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Results 71–80 of 92
Feb 2023
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Polymers and Plastics

Polypropylene (2023 Program)

The process technologies and production economics for polypropylene (PP) are presented. Gas phase and bulk processes from all major technology holders are reviewed. Cost of production economics have been developed for USGC, China, and Middle East locations. Carbon intensity analysis (scope 1 and 2) included for average gas phase, bulk, and slurry processes on a USGC and China basis. Global demand by end-use and global capacity by producer are provided.
Dec 2022
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Specialty Chemicals and Advanced Materials

Recycling of E-Waste (2022 Program)

E-waste is the world’s fastest growing and most valuable waste stream. An estimated $62.5 billion USD worth of precious metals from electronics are landfilled and incinerated annually while less than 20 percent of the world’s e-waste is captured through formal recycling channels. This TECH report provides the technological, economic, and market dynamics of the formal electronic recycling industry. This report also examines the status and trajectory of electronic recycling across each continent and the key policies and initiatives shaping the future of e-waste. An economic model for a standard industrial e-waste recycling plant in the United States is also provided.
Dec 2022
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C1 Chemicals and Fertilizers
Oil, Gas and Refined Products
Renewable Chemicals and Energy

Biorenewable Insights: Green Hydrogen (2022 Program)

Traditionally hydrogen is generated from fossil feedstock and processes that emit significant amounts of CO2. In comparison, renewable or green hydrogen production results in materially lower emissions. Green hydrogen holds significant potential and interest for decarbonization of sectors that have previously been difficult to decarbonize. This includes both existing applications (e.g., refining, feedstock for chemicals) as well as emerging applications (e.g., e-methanol, e-ammonia, e-SAF), as well as potential in direct use for carbon emission free combustion. Growing interest in low carbon intensity hydrogen has stemmed from mounting net zero pledges and decarbonization goals, and an increasing focus on the energy transition. Production options explored several global regions and technologies covering thermochemical (biomass gasification), bio-methane reforming, electrolysis, and other advanced pathways from a technical, economic (cost of production model), and capacity level. A discussion of implications for the conventional technologies is also included.
Dec 2022
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Renewable Chemicals and Energy

Water Desalination for Green Hydrogen Production (2022 Program)

This report provides an overview of the conventional and developing technological, economic and market aspects of water desalination for green hydrogen production. Cost estimates have been developed for the desalination of seawater to produce potable quality water via the three most common desalination technologies: multistage flash, multi effect distillation, and reverse osmosis. Market drivers, capacity additions, and key players in the desalination sector are also provided.
Dec 2022
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Renewable Chemicals and Energy
C1 Chemicals and Fertilizers

Methane Pyrolysis for Turquoise Hydrogen (2022 Program)

This report offers a comprehensive techno-economic analysis of newly commercial and emerging methane pyrolysis technologies for the production of “turquoise” hydrogen, which can be produced from both fossil and renewable methane sources and produces a carbon byproduct that can be sequestered or displace existing fossil products. Technologies including thermal plasma, uncatalyzed pyrolysis, catalytic pyrolysis, molten metal/molten salt, and non-thermal plasma are covered, and key players within each major route have their technical maturity and processes profiled. Process economics are also provided for thermal plasma processes. The report also includes an analysis of turquoise hydrogen in the context of other low-carbon hydrogen routes.
Dec 2022
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Polymers and Plastics
Specialty Chemicals and Advanced Materials

Biorenewable Insights: Bio-surfactants (2022 Program)

The purpose of this report is to analyze developing technologies for the production of biosurfactants. Technical and economic aspects of producing biosurfactants are explored in detail including cost of production models for key technologies. Production capacity developments, drivers for development, and commercialization obstacles are also explored.
Oct 2022
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Polymers and Plastics
Specialty Chemicals and Advanced Materials
Petrochemicals

Thermal Conversion Technologies – An Answer to Recycling Plastic Waste?

This report examines the technical, economic, and strategic aspects of thermal conversion (e.g., pyrolysis and hydrothermal treatment) technologies that are used to recycle mixed plastics waste. Selected developers of technologies were profiled and ranked under different criteria. The economic analysis of thermal conversion technologies, involving the production of feedstocks for olefins are provided for different geographic regions. In addition, the report includes an analysis of the plastic-based naphtha delivered cost competitiveness to Western Europe from the USGC, China, Japan, and Southeast Asia. An ethylene carbon intensity analysis is provided. Strategic and business considerations are also included in the report.
Oct 2022
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C1 Chemicals and Fertilizers
Renewable Chemicals and Energy
Petrochemicals

Biorenewable Insights - Green Ammonia (2022 Program)

This report is an extensive techno-economic overview of available renewable ammonia technologies in the context of the radical decarbonization required for the ammonia industry to reach COP25 goals. Major technologies are covered in a modular fashion including hydrogen provision, ammonia conversion, nitrogen capture, and carbon capture and sequestration. The report benchmarks blue ammonia against green ammonia ventures in terms of carbon intensity and economic competitiveness. Blue ammonia models cover ATR and SMR routes in detail, including flue gas capture and including potential sensitivities of costs for geological sequestration dependent on distance, injection well depth, and terrain. Green ammonia models cover both full-rate production and evaluate claims of cost competitiveness under intermittent production against a wide variety of plant-gate ammonia pricing and electricity pricing scenarios using an innovative probabilistic methodology.
Sep 2022
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Specialty Chemicals and Advanced Materials

Polyester Polyols (2022 Program)

This report is a comprehensive analysis of the polyester polyol industry. The analysis provides cost of production estimates for the major types of polyester polyols as well as formulations and estimated raw materials cost for varying feedstocks. To introduce the commercial aspect of the industry, a review of the market, applications and the overall value chain is made. A carbon intensity analysis including scope 1 and 2 emissions outlines the environmental impact of the technologies.

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