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ortho-Xylene

Chemical Economics Handbook

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Published February 2022

ortho-Xylene (1,2-dimethyl-benzene, o-xylene, or OX) is an aromatic compound that is commonly derived from crude oil sources. It is found in the mixed xylenes stream, which is a mixture of ortho-xylene, metaxylene (MX), and para-xylene (PX). While very similar in structure, these three isomers have very different chemical properties and applications. OX is the second-most-consumed component obtained from the mixed xylenes stream.

The following pie chart shows world consumption of ortho-xylene:

The 10 largest OX producers, many of which are in Asia, accounted for about 69% of total capacity globally in 2021; the OX market is therefore relatively concentrated. Most of these producers are international oil companies, national oil companies, or large refiners and petrochemical producers. In 2021, the world’s largest OX producers were SINOPEC, ExxonMobil, and Formosa.

Isolated ortho-xylene is used primarily to manufacture PA, a key component in the manufacture of plasticizers; PA can also be produced from naphthalene in some regions. PA is used primarily to produce phthalate-based PVC plasticizers, unsaturated polyester resins used for fiber-reinforced resins, and alkyd resins used for coatings. Over the past five years, global OX consumption has remained same after a decline, driven down by the increasing use of naphthalene as a phthalic anhydride feedstock in mainland China, as well as the overall stagnant demand for PA globally. Ultimately, increasingly stringent regulations, such as the REACH regulation in the European Union, are calling for the gradual replacement of phthalate-based plasticizers, which is limiting PA—and thus OX—consumption growth. However in 2021, ortho-xylene consumption for PA has increased globally. In fact, in mainland China, the largest PA market globally, OX demand has increased in 2021 after seeing a decline since 2013.

Over the next five years, global OX capacity is projected to increase, following hypothetical capacity additions in mainland China. Mainland Chinese OX production is expected to increase, and imports will declined owing to its growing self-sufficiency. ortho-Xylene trade is relatively limited globally, amounting to about 20–25% of global consumption in recent years. Mainland China and Western Europe are, by far, the major recipient of imports, while the major OX exporters in 2021 were the Indian Subcontinent, North America, and Southeast Asia.

In the developed world, the OX and PA markets are believed to have stabilized and are projected to post slow growth through 2026. Softer growth prospects for the mainland Chinese steel industry will limit the amount of new naphthalene volumes available, which will prevent the further replacement of domestic OX-based PA units.

For more detailed information, see the table of contents, shown below.

S&P Global’s Chemical Economics Handbook – ortho-Xylene is the comprehensive and trusted guide for anyone seeking information on this industry. This latest report details global and regional information, including

Key benefits

S&P Global’s Chemical Economics Handbook – ortho-Xylene has been compiled using primary interviews with key suppliers and organizations, and leading representatives from the industry in combination with S&P Global’s unparalleled access to upstream and downstream market intelligence and expert insights into industry dynamics, trade, and economics.

This report can help you

  • Identify trends and driving forces influencing chemical markets
  • Forecast and plan for future demand
  • Understand the impact of competing materials
  • Identify and evaluate potential customers and competitors
  • Evaluate producers
  • Track changing prices and trade movements
  • Analyze the impact of feedstocks, regulations, and other factors on chemical profitability
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Table of Contents

Executive summary 6
Summary 7
Introduction 12
Sources 14
Catalytic reformate 14
Gas liquids 14
Pyrolysis gasoline 14
Toluene disproportionation and transalkylation 15
Coal-derived mixed xylenes 15
Separation processes 16
Environmental issues 17
Supply and demand by region 18
World 18
Capacity 18
Producing companies 19
Salient statistics 21
Consumption 22
Phthalic anhydride 24
Other 25
Price 25
Trade 26
North America 28
Overview 28
Capacity 28
Salient statistics 29
Consumption 30
Trade 32
United States 32
Producing companies 32
Salient statistics 33
Consumption 34
Phthalic anhydride 35
Other 36
Trade 37
Canada 37
Producing companies 37
Salient statistics 38
Consumption 39
Trade 39
Mexico 39
Producing companies 39
Salient statistics 39
Consumption 40
Trade 41
South America 42
Producing companies 42
Salient statistics 43
Consumption 44
Trade 45
Western Europe 45
Producing companies 45
Salient statistics 47
Consumption 47
Trade 49
Central Europe 49
Producing companies 49
Salient statistics 51
Consumption 51
Trade 53
CIS and Baltic States 53
Producing companies 53
Salient statistics 54
Consumption 55
Trade 57
Middle East 57
Producing companies 57
Salient statistics 58
Consumption 59
Trade 61
Africa 61
Producing companies 61
Salient statistics 61
Consumption 62
Trade 63
Indian Subcontinent 64
Producing companies 64
Salient statistics 64
Consumption 65
Trade 67
Northeast Asia 67
Overview 67
Capacity 67
Salient statistics 69
Consumption 70
Trade 72
Mainland China 72
Producing companies 72
Salient statistics 73
Consumption 74
Trade 76
Japan 76
Producing companies 76
Salient statistics 77
Consumption 78
Trade 80
South Korea 80
Producing companies 80
Salient statistics 81
Consumption 82
Trade 84
Taiwan 84
Producing companies 84
Salient statistics 84
Consumption 85
Trade 87
Southeast Asia 87
Producing companies 87
Salient statistics 89
Consumption 89
Trade 91
Additional resources 92
Revisions 93
Data Workbook 94
Notice 95
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