Nanotechnology Now

Our NanoNews Digest Sponsors
Heifer International



Home > Press > Battelle-R&D Magazine Annual Global Funding Forecast Predicts R&D Spending Growth Will Continue While Globalization Accelerates: 2012 Funding Forecast Shows Promising Global Growth but High Expectations for Commercial Payoff

Abstract:
The Battelle-R&D Magazine annual Global R&D Funding Forecast released today shows global research and development (R&D) spending is expected to grow by about 5.2 percent in 2012 to more than $1.4 trillion.

Battelle-R&D Magazine Annual Global Funding Forecast Predicts R&D Spending Growth Will Continue While Globalization Accelerates: 2012 Funding Forecast Shows Promising Global Growth but High Expectations for Commercial Payoff

Columbus, OH | Posted on December 17th, 2011

The full Global R&D Funding Forecast can be found at www.battelle.org/ABOUTUS/rd/2012.pdf.

One of the most remarkable findings of the report is that R&D funding growth will largely be driven by Asian economies -- a number projected to increase by nearly 9 percent in 2012. Elsewhere in the world, growth remains strong and stable in the aftermath of the global recession. Greece is the only country among the world's top 40 R&D spenders that is not expected to increase its R&D budget during the next year.

The closely watched study also predicts that overall European R&D will grow by about 3.5 percent while North American R&D will grow by 2.8 percent.

Experts from Battelle and R&D Magazine forecast that a 2.1 percent growth in United States R&D expenditures will be balanced against an estimated 2 percent inflation rate, suggesting that U.S. R&D investments will remain flat in real terms over the next year. That $436 billion in forecasted spending is expected to be broken down in the following way:

U.S. Private Industry will spend by far the largest amount with a projection of $279.6 billion in R&D in 2012, up 3.75 percent over 2011.

U.S. Federal Government spending will reach $125.6 billion in 2012, a decrease of 1.16 percent.

Academia in the U.S. will spend $12 billion on research in 2012, up 2.85 percent over last year.

Non-profits will increase spending in 2012 by 2.7 percent to $14.5 billion and other government entities in the U.S. will round out total R&D expenditures by increasing 2.72 percent to $3.8 billion.

Another notable trend the Funding Forecast reveals is the increased expectation that R&D investments will provide financial returns and positive commercial outcomes. Several years ago, only 10 percent of U.S. industries calculated return on investment (ROI) from R&D efforts, while data from a survey that is part of the Funding Forecast now indicates that 40 percent measure that figure.

"The pharmaceutical industry illustrates this trend best as it faces increased scrutiny of R&D spending versus limited productivity and weak pipelines for blockbuster drugs," said Martin Grueber, Battelle Research Leader and co-author of the report. "However, industry isn't the only sector under the ROI microscope. There also are increasing demands that public sector R&D investments show real economic and policy outcomes."

With 18 U.S. corporations among the top 50 firms ranked by R&D spending, the U.S. remains dominant in manufacturing R&D. However, translating this level of R&D and innovation into output, products and jobs is a challenge faced by both U.S. corporations and government. There is wide agreement that technology collaborations are important to growth with many manufacturers planning on increasing collaborative activity such as knowledge sharing, shorter development cycles and the availability of proprietary technologies.

Survey respondents identified the top three ways government could help support manufacturing R&D as: providing tax credits to companies with active R&D programs, supporting academic R&D in manufacturing and increasing tech transfer support from U.S. national labs to industry.
Industry Snapshots

The Forecast specifically examines five technology-intensive industries chosen for their overall importance in terms of U.S. corporate, federal and global industry R&D. Highlights of the Industrial R&D section, with information drawn from survey and secondary data, are below. Detailed charts ranking companies by R&D spending can be found at www.battelle.org/ABOUTUS/rd/2012.pdf.

Aerospace and Defense: U.S. federally funded defense R&D will reach nearly $75 billion in 2012, exceeding every other country's total R&D except that of China, Japan and Germany. The increasing importance of and reliance on unmanned and autonomous vehicles and real-time situational awareness and sensor systems continue to change the aerospace, defense and national security R&D landscape. Beyond this level of federally funded R&D, U.S. corporations also will invest $13.8 billion of their own resources on R&D activities in 2012, up 5.9 percent from 2011. Globally, aerospace and defense industry R&D spending will grow by 1.9 percent to reach $26.2 billion in 2012.

