Chemical

World Analysis – Butylenes

  • Market Overview
  • Key Benefits
  • Service Features
  • Annual Table of Contents

Market Overview

Duration: Long-term outlook to 2050

Butylenes are four-carbon mono-olefins that are principally sourced from olefins production by steam cracking or by catalytic cracking at petroleum refineries. These processes produce mixed four-carbon mono- and di-olefin streams that also contain saturated C4 hydrocarbons. These streams are processed to higher value products in the refinery and petrochemical complex. In addition, several other processes are available that can produce butylenes. This World Analysis provides the outlook for the global markets of contained isobutylene, contained normal butylenes, high purity isobutylene (HPIB), and butene-1.

Products made from contained isobutylene (also called raffinate-1 or refinery butylenes/butane streams) include MTBE, polyisobutylene, methyl methacrylate, isoprene, diisobutylene, isooctene and isooctane. Contained normal butylenes streams (little or no isobutylene) are sourced from process units that selectively remove isobutylene from the C4 streams. These streams contain high concentrations of normal butylenes and are utilized as feedstocks for a variety of products. Since the isobutylene has already been removed, physical separation of the normal butylene isomers is much easier. Normal butylenes are also produced by the dehydrogenation of butane; however, these normal butylenes are generally converted directly to butadiene. Contained isobutylene and contained normal butylenes can find their way into the gasoline pool as butylene alkylate. Butylene alkylate is formed when combined with isobutane.

High purity isobutylene (HPIB) refers to 99.0% minimum purity isobutylene. A large percentage of the HPIB produced in the world is used to make butyl rubber. Butyl rubber production accounts for nearly 60% of HPIB demand while the second largest end-use segment, highly reactive polyisobutylene, consumes nearly 25%. Much smaller amounts are typically consumed to produce other derivatives such as methyl methacrylate (MMA), isononyl alcohol, neopentanol, t-butyl phenol antioxidants, and other specialty chemicals. Butene-1 is either produced by the fractionation (extractive distillation) of a butene-1 rich normal butylenes stream (raffinate), the Ziegler oligomerization of ethylene (in alpha olefins plants), or by the dimerization of ethylene. Butene-1 is mostly used as a comonomer in all threeHigh-purityethylene types (LLDPE, LDPE, HDPE). Other applications for butene-1 include the production of polybutene-1, amyl alcohol and butylene oxide. In addition, several companies use butene-1 as a comonomer in the manufacture of specialty hot melt adhesives and amorphous polymeric modifiers for bitumen for use in the manufacture of single-ply roofing materials.

Key Benefits

Duration: Long-term outlook to 2050

The World Analysis – Butylenes (data-only) provides a comprehensive analysis of critical market developments as they shape the future outlook for the global markets of contained isobutylene, contained normal butylenes, high-purity isobutylene, and butene-1.

The following reports, data files, analytical tools and visualization modules are available online and can be downloaded from our website:

  • Direct Access to the Subject Matter Experts
  • In-depth exploration of present market strategic insights, recognition of critical challenges, and presentation of our experts’ forecasts and analysis
  • Explanatory Notes detailing data sources, methodologies, unit and conversion factors, and World Analysis deliverables.
  • Energy and Economy assumptions
  • Price, cost, and margin base assumptions forecast and sensitivities analysis, including price assessment methodology and price definitions across all regions.
  • Excel data files with standard supply/demand graphics and price forecasts extended to 2050, trade grids with country and regional trade flows Data appendix (Excel) with supply/demand, capacity and trade tables.
  • An online dashboard visualization of capacity, supply/demand, trade grids, and price, cost and margin forecasts
  • Supply/demand and capacity database access via data browser
  • Data Appendix (Excel) with supply/demand and capacity tables
  • Capacity by company/shareholder, capacity integration, top producer/consumer and surplus/deficit capacity ranking, and ownership/subsidiary information

In addition to the main products, contained isobutylene (CISB), contained normal butylenes (CNB), high purity isobutylene (HPIB), and butene-1 (BU1), capacity data are provided for the following products:

