Figure No.
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Figure Title
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Figure I-1-1
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Total output of glyphosate in the world, 2006-2010
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Figure I-1-2
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Global glyphosate distribution, 2011
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Figure I-1-3
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China’s glyphosate distribution, 2011
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Figure I-1-4
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Output share of China’s glyphosate technical by distribution, 2006-2010
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Figure I-1-5
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Output share of China’s glyphosate technical by distribution, 2010
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Figure I-1-6
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Circulation of glyphosate technical and PMIDA in the world, 2008
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Figure I-2-1
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Global glyphosate demand and its growth rate, 2006-2010
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Figure I-2-2
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Consumption structure of glyphosate by region, 2010
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Figure I-3.1-1
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Growth rates of glyphosate demand and related drivers, 2006-2010
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Figure I-3.1-3
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Global harvested area of biotech crops by trait, 2006-2010
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Figure I-3.1-4
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Dominant herbicide tolerant and stacked traits crops, 2005-2009
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Figure I-3.-1
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Forecast of global glyphosate demand, 2011-2020
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Figure II-1
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Different routes of glyphosate technical production
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Figure II-1-1
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Supply of glyphosate technical by different route in the world, 2006-2010
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Figure II-1-2
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Market share of glyphosate by different route in the world, 2006-2010
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Figure II-1-3
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Production of glyphosate technical by route in China, 2006-2010
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Figure II-2.1-1
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Brief pathway of AEA route
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Figure II-2.1-2
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Flowchart of AEA route
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Figure II-2.2-1
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Brief pathway of DEA route
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Figure II-2.2-2
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Flowchart of DEA route
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Figure II-2.3-1
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Brief route of IDAN route
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Figure II-2.3-2
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Flowchart of IDAN route
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Figure II-3.1-1
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Flowchart of membrane method on AEA glyphosate alkali mother liquid
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Figure II-3.1-2
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Flowchart of membrane method on AEA glyphosate acid mother liquid
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Figure II-3.1-3
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Flowchart of membrane method on IDA glyphosate mother liquid
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Figure II-3.4-1
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Predicted supply of glyphosate technical by route in the world, 2011-2020
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Figure II-3.4-2
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Predicted growth rate of glyphosate supply by route, 2011-2020
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Figure II-3.4-3
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Predicted market share of glyphosate by route in the world, 2011-2020
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Figure II-3.4-4
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Predicted production of glyphosate technical by route in China, 2011-2020
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Figure II-3.4-5
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Predicted growth rate of glyphosate supply in China by route, 2011-2020
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Figure III-3.1-1
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Factors impacting the profitability of glyphosate business
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Figure III-4-1
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A survey result for the possibility of glyphosate capacity transfer from China to overseas countries, Q1, 2011
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Figure IV-2.2.1-1
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Global Output of EA, 2002-2010
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Figure IV-2.2.1-2
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Global output of DEA, 2002-2010
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Figure IV-2.2.2-1
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Imports of DEA in China from 2000 to 2010
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Figure IV-2.2.3-5
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Global consumption structure of DEA in 2010
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Figure IV-2.2.3-6
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Global consumption of DEA in glyphosate, 2005-2010, '000 tonnes
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Figure IV-2.2.4-1
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Future global consumption of DEA, 2006-2015, '000 tonne
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Figure IV-2.3.1-1
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Global production capacity of EO, 2006-2010
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Figure IV-2.3.1-2
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Global output of EO, 2006-2010
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Figure IV-2.3.2-1
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Global consumption of EO, 2006-2010
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Figure IV-2.3.2-2
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Global consumption structure of EO, 2010
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Figure IV-2.3.3-1
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Forecast of EO consumption, 2011-2015, '000 tonnes
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Figure IV-3.2.1-1
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Global glycine capacity and output, 2008-2010
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Figure IV-3.2.1-2
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Global glycine capacity by countries, 2010
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Figure IV-3.2.1-3
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Global glycine output by grade, 2008-2010
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Figure IV-3.2.1-4
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Global glycine output by country, 2010
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Figure IV-3.2.1-5
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Tech-grade and other grade glycine capacity in China, 2005-2010, tonnes
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Figure IV-3.2.1-6
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Glycine capacity and output in Japan, 2008-2010, tonnes
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Figure IV-3.2.1-7
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Glycine output by grade in Japan, 2008-2010, tonnes
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Figure IV-3.2.1-8
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Glycine output in the U.S, 2008-2010, tonnes
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Figure IV-3.2.1-9
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Glycine output by grade in the U.S, 2008-2010, tonnes
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Figure IV-3.2.1-10
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Glycine output and capacity in India, 2008-2010
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Figure IV-3.2.1-11
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Glycine output by grade in India, 2008-2010, tonnes
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Figure IV-3.2.1-12
