Figure No.
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Figure Title
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Figure 1-1
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Output and share of herbicides in China's pesticide industry, 2000-H1 2012
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Figure 1-2
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Output structure of main herbicide products in China, 2011
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Figure 1-3
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Output structure of main herbicide products in China, 2008
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Figure 1-4
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Market value share of herbicides by category in China, 2011
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Figure 1-5
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Consumption structure of major herbicides in China by volume, 2011
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Figure 2.1-1
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Capacity and output of glyphosate technical in China, 2008-2011
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Figure 2.1-2
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Various production pathways of glyphosate technical in China
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Figure 2.1-3
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Ex-work price of glyphosate 95% technical in China, Jan. 2009-July 2012
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Figure 2.1-4
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Ex-work price of glyphosate 41% IPA in China, Jan. 2009-July 2012
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Figure 2.1-5
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Consumption structure of glyphosate by crops in China, 2011
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Figure 2.1-6
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Output forecast on glyphosate technical in China, 2012-2016
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Figure 2.1-7
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Forecast on consumption and market value of glyphosate (by 95% technical) in China, 2012-2016
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Figure 2.2-1
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Valid registrations of acetochlor formulation by types in China, as of Aug. 2012
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Figure 2.2-2
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Capacity and output of acetochlor technical in China, 2009-2011
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Figure 2.2-3
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Methylene route of acetochlor technical in China, 2012
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Figure 2.2-4
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Ether route of acetochlor technical in China, 2012
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Figure 2.2-5
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Average ex-work price of acetochlor 92% technical in China, Jan. 2008-Aug. 2012
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Figure 2.2-6
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Average ex-work price of acetochlor 900g/L EC in China, 2007-2011
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Figure 2.2-7
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Average ex-work price of acetochlor 900g/L EC in China, Jan. 2011-Aug. 2012
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Figure 2.2-8
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Consumption structure of acetochlor by crops in China, 2011
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Figure 2.2-9
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Consumption volume of acetochlor by crops in China (calculated by 92% tchnical), 2009-2011
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Figure 2.2-10
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Forecast on output of acetochlor technical in China, 2012-2016
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Figure 2.2-11
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Forecast on consumption volume (by 92% technical) and value of acetochlor in China, 2012-2016
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Figure 2.3-1
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Capacity and output of paraquat technical in China, 2008-2011
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Figure 2.3-2
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Chemical principle of paraquat's MC process
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Figure 2.3-3
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Flowchart of paraquat AC process, 2012
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Figure 2.3-4
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Ex-work price of paraquat 42% TK in China, Jan. 2009-July 2012
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Figure 2.3-5
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Ex-work price of paraquat 200g/L AS in China, Jan. 2009-July 2012
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Figure 2.3-6
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Consumption structure of paraquat by crops in China, 2011
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Figure 2.3-7
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Forecast on output of paraquat by 42% TK in China, 2012-2016
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Figure 2.3-8
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Forecast on consumption and market value of paraquat by 42% TK in China, 2012-2016
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Figure 2.4-1
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Valid registrations of 2,4-D formulations by types in China, as of Aug. 2012
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Figure 2.4-2
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Flowchart of the first method for 2,4-D (chlorination first and then condensation)
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Figure 2.4-3
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Flowchart of the second method for 2,4-D (condensation first and then chlorination)
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Figure 2.4-4
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Capacity and output of 2,4-D technical in China, 2008-2011
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Figure 2.4-5
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Ex-work price of 2,4-D technical (96%) in China, 2007-2011
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Figure 2.4-6
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Ex-work price of 2,4-D technical (96%) in China, Jan. 2011-Aug. 2012
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Figure 2.4-7
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Ex-work price of 2,4-D amine salt 720g/L SL in China, 2007-2011
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Figure 2.4-8
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Ex-work price of 2,4-D amine salt 720g/L SL in China, Jan. 2011-Aug. 2012
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Figure 2.4-9
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Ex-work price of 2,4-D butylate 57% EC in China, 2007-2011
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Figure 2.4-10
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Share of consumption volume of 2,4-D by crops in China, 2011
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Figure 2.4-11
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Forecast on output of 2,4-D technical in China, 2012-2016
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Figure 2.4-12
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Forecast on domestic consumption volume (by 96% technical) and value of 2,4-D, 2012-2016
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Figure 2.5-1
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Capacity and output of atrazine technical in China, 2008-2011
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Figure 2.5-2
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Flowchart of solvent route in atrazine technical production
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Figure 2.5-3
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Ex-work price of atrazine 97% technical in China, Jan. 2009-July 2012
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Figure 2.5-4
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Consumption structure of atrazine by crops in China, 2011
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Figure 2.5-5
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Atrazine consumption by main crops in China, 2008-2011
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Figure 2.5-6
