Economic Impacts and Market Challenges for the Methane to Derivatives Petrochemical Sub-Sector

Economic Impacts and Market Challenges for the Methane to Derivatives Petrochemical Sub-Sector
Author:
Publisher:
Total Pages: 0
Release: 2018
Genre:
ISBN:

MARKET CHALLENGES FOR THE METHANE TO DERIVATIVES PETROCHEMICAL SUB-SECTOR Canadian Energy Research Institute Overview Founded in 1975, the Canadian Energy Research Institute (CERI) is an independent, registered charitable organization specializing in the analysis of energy economics and related environmental policy issues in the energy production, transportation, and consumption sectors. [...] Our mission is to provide relevant, independent, and objective economic research of energy and environmental issues to benefit business, government, academia and the public. [...] Canadian Energy Research Institute CERI receives financial support from its core funders which include Natural Resources Canada, Alberta Energy and the Canadian Association of Petroleum Producers. [...] In addition, the institute benefits from funds provided by donors which include: • Alberta's Industrial Heartland Association • Chemistry Industry Association of Canada • Government of Saskatchewan • Ivey Foundation • University of Calgary CERI also receives in-kind support from the following contributors: • Alberta Energy Regulator • Lithuanian Energy Institute • Advisian Worley Parsons Group • D [...] Methanol Methanol to Olefins (MeOH) (MTO) CO Methanol to Propylene 2 (MTP) Methanol to Gasoline (MTG) Methane Synthesis Gas (CH4) (Syngas) METHYL METHACRYLATE (MMA) Natural Gas Ammonia Urea (N.

Global Renewables Outlook: Energy Transformation 2050

Global Renewables Outlook: Energy Transformation 2050
Author: International Renewable Energy Agency IRENA
Publisher: International Renewable Energy Agency (IRENA)
Total Pages: 344
Release: 2020-04-01
Genre: Technology & Engineering
ISBN: 9292602500

This outlook highlights climate-safe investment options until 2050, policies for transition and specific regional challenges. It also explores options to eventually cut emissions to zero.

Managing Climate Risk in the U.S. Financial System

Managing Climate Risk in the U.S. Financial System
Author: Leonardo Martinez-Diaz
Publisher: U.S. Commodity Futures Trading Commission
Total Pages: 196
Release: 2020-09-09
Genre: Science
ISBN: 057874841X

This publication serves as a roadmap for exploring and managing climate risk in the U.S. financial system. It is the first major climate publication by a U.S. financial regulator. The central message is that U.S. financial regulators must recognize that climate change poses serious emerging risks to the U.S. financial system, and they should move urgently and decisively to measure, understand, and address these risks. Achieving this goal calls for strengthening regulators’ capabilities, expertise, and data and tools to better monitor, analyze, and quantify climate risks. It calls for working closely with the private sector to ensure that financial institutions and market participants do the same. And it calls for policy and regulatory choices that are flexible, open-ended, and adaptable to new information about climate change and its risks, based on close and iterative dialogue with the private sector. At the same time, the financial community should not simply be reactive—it should provide solutions. Regulators should recognize that the financial system can itself be a catalyst for investments that accelerate economic resilience and the transition to a net-zero emissions economy. Financial innovations, in the form of new financial products, services, and technologies, can help the U.S. economy better manage climate risk and help channel more capital into technologies essential for the transition. https://doi.org/10.5281/zenodo.5247742

Industrialization of Biology

Industrialization of Biology
Author: National Research Council
Publisher: National Academies Press
Total Pages: 158
Release: 2015-06-29
Genre: Science
ISBN: 0309316553

The tremendous progress in biology over the last half century - from Watson and Crick's elucidation of the structure of DNA to today's astonishing, rapid progress in the field of synthetic biology - has positioned us for significant innovation in chemical production. New bio-based chemicals, improved public health through improved drugs and diagnostics, and biofuels that reduce our dependency on oil are all results of research and innovation in the biological sciences. In the past decade, we have witnessed major advances made possible by biotechnology in areas such as rapid, low-cost DNA sequencing, metabolic engineering, and high-throughput screening. The manufacturing of chemicals using biological synthesis and engineering could expand even faster. A proactive strategy - implemented through the development of a technical roadmap similar to those that enabled sustained growth in the semiconductor industry and our explorations of space - is needed if we are to realize the widespread benefits of accelerating the industrialization of biology. Industrialization of Biology presents such a roadmap to achieve key technical milestones for chemical manufacturing through biological routes. This report examines the technical, economic, and societal factors that limit the adoption of bioprocessing in the chemical industry today and which, if surmounted, would markedly accelerate the advanced manufacturing of chemicals via industrial biotechnology. Working at the interface of synthetic chemistry, metabolic engineering, molecular biology, and synthetic biology, Industrialization of Biology identifies key technical goals for next-generation chemical manufacturing, then identifies the gaps in knowledge, tools, techniques, and systems required to meet those goals, and targets and timelines for achieving them. This report also considers the skills necessary to accomplish the roadmap goals, and what training opportunities are required to produce the cadre of skilled scientists and engineers needed.