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Glycine output in Netherlands, 2008-2010, tonnes
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Figure IV-3.2.1-14
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Glycine output in Belgium, 2008-2010, tonnes
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Figure IV-3.2.1-15
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Glycine output by grade in Belgium,2008-2010, tonnes
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Figure IV-3.2.2-1
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Global glycine apparent consumption, 2008-2010, tonnes
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Figure IV-3.2.2-2
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Global glycine consumption by grade, 2008-2010, tonnes
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Figure IV-3.2.2-3
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Glycine consumption in China, 2005-2010, tonnes
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Figure IV-3.2.2-4
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Glycine total and tech-grade consumption in China, 2005-2010, tonnes
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Figure IV-3.2.2-5
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Glycine consumption by grade in China, 2005-2010, tonnes
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Figure IV-3.2.2-6
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Glycine consumption in Japan, 2008-2010, tonnes
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Figure IV-3.2.2-7
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Glycine consumption by grade in Japan, 2008-2010, tonnes
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Figure IV-3.2.2-8
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Glycine consumption share in Japan, 2010
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Figure IV-3.2.2-9
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Glycine consumption in the U.S, 2008-2010, tonnes
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Figure IV-3.2.2-10
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Glycine consumption by grade in the U.S, 2008-2010, tonnes
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Figure IV-3.2.2-11
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Glycine consumption share in the U.S., 2010
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Figure IV-3.2.2-12
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Glycine consumption in India, 2008-2010, tonnes
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Figure IV-3.2.2-13
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Glycine consumption by grade in India, 2008-2010, tonnes
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Figure IV-3.2.2-14
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Glycine consumption share in India
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Figure IV-3.2.2-15
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Glycine consumption in Netherlands, 2008-2010, tonnes
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Figure IV-3.2.2-16
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Glycine consumption by grade in Netherlands, 2008-2010, tonnes
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Figure IV-3.2.2-17
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Glycine consumption share by grade in Netherlands, 2010
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Figure IV-3.2.2-18
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Glycine consumption in Netherlands, 2008-2010, tonnes
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Figure IV-3.2.2-19
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Glycine consumption by grade in Netherlands, 2008-2010, tonnes
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Figure IV-3.2.2-20
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Glycine consumption in glyphosate and growth rate in China, 2011-2020
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Figure IV-3.2.2-21
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Global glycine consumption and growth rate, 2011-2020
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Figure IV-3.2.3-1
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AEA route glyphosate output in China, 2011-2020, '000, tonnes
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Figure IV-3.3.1-1
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Global production and consumption of paraformaldehyde, 2006~2011
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Figure IV-3.3.1-2
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Global production of paraformaldehyde, 2006~2010
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Figure IV-3.3.1-3
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Global distribution of paraformaldehyde production, 2011
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Figure IV-3.3.1-4
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Global distribution of paraformaldehyde production in major producing countries
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Figure IV-3.3.1-5
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Global consumption situation of paraformaldehyde, 2006~2010
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Figure IV-3.3.1-6
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Global consumption distribution of paraformaldehyde, 2010
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Figure IV-3.3.1-7
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Global consumption structure of paraformaldehyde, 2010
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Figure IV-3.3.2-1
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Paraformaldehyde production in Asia , 2006~2010
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Figure IV-3.3.2-2
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Distribution of paraformaldehyde production in Asia
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Figure IV-3.3.2-3
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Paraformaldehyde consumption in Asia, 2006~2010
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Figure IV-3.3.2-4
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Consumption distribution of paraformaldehyde in Asia, 2010
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Figure IV-3.3.2-5
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Consumption structure of paraformaldehyde in Asia, 2010
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Figure IV-3.3.3-1
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Production of paraformaldehyde in Europe, 2006~2010
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Figure IV-3.3.3-2
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Distribution of paraformaldehyde production in Europe
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Figure IV-3.3.3-3
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Paraformaldehyde consumption in Europe, 2006~2010
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Figure IV-3.3.3-4
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Paraformaldehyde consumption distribution in Europe, 2010
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Figure IV-3.3.3-5
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Consumption structure of paraformaldehyde in Europe, 2010
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Figure IV-3.3.4-1
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Production of paraformaldehyde in America, 2006~2010
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Figure IV-3.3.4-2
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Distribution of paraformaldehyde production in America, 2010
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Figure IV-3.3.4-3
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Paraformaldehyde consumption in America, 2006~2010
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Figure IV-3.3.4-4
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Paraformaldehyde consumption distribution in America, 2010
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Figure IV-3.3.4-5
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Paraformaldehyde consumption structure in America, 2010
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Figure IV-3.3.5-1
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Paraformaldehyde consumption distribution in Africa, 2010
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Figure IV-3.3.5-2
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Paraformaldehyde consumption structure in Africa, 2010
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Figure IV-3.3.5-3
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Paraformaldehyde consumption distribution in Oceania, 2010
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Figure IV-3.3.5-4
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Paraformaldehyde consumption structure in Oceania, 2010
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Figure IV-3.3.6-1
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Global forecast of paraformaldehyde production, 2011~2015
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Figure IV-3.3.6-2
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Global forecast of paraformaldehyde demand, 2011~2015
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Figure IV-4.2.1-1
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Global production and consumption of IDAN, 2005~2010