  • Alkylation (ALK)
  • 1,2-Butylene Oxide (BUTOX)
  • Butadiene (BDE)
  • Butyl Rubber (BUR)
  • C4s Hydrogenation (C4H)
  • Diisobutylene (DIB)
  • Ethyl Tertiary Butyl Ether (ETBE)
  • Fluid Catalytic Cracking (FCC)
  • High-Density Polyethylene (HDPE)
  • Heptenes (HEP)

This World Analysis contains detailed information on capacities, production, demand, and trade for all significant producing and consuming countries and regions. Although data gathering is essential for understanding history and potential future trends, we believe that the interpretation and analysis of the data is the most valuable information to our clients.

Service Features

Duration: Long-term outlook to 2050


SUPPLY/DEMAND BALANCES

Frequency: Bi-annual
Format: Excel
Timeframe: 10-year forecasts available from periods 1990 – 2050
Area Coverage: By country/region; include “hypothetical” capacity changes in the forecast period
Chemical Coverage: High Purity Isobutylene, Butene-1, Contained Isobutylene, Contained Normal Butylenes

CAPACITY DATABASE

Frequency: Updated daily
Format: Excel
Timeframe: 10-year forecasts available from periods 1990 – 2050
Coverage:

  • Nameplate capacity on individual plant location by producer and by the shareholder for main study products + essential derivatives
  • Integration table and top producer and consumer ranking tables (includes net surplus/deficit)
Chemical Coverage: Polybutylene Terephthalate (PBT) Alkylation, Butadiene, Butene-1, Butyl Rubber, C4s Hydrogenation, Ethyl Tertiary Butyl Ether (ETBE), Fluid Catalytic Cracking (FCC), HDPE, High Purity Isobutylene, Isooctane, LLDPE, Methyl Ethyl Ketone (MEK), Methyl Methacrylate (MMA), MTBE, Other Butylenes, Polyisobutylene, Polyisobutylene (highly reactive), Polygas/Dimersol, Propylene Oxide, 1,2-Butylene Oxide, t-butylphenols/amines, tert- Butyl Alcohol (TBA), Diisobutylene, Heptenes, Isooctene, Octenes, Polyalphaolefins, Polybutene-1 resins

TRADE GRIDS

Frequency: Bi-annual
Format: Excel
Timeframe: 1 year of history, up to 10 years of forecast
Area Coverage: Between partner countries and by region
Chemical Coverage: High Purity Isobutylene, Butene-1

ADDITIONAL FEATURES

  • Access to our global team of subject matter experts
  • Interactive data visualization module (dashboard)
  • Standard supply/demand graphs
  • Data appendix with supply/demand and capacity tables
  • Supply/demand and capacity database access via data browser

Annual Table of Contents

  • Introduction 4
  • Sources of Butylenes 6
  • Steam cracking 7
  • Fluid catalytic cracking 9
  • Selective hydrogenation of crude C4s 13
  • Definitions of Butylene Streams 14
  • Contained Isobutylene 14
  • Contained Normal Butylenes 15
  • High Purity Isobutylene 17
  • Butene-1 17
  • Supply/Demand Forecast Methodology 19

Market Coverage

Automotives

Fuel

Industrial Products

Packaging

Anthony Song

Anthony Song Executive Director, APAC C4 & Elastomers Chemical Market Analytics by OPIS

Anthony Song is the Executive Director for APAC C4 & Elastomers at Chemical Market Analytics. Mr. Song is responsible for covering the butadiene/C4 and elastomers markets in the Asia Pacific, including the monthly contributions to the Global Outlook for Feedstock (C4) and Elastomers Report. Anthony started his career as a petrochemical trader at Hanwha Corporation in Korea. His duties were trading EDC/VCM/C4 LPG within Northeast and Southeast Asia. Later, he became a trading manager handling crude C4/butadiene/ C4 raffinates and supporting other Olefin products such as Ethylene and Propylene. In 2006, he was sent to Dubai, UAE, as part of a regional expert program started by the Hanwha Group. During his 9-month tenure, he researched and developed future strategic programs within the Middle East, from product development to investment portfolio. In 2008, Mr. Song managed a team of traders at Hanwha International (Singapore office) handling Olefins and Aromatics, focusing on Toluene and other C4 Olefins products. Mr. Song graduated from Boston University with a Bachelor of Arts in Economics.  
Bill Hyde

