What Are Typical Courses for an Online Environmental Engineering Degree?

Typical core courses for an online environmental engineering degree are virtually the same as those for an on-campus degree in the subject. The most common online environmental engineering degree offered is the master's, and it often includes core courses in air pollution control and formation, solid-liquid separation and remediation of hazardous waste sites. Read on to learn more. Schools offering Energy Management degrees can also be found in these popular choices.

Online Environmental Engineering Degree Program Courses

Environmental engineers apply their knowledge of biology, chemistry and environmental science towards protecting the environment from pollution, waste and other hazards. Those interested in this career might enroll in a bachelor's or master's degree program in environmental engineering. These programs, whether offered in online or on-campus formats, should provide courses ranging from process analysis to removal of hazardous waste.

Important Facts About an Online Degree in Environmental Engineering

Degree/Certificate Levels Bachelor's, master's and Ph.D. degrees; graduate certificate
Specializations Coastal and ecological engineering; geotechnical and geophysical engineering; material modeling and visualization; structural engineering; transportation engineering; water resources engineering
Possible Careers Environmental engineer; traffic engineer; environmental specialist; environmental/wastewater engineer
Continuing Education Voluntary; Fundamentals of Engineering (FE) and Professional Engineering (PE) certifications are available to increase chances of promotion

Typical Core Courses

Environmental engineering degrees focus on quality standards, legislation and environmental assessment procedures. Typical core courses for an online environmental engineering degree program may include:

  • Process Principles: looks at the various principles that are available for modeling and analysis of processes in environmental engineering.
  • Microbial Principles: is a study of microbial and enzyme kinetics, metabolic pathways, biochemical thermodynamics and microbial growth and nutrition.
  • Air Pollution Control and Formation: investigates air pollutants by examining pathways of radial reaction and combustion processes.
  • Air Pollution Chemistry and Meteorology: covers topics that include climatology of air pollution, air pollution meteorological management, processes of natural removal, stack effluents and atmospheric dispersion, topographic effects and wind structure.
  • Solid-Liquid Separation: is a course about treatment residues from waste water, water and air. The course covers disposal, transportation, recovery, thickening, conditioning, stabilization and characterization.
  • Remediation of Hazardous Waste Site: examines various remediation technologies for hazardous waste sites, such as barrier-treatment walls, surfactant flushing, bioremediation, thermal processes and soil vapor extraction.
  • Separation Processes: for liquid-phase and gas-phase systems are detailed in this course. It includes the applications and theory of chemical and physical processes of absorption, membrane separation and sorption.

To continue researching, browse degree options below for course curriculum, prerequisites and financial aid information. Or, learn more about the subject by reading the related articles below:

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