International Bioenergy Trade

International Bioenergy Trade
Author: Martin Junginger
Publisher: Springer Science & Business Media
Total Pages: 234
Release: 2013-10-16
Genre: Business & Economics
ISBN: 9400769822

The trade of global bioenergy commodities, such as ethanol, biodiesel and wood pellets has been growing exponentially in the past decade, and have by 2013 reached true “commodity” volumes, i.e. tens of millions of tonnes traded each year, and billions (both in US$/€) of annual turnover. IEA Bioenergy Task 40 was founded in 2004 and is now in its 4th triennium. For the past 9 years, task 40 has monitored the developments in international bioenergy trade, including the organization of about 20 workshops on trade-related topics, and the publication of over 100 studies, country reports, newsletters, etc. The amount of material produced over the years and insights gained in how biomass markets and international trade of biomass and biofuels has developed is impressive. Besides that the group has produced overviews and insights, also a large amount of practical experience has been brought together in what works and what doesn’t. Last but not least, based on all this, there are clear(er) views on how to proceed to build working sustainable international biomass markets in the future. This book compiles those lessons and insights into an easily accessible book publication.

IEA Bioenergy Task 40Sustainable International Bioenergy Trade

IEA Bioenergy Task 40Sustainable International Bioenergy Trade
Author:
Publisher:
Total Pages: 69
Release: 2015
Genre:
ISBN:

Logistical barrier are tied to feedstock harvesting, collection, storage and distribution. Current crop harvesting machinery is unable to selectively harvest preferred components of cellulosic biomass while maintaining acceptable levels of soil carbon and minimizing erosion. Actively managing biomass variability imposes additional functional requirements on biomass harvesting equipment. A physiological variation in biomass arises from differences in genetics, degree of crop maturity, geographical location, climatic events, and harvest methods. This variability presents significant cost and performance risks for bioenergy systems. Currently, processing standards and specifications for cellulosic feedstocks are not as well-developed as for mature commodities. Biomass that is stored with high moisture content or exposed to moisture during storage is susceptible to spoilage, rotting, spontaneous combustion, and odor problems. Appropriate storage methods and strategies are needed to better define storage requirements to preserve the volume and quality of harvested biomass over time and maintain its conversion yield. Raw herbaceous biomass is costly to collect, handle, and transport because of its low density and fibrous nature. Existing conventional, bale-based handling equipment and facilities cannot cost-effectively deliver and store high volumes of biomass, even with improved handling techniques. Current handling and transportation systems designed for moving woodchips can be inefficient for bioenergy processes due to the costs and challenges of transporting, storing, and drying high-moisture biomass. The infrastructure for feedstock logistics has not been defined for the potential variety of locations, climates, feedstocks, storage methods, processing alternatives, etc., which will occur at a national scale. When setting up biomass fuel supply chains, for large-scale biomass systems, logistics are a pivotal part in the system. Various studies have shown that long-distance international transport by ship is feasible in terms of energy use and transportation costs, but availability of suitable vessels and meteorological conditions (e.g., winter time in Scandinavia and Russia) need to be considered. However, local transportation by truck (both in biomass exporting and importing countries) may be a high-cost factor, which can influence the overall energy balance and total biomass costs.

Regulation of Energy in International Trade Law

Regulation of Energy in International Trade Law
Author: Yulia Selivanova
Publisher: Kluwer Law International B.V.
Total Pages: 448
Release: 2011-07-28
Genre: Law
ISBN: 9041142797

Starting from the premise that a multilateral legal framework is the surest way to achieve predictability and transparency under conditions of increasing reliance on internationally traded energy, the essays gathered in this book treat the many complex interlocking issues raised by examining that desideratum in the light of current reality. Concentrating on the application of WTO agreements to energy trade – as well as energy-related issues addressed in the current WTO negotiations – the authors offer in-depth discussion and analysis of such issues as the following: the effectiveness of existing WTO agreements in addressing issues pertinent to energy trade how restrictive practices of energy endowed countries can be tackled under existing international trade rules; existing frameworks for investment in highly capital-intensive energy infrastructure projects;and conditions for access to pipelines and transmission grids; regulation of energy services; bioenergy development and trade; energy issues addressed in the WTO accession negotiations of energy endowed countries; international instruments of resolution of energy-related disputes.

Developing the Global Bioeconomy

Developing the Global Bioeconomy
Author: Patrick Lamers
Publisher: Academic Press
Total Pages: 221
Release: 2016-05-02
Genre: Technology & Engineering
ISBN: 0128052902

Developing the Global Bioeconomy: Technical, Market, and Environmental Lessons from Bioenergy brings together expertise from three IEA-Bioenergy subtasks on pyrolysis, international trade, and biorefineries to review the bioenergy sector and draw useful lessons for the full deployment of the bioeconomy. Despite the vast amount of politically driven strategies, there is little understanding on how current markets will transition towards a global bioeconomy. The question is not only how the bioeconomy can be developed, but also how it can be developed sustainably in terms of economic and environmental concerns. To answer this question, this book’s expert chapter authors seek to identify the types of biorefineries that are expected to be implemented and the types of feedstock that may be used. They also provide historical analysis of the developments of biopower and biofuel markets, integration opportunities into existing supply chains, and the conditions that would need to be created and enhanced to achieve a global biomass trade system that could support a global bioeconomy. As expectations that a future bioeconomy will rely on a series of tradable commodities, this book provides a central accounting of the state of the discussion in a multidisciplinary approach that is ideal for research and academic experts, and analysts in all areas of the bioenergy, biofuels, and bioeconomy sectors, as well as those interested in energy policy and economics. Examines the lessons learned by the bioenergy industry and how they can be applied to the full development of the bioeconomy Explores different transition strategies and how the current fossil based and future bio-based economy are intertwined Reviews the status of current biomass conversion pathways Presents an historical analysis of the developments of biopower and biofuel markets, integration opportunities into existing supply chains, and the conditions that would need to be created and enhanced to achieve a global biomass trade system

Potential Contribution of Bioenergy to the World's Future Energy Demand

Potential Contribution of Bioenergy to the World's Future Energy Demand
Author: IEA Bioenergy
Publisher:
Total Pages:
Release: 2007
Genre:
ISBN:

This publication highlights the potential contribution of bioenergy to world energy demand. It summarises the wide range of biomass resources available and potentially available, the conversion options, and end-use applications. Associate issues of market development, international bioenergy trade, and competition for biomass are also presented. Finally, the potential of bioenergy is compared with other energy supply options.