Bill Hyde Vice President, Global C4 & Elastomers Chemical Market Analytics by OPIS

Bill Hyde is the Vice President of Olefins & Elastomers at Chemical Market Analytics. Mr. Hyde is a member of Chemical Market Analytics by OPIS, a Dow Jones Company. He leads a group that analyzes markets related to C4 Olefins, synthetic and natural rubber, and tire raw materials. He has been consulting in this market since 2002. Hyde began his career with the Union Carbide Corporation in 1990, where he had various positions, including production engineering, optimization, planning, and logistics. In 2000, he joined Texas Petrochemicals as a Business Analyst. In 2002, Hyde joined CMAI, which was acquired by IHS in 2011, in the Olefins Consulting Practice, emphasizing C4 Olefins and rubber, assuming responsibility for that practice in 2006. The Base Chemicals Group of IHS Markit, which includes the C4 Olefins and Elastomers Practice, became Chemical Market Analytics by OPIS a Down Jones Company in June 2022. He has published a number of papers on the Olefins and Elastomers industries and presented at numerous Olefins and Elastomers Conferences around the world. Hyde has a B.S. and M.S. in Chemical Engineering from Brigham Young University and an M.B.A. from Tulane University.
Remko Koster

Remko Koster EMEA C4 & Elastomers Chemical Market Analytics by OPIS

Remko Koster is the Director for EMEA C4 & Elastomers at Chemical Market Analytics. After obtaining his Ph.D. in chemistry at the University of Amsterdam, Dr. Koster worked from 2000-2011 at DSM and Sabic in the petrochemical industry in varying roles in R&D, market intelligence, and commercial departments. He was the commercial manager for SABIC in Europe for C4 products, benzene and derivatives, and heavy aromatics. His last role at Sabic was as global market intelligence lead for PP (polypropylene). In 2011, he joined CMAI (now Chemical Market Analytics) as the consultant for PE and PP, before switching to the C4 & Elastomers lead role for EMEA in 2017. Dr. Koster leads the global tire type indices service, is a main contributor to the global C4 olefins & elastomers report, several world analysis services, and is a frequent speaker at conferences. He is an expert in steam cracker products and various polymers and elastomer markets.
William Chen, Ph.D

William Chen, Ph.D Executive Director, Asia Olefins Chemical Market Analytics by OPIS

William Chen is Executive Director at Chemical Market Analytics by OPIS, a Dow Jones Company. He has expertise in industrial experience, including R&D, sales, and professional consulting services. He leads Asia Olefins business with research responsibilities for providing insight into the dynamics associated with the ethylene, propylene, C4 & derivatives value chain markets. Provide thought leadership on the markets relating to supply, demand, price, and economics, as well as competitive dynamics and changing industry structural elements. Write analyses for Weekly, Monthly, and Annual reports (Market Advisory Services and World Analyses). William also Leads the Asia Olefins business for strategic growth as well as provides ongoing commercial management. Focus on nurturing relationships with clients and deepening services as part of clients’ commercial and strategic decision-making processes. Nurture relationships with clients, including SOEs, POEs, and MNCs to deepen services as part of clients’ commercial and strategic decision-making processes. Within Chemical Market Analytics, William also has been involved in many petrochemical consulting projects and multiple client studies, including China Coal Chemical Study, Global Propane Dehydrogenation Research, and Refinery-cracker/aromatic complex feasibility study. Prior to Chemical Market Analytics, William worked for ChemChina. At the company, William started as a chemical engineer in the Lanzhou fiber plant, in Northwest China. Then, he moved back to Beijing to focus on downstream application development. In the last two years with ChemChina, William took charge of sales and marketing responsibility in NE Asia. William earned Ph.D from the Chinese Academy of Sciences and majored in Polymer Chemistry and Physics. William is based in Beijing China.

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