Johannes Milz

Johannes Milz
johannes.milz@isye.gatech.edu
Department Webpage

Johannes Milz is an Assistant Professor in the H. Milton Stewart School of Industrial and Systems Engineering. His research focuses on optimization under uncertainty and optimal control of uncertain systems, with a strong emphasis on sustainability applications. By addressing large-scale optimization challenges in physics-based models under uncertainty, he aims to contribute to the development of sustainable energy systems, such as renewable tidal energy farms. Dr. Milz is also dedicated to open science; he develops reproducible numerical simulations and shares them publicly, making his results accessible to a broad group of researchers and practitioners. Prior to joining ISyE, he was a postdoctoral researcher at the Technical University of Munich, where he earned his Ph.D. in Applied Mathematics in 2021.

Assistant Professor, School of Industrial Systems Engineering
Office
Groseclose 444
Additional Research

Resource assessment and design of renewable marine energy systems, especially tidal energy. 

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Constance Crozier

Constance Crozier
constance.crozier@isye.gatech.edu
Constance Crozier School Webpage

I am an Assistant Professor at Georgia Tech ISyE. My research concerns the control and operation of decarbonized power systems, particularly with the integration of flexible loads such as electric vehicles. I got my Ph.D. from the University of Oxford in the Energy and Power Group, and completed my postdoc in the GRIFFIN Lab at CU Boulder.

Assistant Professor, School of Industrial Systems Engineering
Additional Research

Power systems and Electric vehicles

Research Focus Areas
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Zhaohui (Julene) Tong

Zhaohui (Julene) Tong
zt7@gatech.edu
Website

The Tong Lab tackles challenges in the interdisciplinary areas of bioresource engineering and sustainable chemistry. We develop innovative technologies for producing chemicals, materials, energy, and fuels from renewable resources.

Current research interests include:

  • Functional biomaterials for high-efficiency circular economy
  • Platform chemicals and hydrocarbon fuels from renewable resources
  • Sustainable process control and modeling
  • Nano-biomaterial synthesis and self-assembling
  • Polymer degradation and recycling

Disciplines:

  • Materials and Nanotechnology

  • Energy and Sustainability

Associate Professor, School of Chemical and Biomolecular Engineering
Phone
404.894.3098
Office
ES&T 2226
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Akanksha Menon

Akanksha Menon
akanksha.menon@me.gatech.edu
Akanksha Menon Profile

Dr. Akanksha Menon is an Assistant Professor in the Woodruff School of Mechanical Engineering at Georgia Tech. Prior to this, she was a Rosenfeld Postdoctoral Fellow at Lawrence Berkeley National Laboratory, where she performed research on hybrid membrane-thermal desalination processes using solar energy, and she also contributed to the development of thermal energy storage materials. Dr. Menon completed her Ph.D. at Georgia Tech, where she focused on developing semiconducting polymers and new device architectures for thermoelectric energy harvesting. She holds a bachelor's degree from Texas A&M University at Qatar, as well as a master’s degree in Mechanical Engineering from Georgia Tech.

Her research group at Georgia Tech is working on technologies for the water-energy nexus.

Assistant Professor, Woodruff School of Mechanical Engineering
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Kevin Caravati

Kevin Caravati
kevin.caravati@gtri.gatech.edu
Departmental Bio

Mr. Caravati is a Principal and Founder of Applied Plasma Arc Technologies, LLC and a Senior Research Scientist and Professional Geologist at the Georgia Tech Research Institute (GTRI), the applied research arm of the Georgia Institute of Technology. He received his Bachelor’s degree in Geology from the University of Dayton, Ohio, and a Master of Science in Geology-Hydrogeology track from the University of South Florida in Tampa, Florida. He earned a Master’s degree in Business Administration (International Business) from the Stetson School of Business and Economics at Mercer University in Atlanta. He began work with GTRI in 2002.

Mr. Caravati served as a Hydrogeologist, Project Manager, and Project Director for a wide range of water resources and water quality projects in the United States, Mexico and England. He has led numerous water resource investigations that included delineating watersheds using aerial imagery and GIS tools, well installation and testing programs, monitoring and field data collection programs, and developing ground water flow and contaminant transport models for predictive studies. Since 2008, he served as Director of the Environmental Safety and Occupational Health Programs at GTRI, and as Program Manager for environmental engineering research for a global services provider. Mr. Caravati also served as a research lead in Georgia Tech’s Plasma Arc Research Facility. 

Mr. Caravati’s areas of research include the design and prototyping of dry sanitation systems; testing of chemical and biological sensor systems for environmental applications; modeling of renewable energy systems for rural areas; water supply and wastewater studies for sustainability and energy efficiency; and water resource investigations for rural watersheds in developing countries. He serves as a Research Advisor to Georgia Tech’s Engineering Students Without Borders chapter, and in 2007 he led or participated in projects in Angola, Bolivia, and Yellowstone National Park, and served in an advisory capacity for projects in Kenya, Japan, Korea, Guam, and Ireland.

