Stanford Root

Schedule

Stanford Root

Schedule

CEE 273M

Desalination for a Circular Water Economy

UNITS:3
GRADING:Letter (ABCD/NP)
LEVEL:Graduate
GER:—

This course explores the technological innovations required to support a circular water economy in which nontraditional water is treated to fit-for-purpose standards and reused locally. The first part of this course reviews the key constituents present in nontraditional source waters and the state-of-the-art pretreatment, desalination, and concentrate disposal technologies for their removal. Attention is given to the thermodynamic and operational barriers to improving the efficiency and cost-effectiveness of current technologies. The second part of this course identifies opportunities for next generation autonomous, precise, resilient, process-intensified, modular, and electrically powered desalination alternatives to lower the cost and energy intensity of water reuse. Over the duration of the course, students will form teams to perform an in-depth review of a single nontraditional source water treatment train, research the state-of-technology relative to that required for reuse, and perform a quantitative estimate of life cycle capex and opex costs.Course Structure: This course combines a lecture-based introduction to critical material with extensive in-class discussion of daily readings from the peer reviewed literature. As such, it is designed for graduate students across the university with comfort reading the academic literature, a solid knowledge of physicochemical processes, and a basic understanding of traditional water treatment technologies. Assessment elements will include class participation, in class presentations, and a final project report. Enrollment limited to CEE 20.

Syllabus for selected term:
View Spring 2027 Syllabus

Sections

1 Term
Lecture 1Open
ID: 26028
0 / 999 enrolled
DAYS:TBD
TIME:TBD
LOCATION:TBD
3units

CEE 273M: Desalination for a Circular Water Economy

3 units · Letter (ABCD/NP)

This course explores the technological innovations required to support a circular water economy in which nontraditional water is treated to fit-for-purpose standards and reused locally. The first part of this course reviews the key constituents present in nontraditional source waters and the state-of-the-art pretreatment, desalination, and concentrate disposal technologies for their removal. Attention is given to the thermodynamic and operational barriers to improving the efficiency and cost-effectiveness of current technologies. The second part of this course identifies opportunities for next generation autonomous, precise, resilient, process-intensified, modular, and electrically powered desalination alternatives to lower the cost and energy intensity of water reuse. Over the duration of the course, students will form teams to perform an in-depth review of a single nontraditional source water treatment train, research the state-of-technology relative to that required for reuse, and perform a quantitative estimate of life cycle capex and opex costs.Course Structure: This course combines a lecture-based introduction to critical material with extensive in-class discussion of daily readings from the peer reviewed literature. As such, it is designed for graduate students across the university with comfort reading the academic literature, a solid knowledge of physicochemical processes, and a basic understanding of traditional water treatment technologies. Assessment elements will include class participation, in class presentations, and a final project report. Enrollment limited to 20.

Offered in Spring 2027 at Stanford University.

Spring 2027 sections

  • Lecture — TBA TBA (Graduate)

More CEE courses

  • CEE 271C: Electrochemical Water Treatment: Materials and Processes (CHEMENG 175X, CHEMENG 475)
  • CEE 272: Coastal Contaminants
  • CEE 272M: Sustainable Mobility Seminar
  • CEE 272R: Engineering Future Electricity Systems (ENERGY 272R)
  • CEE 272T: SmartGrids and Advanced Power Systems Seminar (EE 292T)
  • CEE 273B: The Business of Water (EBS 273)
  • CEE 273S: Electricity Economics (CEE 173S)
  • CEE 273T: Modern Modeling Techniques for Water and Wastewater Systems
  • CEE 273W: Water Innovation & Investment (CEE 173W, EARTHSYS 173W, EARTHSYS 273W, PUBLPOL 173)
  • CEE 274: Scientific Machine Learning (CEE 174)
  • CEE 274D: Pathogens and Disinfection
  • CEE 274P: Environmental Health Microbiology Lab

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