7 Items

A U.S. Customs and Border Protection officer uses a handheld GR135- Radiation Isttope Identifier to check a container that was stopped after passing through a radiation detection device at the port of Newark in February 2006 (AP Photo/Mel Evans).

AP Photo/Mel Evans

Journal Article - Nonproliferation Review

Combating Nuclear Smuggling? Exploring Drivers and Challenges to Detecting Nuclear and Radiological Materials at Maritime Facilities

| June 03, 2019

International concern over nuclear terrorism has grown during the past few decades. This has driven a broad spectrum of efforts to strengthen nuclear security globally, including the widespread adoption of radiation-detection technology for border monitoring. Detection systems are now deployed at strategic locations for the purported purpose of detecting and deterring the smuggling of nuclear and radioactive materials. However, despite considerable investment in this area, few studies have examined how these programs are implemented or the operational challenges they face on a day-to-day basis. This article seeks to address this with a focus on radiation-detection efforts at maritime facilities. Utilizing practitioner interviews and a survey, this article identifies the factors that influence the planning and use of these systems in this fast-moving environment. The results clearly demonstrate that the implementation of these systems varies significantly across different national and organizational contexts, resulting in a fragmented global nuclear-detection architecture, which arguably undermines efforts to detect trafficked nuclear-threat materials. Greater consideration should therefore be given to developing international standards and guidance, designing and adopting tools to support key parts of the alarm assessment process, and broader sharing of good practice.

President Barack Obama gets direction from his science advisor John P. Holdren during an event on the South Lawn of the White House to explore the stars with middle school students.

Reuters

- Belfer Center for Science and International Affairs, Harvard Kennedy School Belfer Center Newsletter

Spotlight on John P. Holdren

| Fall/Winter 2016-2017

As assistant to the president for science and technology, director of the White House Office for Science and Technology Policy, and co-chair of the President’s Council of Advisors on Science and Technology (PCAST), Holdren has worked closely with Obama to reinvigorate America’s scientific capabilities on a range of policy fronts, from climate change and renewable energy to health care and nanotechnology.

Report - Managing the Atom Project, Belfer Center

Advancing Nuclear Security: Evaluating Progress and Setting New Goals

In the lead-up to the nuclear security summit, Advancing Nuclear Security: Evaluating Progress and Setting New Goals outlines what was accomplished in a four-year effort launched in 2009 to secure nuclear material around the globe—and what remains to be done. The effort made significant progress, but some weapons-usable nuclear materials still remain “dangerously vulnerable." The authors highlight the continuing danger of nuclear and radiological terrorism and call for urgent action.

The kernels on the left are conventional white maize kernels. The maize kernels on the right are enhanced with a provitamin A trait using biotechnology. This maize would benefit Africa where millions of children suffer from vitamin A deficiency.

AP Photo

Newspaper Article - The East African

Africa Needs to Invest More in 'Life Sciences' to Benefit from Technology

    Author:
  • Steve Mbogo
| August 18, 2012

Africa is yet to adopt full scale technology-led development. Steve Mbogo spoke to the Director of the Belfer Center's Science, Technology, and Globalisation Project and professor at Harvard University Calestous Juma on the opportunities that await the continent as a late comer.

Journal Article - Minerva

Chemistry, Green Chemistry, and the Instrumental Valuation of Sustainability

| March 2011

Using the Public Value Mapping framework, the author addresses the values successes and failures of chemistry as compared to the emerging field of green chemistry, in which the promoters attempt to incorporate new and expanded values, such as health, safety, and environmental sustainability, to the processes of prioritizing and conducting chemistry research.