These systems, by their nature and scale, provide system-level R&D opportunities that historically were limited to major prime contractors with large manufacturing capacities. These larger companies likely will dominate the R&D expenditures, but many smaller companies are also engaged both as subcontractors and primes in significant efforts in these technological areas.

Early-stage R&D efforts in these technologies, along with efforts in other sensor and monitoring technologies, cybersecurity, nanotechnology and advanced materials, biofuels and medical technologies will see continued defense R&D funding, for which numerous smaller firms may see a more level playing field during the next five to 10 years.

Energy: Energy-related research sponsored by U.S. manufacturers and technology providers will reach nearly $6.7 billion in 2012, up 23.1 percent from 2011. Global spending by energy-related companies will grow by 7.8 percent to reach $17.9 billion in 2012.

A review panel commissioned by the U.S. Department of Energy (DOE) identified key R&D areas where DOE program and investment can play a significant development role, including several in which the DOE historically has underinvested. The areas address both energy supply and demand and relate to both stationary power (deploying clean electricity, modernizing the grid and increasing building/industrial efficiency) and transport power (deploying alternative hydrocarbon fuels, electrifying the vehicle fleet, and increasing vehicle efficiency).

The panel calls on DOE to maintain a mix of analytic, assessment and fundamental engineering research capabilities in a broad set of energy-technology areas while seeking to balance more assured activities against higher-risk transformational work. At the same time, the report acknowledges that the efforts must be relevant to the private sector. There is a tension between supporting work that industry doesn't -- the long term nature of basic research -- and the urgency of the nation's energy challenge.

Life Science: United States R&D spending in the life science industry is expected to decline by 5.7 percent to $73.2 billion in 2012 as pharmaceutical firms tighten their R&D budgets. Global R&D spending in the industry also is forecast to decline by 2.2 percent to $147.3 billion.

This sector includes such diverse firms as multi-national pharmaceutical corporations, large medical device and instrument companies and both large and small biotechnology firms.

A major change in the funding and performing of life science R&D is the convergence in public and private sector R&D toward open innovation and open source information -- especially in areas needing considerable fundamental research. It is due, in part, to the pharmaceutical industry's retrenchment from its conventional model to a more reduced internal R&D function and focuses more on collaboration and ROI. The ripple effects of impending patent expirations and the widely reported decline in productivity in the development and approval of significant new medicines are driving the strategic changes.

Information and Communication Technologies (ICT): During the past two years, ICT-related manufacturing has been particularly volatile, with leading companies experiencing commercial dynamics following the introduction of new products arising from R&D decisions. Despite these fluctuations the United States' R&D spending in the ICT industry is forecast to increase by 9.9 percent, reaching $138.8 billion in 2012. This U.S. growth helps drive an overall global ICT industry growth of 4.1 percent to $238.5 billion.

The Funding Forecast highlights several high profile companies as examples of how success in the ICT marketplace cannot be maintained simply by being the current market leader and making large R&D investments. A clear vision of long-term technology goals aligned with a competitive marketing strategy is essential.

Information from The Economist's Intelligence Unit (EIU) affirms that the U.S. remains the world's most competitive country in ICT, but notes that developing nations are beginning to close the gap. The U.S. and Japan make up nearly 70 percent of all global ICT investments.
Chemicals and Materials: R&D in the broadly defined chemicals and materials industry is expected to grow by 11.4 percent in the U.S. to $9.3 billion in 2012, while growing by 3.8 percent globally to $33.8 billion.

Nanotechnology and its applications continue to pervade all industrial applications with biomedical applications beginning during the past two years. More than 15 U.S. government agencies propose funding $2.13 billion in nanotechnology research including DOE at $611 million, the National Institutes of Health at $465 million, the National Science Foundation at $456 million and the Department of Defense at $368 million.

An emerging priority in advanced materials is a heightened focus on developing alternative sources or processes related to rare earth metals because of China's recent export limits on supplies. In the industrial sector around the world, closed non-Chinese rare earth mines are being re-opened; however, the environmental requirements for operating these mines have increased since they closed, making additional R&D and capital expenditures necessary to develop new and improved processing programs.

Hard copies of the full R&D Funding Forecast report will be available by request Jan. 3 by contacting Sandy Walker at (614) 424-7619 or at .

