure V-6.4 Consumption structure of triadimefon TC in China by volume, 2009 Figure V-6.5 Forecast on supply of triadimefon TC in China, 2010~2015 Figure V-7.1 Output of prochloraz TC in China, 2005-2009 Figure V-7.2 Flow chart of prochloraz Figure V-7.3 Price change of prochloraz TC in China, 2005~2009 Figure V-7.4 Consumption structure of prochloraz TC in China by volume, 2009 Figure V-7.5 Forecast on supply of prochloraz TC in China, 2010~2015 Figure V-8.1 Output of tebuconazole TC in China, 2005-2009 Figure V-8.2 Flow chart of tebuconazole Figure V-8.3 Price of tebuconazole TC in China, 2005~2009 Figure V-8.4 Consumption structure of tebuconazole in China by volume, 2009 Figure V-8.5 Forecast on supply of tebuconazole TC in China, 2010~2015 Figure VI-2.1 Income change of Chinese peasants, 2004-2009 Figure VI-2.2 Number of people engaged in primary industry in China, 2004-2009 Figure VI-2.3 Government’s investment in agriculture 2004-2009 Figure VI-2.4 USD/RMB exchange rate, 2004-2010 Figure V-3.1.1 China’s GDP growth, 2004-2009 Figure VI-3.2.1 Projection on insecticide output, 2010-2015 Figure VI-3.2.2 Projection on the domestic insecticide demand, 2010-2015 Figure VI-3.3.1 Projection on herbicide output, 2010-2015 Figure VI-3.3.2 Projection on domestic herbicide demand, 2010-2015 Figure VI-3.4.1 Projection on fungicide output, 2010-2015 Figure VI-3.4.2 Projection on the domestic fungicide demand, 2010-2015 [Tabellenverzeichnis ausblenden] |
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