Overall Rating Silver - expired
Overall Score 55.06
Liaison Susan Powers
Submission Date Nov. 30, 2012
Executive Letter Download

STARS v1.2

Clarkson University
ER-16: Faculty Engaged in Sustainability Research

Status Score Responsible Party
Complete 10.00 / 10.00 Susan Powers
Director of the Institute for a Sustainable Environment
ISE
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The number of faculty members engaged in sustainability research:
38

The total number of faculty members engaged in research:
138

Names and department affiliations of faculty engaged in sustainability research:

See complete list on our web site


The website URL where the sustainability research inventory that includes the names and department affiliations of faculty engaged in sustainability research is posted :
A copy of the sustainability research inventory that includes the names and department affiliations of faculty engaged in sustainability research:
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Brief descriptions of up to 4 recent notable accomplishments by faculty engaged in sustainability research, including names and department affiliations:

http://www.clarkson.edu/green/get_involved/research_opportunities.html >

Green Data Center: This multi-disciplinary program involving Profs. Pier Marzocca (Mech.Engrg.), Ajit Achuthan (Mech.Engrg.), Kerop Janoyan (Civil Engrg.), Jeanna Matthews (Comp. Sci.), Stephen Bird (Pol. Sci.), Martin Heintzelman (Econ.), Joseph Skufca (Math), and Lei Wu (Elec. Engrg.), combines engineering, public policy, and financial studies. It addresses several important energy policy, economic, and operational concerns related to a NYSERDA funded engineering project that develops the concept of "Green Data Computing Centers." It addresses challenges associated with both the migration to a cloud computing infrastructure, and the use of distributed and alternative electricity generation, with a specific focus on renewable energy sources. The concept is to make use of a distributed network of data centers to make this high-energy-demand technology more energy-efficient and cost-effective than current methods. If successful and deployed on a larger scale, this project could bring significant energy savings to an industry that can consume one megawatt of electricity at times of peak operation.

Wetlands Restoration Ecology: Clarkson researchers are monitoring the effectiveness of public-private partnership programs for wetland restoration and conservation. Aspects of this research include assessment of wetland-associated biodiversity, water quality, and ecosystem services of restored wetlands on private agricultural land (Drs. T. A. Langen, M. Twiss; Bio.), landowner satisfaction and valuation of participation in wetland restoration programs (Dr. J.R. Welsh, Soc. Sci.)), and the impact of wetland restoration on private property values (Dr. M. Heintzelman, Econ.). The objective of this research is to help the National Resource Conservation Service, US Fish & Wildlife Service, and other conservation agencies be more affective at meeting wetland conservation objectives in agricultural landscapes.

Woody Biofuels: Prof. P.K. Hopke (Chem. Engrg.) and T.M. Holsen (Env. Engrg.) have been studying advanced combustion systems for woody biomass for their thermal efficiency and emissions. Clarkson has installed a 150 kW high efficiency, low emissions boiler in the Walker Center to study wood pellet combustion. This team has also conducted studies at the Wild Center in Tupper Lake, NY on their 500 kW boiler as well as measuring the emissions from the combustion of switch grass pellets in conjunction with SUNY –Canton. The Walker Center boiler is being further modified to include thermal storage and innovative particle control systems to study system optimization and thereby minimize fuel input and emissions.

Energy Education: Efforts to promote energy literacy, which is a citizenship understanding of energy that includes broad content knowledge as well as affective and behavioral aspects, will move us toward a more sustainable energy future by empowering people to make objective energy-related decisions and actions throughout their daily life. With a deeper and broader understanding of energy, people are more likely to adopt behavioral changes that will effectively contribute toward energy conservation and efficiency, and are more likely to embrace technological changes in the way our society harnesses and consumes energy. The research efforts of Dr. J. DeWaters (Engrg.) and Prof. S. Powers (Inst. Sus. Env.) focus on improving our understanding of how energy education can improve energy literacy among pre-college students and young adults. Effective educational programs are important at any age, but are particularly valuable for pre-college (K-12) students, since energy-related awareness and values are largely formulated during childhood. To that end, a variety of educational modules have been developed to teach students about energy resources, energy systems, and environmental impacts. Recent efforts, with funding from NASA and additional expertise of Prof. S. Dhaniyala (Mech. Engrg.) enabled broadening the effort to include global climate change. The energy and climate modules are disseminated through teacher training workshops, which deepen their scientific content knowledge and provide them with materials, information, and a networked support system that enables them to deliver quality programming in their classrooms. Quantitative energy literacy and climate literacy questionnaires, also developed at Clarkson, have been used in a variety of applications to assess the status of energy and climate literacy and identify educational needs among pre-college and college age students. The instruments also provide a means to measure the broader impacts of educational programs, and in this way the research contributes toward creating and improving energy education programs that help improve students’ energy and climate literacy.


The website URL where information about sustainability research is available:
Data source(s) and notes about the submission:
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