GTRI Liaison for Sustainability Research
Principal Research Scientist
Manager, Energy and Sustainability Research Program
Phone
(404) 407-8058
Additional Research

Solar

Research Focus Areas
GTRI
Geogia Tech Research Institute
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Randall Guensler

Randall Guensler
randall.guensler@ce.gatech.edu
Website
Professor, School of Civil and Environmental Engineering
Phone
(404) 894-0405
Additional Research

Electric Vehicles; Smart Infrastructure

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Ameet Pinto

Ameet Pinto
ameet.pinto@ce.gatech.edu
Pinto Lab Website

Dr. Ameet Pinto is an Environmental Engineer and Carlton S. Wilder Associate Professor in Civil and Environmental Engineering at Georgia Institute of Technology (Georgia Tech). Ameet is a Chemical Engineer from the Institute of Chemical Technology (University of Mumbai) with post-graduate degrees in Environmental Engineering from the University of Alaska (2005) and Virginia Tech, USA (2009). Before joining Georgia Tech in 2021, he was an Assistant Professor at Northeastern University (2016-2021) and Lecturer/Senior Lecturer (2012-2015) at the University of Glasgow. Ameet’s research focuses on microbial ecosystems at the interface of infrastructure and public/environmental health with a focus on the engineered water cycle. The overall research goal is to characterize and manipulate microbial communities to (1) protect and improve public and environmental health and (2) improve functional reliability and economic feasibility of water infrastructure. To do this, his research group develops and applies state-of-the-art microbial molecular and sensing tools and modelling approaches to monitor and manage the microbiology of the engineered water cycle. Ameet also serves as the Editor for Water Research (the premier journal for the engineering, science, and technology for water quality management) and as the Secretary of the Microbial Ecology and Water Engineering (MEWE) Specialist Group of the International Water Association.

Associate Director for Interdisciplinary Research and Collaboration
Carlton S. Wilder Associate Professor
Additional Research

Drinking waterWastewaterMicrobiomeMicrobial ecologyComputational biologyPublic health

Google Scholar
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Thomas Fuller

tom.fuller@chbe.gatech.edu
ChBE Profile

Tom Fuller is Professor of Chemical Engineering at the Georgia Tech. Dr. Fuller received a BS from the University of Utah in Chemical Engineering in 1982. Dr. Fuller then served for five years in the U.S. Navy working as a Nuclear Engineer. In 1992 he obtained a Ph.D. from UC, Berkeley also in Chemical Engineering. 

Subsequently, Dr. Fuller developed advanced lithium batteries while working as a postdoctoral fellow at Lawrence Berkeley National Laboratory. He then moved to United Technologies. He was responsible for technology development, design, assembly, and test of cell stacks for UTC Fuel Cells. 

His research group at Georgia Tech is focused on durability challenges for electrochemical systems. For the last eight years Dr. Fuller has been a Technical Editor for the Journal of the Electrochemical Society. In 2009 Dr. Fuller was named a Fellow of the Electrochemical Society.

Professor, School of Chemical and Biomolecular Engineering
Phone
(404) 894-2898
Additional Research

Electric Vehicles; Energy Storage; Hydrogen; Modeling; Materials Failure and Reliability; Energy Conversion; Energy Storage; Batteries; fuel cells

University, College, and School/Department
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https://scholar.google.com/citations?hl=en&user=I1RqBRoAAAAJ&view_op=list_works&sortby=pubdate
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Carsten Sievers

Carsten Sievers
carsten.sievers@chbe.gatech.edu
ChBE Profile Page

Sievers’ research interests are in heterogeneous catalysis, reactor design, applied spectroscopy, and characterization and synthesis of solid materials. Combining these interests he seeks to develop processes for the production of fuels and chemicals. His research program combines fundamental and applied research.

In fundamental studies, a suite of analytical and spectroscopic techniques (e.g. IR, NMR) is used to gain knowledge on structure-reactivity relationships of heterogeneous catalysts. Moreover, surface reactions are studied on a molecular level to identify reaction pathways over different catalysts. Information obtained from these studies provides the foundation for designing innovative catalysts.

Applied studies focus specific catalytic processes. For these projects, continuously operated flow reactor systems are designed. Different catalysts are tested for reactivity, selectivity and stability and the influence of the operating conditions is investigated. Catalyst deactivation is studied in detail to develop suitable regeneration methods or to avoid deactivation entirely by improved catalyst design. Specific projects include hydrodeoxygenation of pyrolysis oils, selective hydration of polyols, conversion of sugars into lactic acid and ethylene glycol, and selective oxidation of methane.

An important goal of Sievers’ research is to enable technology for utilization of alternative resources in order to reduce the current dependence of oil. Among these biomass is a particularly promising candidate because it is renewable and can be produced CO2 neutral.

Sievers has contributed to 80 peer reviewed publications on heterogeneous catalysis in petroleum refining (isobutane/2-butene alkylation, fluid catalytic cracking, hydrotreating), alkane activation, supported ionic liquid as catalysts for fine chemical synthesis, and biomass processing.  He is Director and Past President of the Southeastern Catalysis Society, former Program Chair and Director of the ACS Division of Catalysis Technology & Engineering, former Director of the AIChE Division of Catalysis and Reaction Engineering, and Editor of Applied Catalysis A: General.

Professor, School of Chemical and Biomolecular Engineering
Phone
404.385.7685
Office
ES&T 2218
Additional Research

Biomass; Biofuels; Catalysis; Advanced Characterization; Gasification; Biorefining; Lignin Upgrading; Catalysis; Energy & Water; Separation Technologies; Chemical Feedstocks; Sugars; Lignin & Hemicellulose

Google Scholar
https://scholar.google.com/citations?hl=en&user=qeq3njwAAAAJ&view_op=list_works&sortby=pubdate
Sievers Research Group
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