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Forecast on output of atrazine (97% TC) in China, 2012-2016
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Figure 2.5-7
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Forecast on consumpation and market value of atrazine (97% TC) in China, 2012-2016
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Figure 2.6-1
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Capacity and output of tribenuron-methyl technical in China, 2010-2011
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Figure 2.6-2
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Ex-work price of tribenuron-methyl 95% technical in China, Jan. 2010-July 2012
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Figure 2.6-3
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Ex-work price of tribenuron-methyl 75% WDG in China, Jan. 2011-July 2012
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Figure 2.6-4
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Consumption structure of tribenuron-methyl by crops in China, 2011
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Figure 2.6-5
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Forecast on output of tribenuron-methyl (95% TC) in China, 2012-2016
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Figure 2.6-6
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Forecast on consumpation and market value of tribenuron-methyl (95% TC) in China, 2012-2016
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Figure 2.7-1
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Capacity and output of bensulfuron-methyl technical in China, 2010-2011
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Figure 2.7-2
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Ex-work price of bensulfuron-methyl 95% technical in China, Jan. 2010-July 2012
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Figure 2.7-3
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Ex-work price of bensulfuron-methyl 60% WDG in China, Jan. 2011-July 2012
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Figure 2.7-4
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Consumption structure of bensulfuron-methyl by crops in China, 2011
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Figure 2.7-5
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Forecast on output of bensulfuron-methyl (95% technical) in China, 2012-2016
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Figure 2.7-6
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Forecast on consumpation and market value of bensulfuron-methyl by 95% TC in China, 2012-2016
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Figure 2.8-1
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Valid registrations of metolachlor formulations by types in China, as of Aug. 2012
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Figure 2.8-2
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Capacity and output of metolachlor technical in China, 2009-2011
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Figure 2.8-3
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Methoxyacetone route of metolachlor technical, 2012
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Figure 2.8-4
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2-Chlorine propanol route of metolachlor technical, 2012
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Figure 2.8-5
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2-Bromo-1-methoxyl propane route of metolachlor technical, 2012
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Figure 2.8-6
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Average ex-work prices of metolachlor 97% technical in China, Jan. 2008-Aug. 2012
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Figure 2.8-7
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Average ex-work prices of metolachlor 720g/L EC in China, Jan. 2008-Aug. 2012
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Figure 2.8-8
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Consumption structure of metolachlor by crops in China, 2011
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Figure 2.8-9
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Consumption volume of metolachlor by crops in China (calculated by 97% technical), 2009-2011
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Figure 2.8-10
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Forecast on output of metolachlor technical in China, 2012-2016
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Figure 2.8-11
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Forecast on consumption volume (by 97% technical) and its value of metolachlor in China, 2012-2016
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Figure 2.9-1
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Capacity and output of pendimethalin technical in China, 2008-2011
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Figure 2.9-2
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Ex-work price of pendimethalin 95% technical in China, 2008-Aug. 2012
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Figure 2.9-3
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Consumption structure of pendimethalin by crops in China, 2011
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Figure 2.9-4
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Forecast on output of pendimethalin technical (95%) in China, 2012-2016
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Figure 2.9-5
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Forecast on consumption volume (by 95% technical) and its value of pendimethalin in China, 2012-2016
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Figure 2.10-1
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Capacity and output of fenoxaprop-P-ethyl technical in China, 2009-2011
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Figure 2.10-2
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Ex-work price of fenoxaprop-P-ethyl 95% technical in China, Jan. 2008-Aug. 2012
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Figure 2.10-3
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Consumption structure of fenoxaprop-P-ethyl by crops in China, 2011
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Figure 2.10-4
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Forecast on output of fenoxaprop-P-ethyl technical (by 95% technical) in China, 2012-2016
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Figure 2.10-5
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Forecast on consumption volume (by 95% technical) and its value of fenoxaprop-P-ethyl in China, 2012-2016
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Figure 2.11-1
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Capacity and output of quizalofop-P-ethyl technical in China, 2009-2011
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Figure 2.11-2
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Ex-work price of quizalofop-P-ethyl 95% technical in China, Jan. 2010-July 2012
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Figure 2.11-3
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Ex-work price of quizalofop-P-ethyl 5% EC in China, Jan. 2010-July 2012
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Figure 2.11-4
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Consumption structure of quizalofop-P-ethyl by crops in China, 2011
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Figure 2.11-5
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Forecast on output of quizalofop-P-ethyl (95% TC) in China, 2012-2016
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Figure 2.11-6
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Forecast on consumption and market value of quizalofop-P-ethyl (95% TC) in China, 2012-2016
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Figure 2.12-1
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Capacity and output of dicamba technical in China, 2008-2011
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Figure 2.12-2
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Ex-work price of dicamba 98% technical in China, Jan. 2011-July 2012
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Figure 2.12-3
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Ex-work price of dicamba 48% AS in China, Jan. 2011-July 2012
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Figure 2.12-4
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Consumption structure of dicamba by crops in China, 2011
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Figure 2.12-5
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Forecast on output of dicamba (98% TC) in China, 2012-2016
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Figure 2.12-6
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Forecast on consumption and market value of dicamba (98% TC) in China, 2012-2016
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