####

About Battelle
As the world's largest independent research and development organization, Battelle provides innovative solutions to the world's most pressing needs through its four global businesses: Laboratory Management; National Security; Health and Life Sciences; and Energy, Environment and Material Sciences. It advances scientific discovery and application by conducting $6.5 billion in global R&D annually through contract research, laboratory management and technology commercialization. Headquartered in Columbus, Ohio, Battelle oversees 22,000 employees in more than 130 locations worldwide, including seven national laboratories which Battelle manages or co-manages for the U.S. Department of Energy and the U.S. Department of Homeland Security and a nuclear energy lab in the United Kingdom.

Battelle also is one of the nation's leading charitable trusts focusing on societal and economic impact and actively supporting and promoting science, technology, engineering and mathematics (STEM) education.

For more information, please click here

Contacts:
Sandy Walker
(614) 424-7619


Katy Delaney
(614) 424-7208

T.R. Massey
(614) 424-5544

Copyright © Marketwire

If you have a comment, please Contact us.

Issuers of news releases, not 7th Wave, Inc. or Nanotechnology Now, are solely responsible for the accuracy of the content.

Bookmark:
Delicious Digg Newsvine Google Yahoo Reddit Magnoliacom Furl Facebook

Related News Press

News and information

Beyond wires: Bubble technology powers next-generation electronics:New laser-based bubble printing technique creates ultra-flexible liquid metal circuits November 8th, 2024

Nanoparticle bursts over the Amazon rainforest: Rainfall induces bursts of natural nanoparticles that can form clouds and further precipitation over the Amazon rainforest November 8th, 2024

Nanotechnology: Flexible biosensors with modular design November 8th, 2024

Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024

Govt.-Legislation/Regulation/Funding/Policy

Giving batteries a longer life with the Advanced Photon Source: New research uncovers a hydrogen-centered mechanism that triggers degradation in the lithium-ion batteries that power electric vehicles September 13th, 2024

New discovery aims to improve the design of microelectronic devices September 13th, 2024

Physicists unlock the secret of elusive quantum negative entanglement entropy using simple classical hardware August 16th, 2024

Single atoms show their true color July 5th, 2024

Possible Futures

Nanotechnology: Flexible biosensors with modular design November 8th, 2024

Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024

Turning up the signal November 8th, 2024

Nanofibrous metal oxide semiconductor for sensory face November 8th, 2024

Sensors

Beyond wires: Bubble technology powers next-generation electronics:New laser-based bubble printing technique creates ultra-flexible liquid metal circuits November 8th, 2024

Nanotechnology: Flexible biosensors with modular design November 8th, 2024

Nanofibrous metal oxide semiconductor for sensory face November 8th, 2024

Groundbreaking precision in single-molecule optoelectronics August 16th, 2024

Materials/Metamaterials/Magnetoresistance

New material to make next generation of electronics faster and more efficient With the increase of new technology and artificial intelligence, the demand for efficient and powerful semiconductors continues to grow November 8th, 2024

How surface roughness influences the adhesion of soft materials: Research team discovers universal mechanism that leads to adhesion hysteresis in soft materials March 8th, 2024

Nanoscale CL thermometry with lanthanide-doped heavy-metal oxide in TEM March 8th, 2024

Focused ion beam technology: A single tool for a wide range of applications January 12th, 2024

Announcements

Nanotechnology: Flexible biosensors with modular design November 8th, 2024

Exosomes: A potential biomarker and therapeutic target in diabetic cardiomyopathy November 8th, 2024

Turning up the signal November 8th, 2024

Nanofibrous metal oxide semiconductor for sensory face November 8th, 2024

Tools

New material to make next generation of electronics faster and more efficient With the increase of new technology and artificial intelligence, the demand for efficient and powerful semiconductors continues to grow November 8th, 2024

Turning up the signal November 8th, 2024

Quantum researchers cause controlled ‘wobble’ in the nucleus of a single atom September 13th, 2024

Faster than one pixel at a time – new imaging method for neutral atomic beam microscopes developed by Swansea researchers August 16th, 2024

Energy

KAIST researchers introduce new and improved, next-generation perovskite solar cell​ November 8th, 2024

Unveiling the power of hot carriers in plasmonic nanostructures August 16th, 2024

Groundbreaking precision in single-molecule optoelectronics August 16th, 2024

Development of zinc oxide nanopagoda array photoelectrode: photoelectrochemical water-splitting hydrogen production January 12th, 2024

NanoNews-Digest
The latest news from around the world, FREE




  Premium Products
NanoNews-Custom
Only the news you want to read!
 Learn More
NanoStrategies
Full-service, expert consulting
 Learn More











ASP
Nanotechnology Now Featured Books




NNN

The Hunger Project