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Figure IV-4.2.2-1
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IDAN output and growth rate in China, 2005-2010
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Figure IV-4.2.2-2
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Forecast on global IDAN production, 2011-2015
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Figure IV-4.2.3-1
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Production process of IDAN with natural gas as the original raw material, 2011
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Figure IV-4.2.4-1
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Global consumption situation of IDAN, 2006-2010
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Figure IV-4.2.4-2
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Major consumption structure of IDAN in the world by country,2010
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Figure IV-4.2.4-3
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Major consumption structure of IDAN in the world by application area,2010
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Figure IV-4.2.4-4
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Global forecast of IDAN consumption, 2011~2015
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Figure IV-5.1.1-1
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Distribution of phosphorus ore in the world, 2008 (Unit million tonnes)
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Figure IV-5.1.1-2
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Global yellow phosphorus capacity structure by volume, 2006-2010
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Figure IV-5.1.1-3
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Yellow phosphorus output of major countries and the world, 2008-2010
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Figure IV-5.1.1-4
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Capacity structure of phosphorus trichloride by region, 2008-2010
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Figure IV-5.1.1-5
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Output structure of phosphorus trichloride by region, 2008-2010
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Figure IV-5.1.1-6
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Global production of dimethyl phosphite, 2006~2010
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Figure IV-5.1.2-1
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Global yellow phosphorus capacity structure by region, 2010
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Figure IV-5.1.2-2
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Global yellow phosphorus output structure by region, 2009
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Figure IV-5.1.2-3
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Global yellow phosphorus export structure by region, 2008
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Figure IV-5.1.2-4
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Global yellow phosphorus export structure by region, 2009
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Figure IV-5.1.2-5
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Global consumption structure of yellow phosphorus by application volume, 2010
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Figure IV-5.1.2-6
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Global consumption structure of yellow phosphorus by region, 2009
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Figure IV-5.1.2-7
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Global consumption structure of yellow phosphorus in each region, 2009
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Figure IV-5.1.3-1
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Capacity structure of phosphorus trichloride by region, 2010
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Figure IV-5.1.3-2
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Output structure of phosphorus trichloride by region, 2010
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Figure IV-5.1.3-3
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Consumption structure of phosphorus trichloride by region, 2010
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Figure IV-5.1.3-4
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Output of phosphorus trichloride in China, 2006-2010
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Figure IV-5.1.3-5
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Consumption structure of phosphorus trichloride in China, 2010
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Figure IV-5.1.3-6
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Consumption structure of phosphorus trichloride in the U.S., 2010
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Figure IV-5.1.3-7
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Output of phosphorus trichloride in Europe, 2006-2010
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Figure IV-5.1.3-8
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Consumption structure of phosphorus trichloride in Germany, 2010
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Figure IV-5.1.3-9
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Global distribution of dimethyl phosphite production
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Figure IV-5.1.3-2
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General information of global dimethyl phosphite production in major countries
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Figure IV-5.1.3-10
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Dimethyl phosphite production in China, 2006~2010
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Figure IV-5.1.3-3
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Major DMP producers in China
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Figure IV-5.1.3-4
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Global major DMP producers except China
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Figure IV-5.1.3-11
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Global consumption of dimethyl phosphite, 2006~2010
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Figure IV-5.1.3-12
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Global consumption structure of dimethyl phosphite, 2010
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Figure IV-5.1.3-13
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Global consumption distribution of dimethyl phosphite, 2010
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Figure IV-5.1.4-1
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Forecast on global yellow phosphorus production, 2011-2015
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Figure IV-5.1.4-2
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Forecast on global yellow phosphorus consumption, 2011-2015
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Figure IV-5.1.4-3
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Forecast on global phosphorus trichloride production, 2011-2015
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Figure IV-5.2.1-1
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Distribution of global caustic soda capacity, 2006-2010
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Figure IV-5.2.1-2
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Distribution of global caustic soda output, 2006-2010
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Figure IV-5.2.1-3
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Output structure of global caustic soda, 2010
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Figure IV-5.2.1-4
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Global consumption structure of caustic soda by region, 2010
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Figure IV-5.2.1-5
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Global consumption structure of chlorine by region, 2010
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Figure IV-5.3.1-1
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Global production of methanol, 2006~2010
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Figure IV-5.3.1-2
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Global distribution of methanol production
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Figure IV-5.3.2-1
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Global consumption situation of methanol, 2006~2010
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Figure IV-5.3.2-2
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Global consumption distribution of methanol, 2010
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Figure IV-5.3.2-3
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Global consumption structure of methanol, 2010
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Figure IV-5.3.3-2
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Cost of methanol in different route glyphosate production, 2011 (unit:USD/t)
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Figure VI-1-1
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Global consumption of DEA by glyphosate, 2005-2010, '000 tonnes
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Figure VI-1-2
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Global consumption of triethylamine in glyphosate, 2004-2010, '000 tonnes
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