About this course

The course includes lectures and exercises designed to provide knowledge and skills to assess environmental risk and end-of-waste criteria for environmental contaminants in soil and water, make decisions about which analyses are relevant to conduct, and understand how the results from such analyses can be used in environmental assessments and decision-making processes.

The first two weeks are allocated to short lectures and various laboratory exercises. The lectures will place particular emphasis on how sampling, sample preparation, and the choice of analyses can influence the use and quality of the results. The students will formulate their own research question based on a contamination case. Opportunities and limitations related to the experimental setup will be discussed collectively before the work is carried out in the laboratory.

The exercises will focus on good laboratory practice, theory related to the collection of soil and water samples, and pretreatment (sample preparation) of soil (drying and sieving) and water (filtration/decanting). Both the solid phase (soil) and a leachable water phase (shaking test) will be characterized. Determination of key chemical support parameters such as organic carbon, pH, conductivity, and major elements (Al, Fe, Cl⁻, SO₄²⁻, etc.) will be demonstrated and partly performed by the students. In addition, analyses of heavy metals in various fractions of the samples will be conducted, i.e., total content, leachable content (shaking test), and bioavailable content (dissolved and labile metal) using extractions and passive samplers (DGT).

The final week is mainly allocated to allowing the students to use their own and their peers’ data produced during the course period to address their research question in the form of a report describing the results and discussing what they imply for environmental risk in the contamination case. Speciation modelling using WHAM will also be demonstrated, and the results will be made available.

Learning outcome

After completing the course, students should have the following knowledge and skills:

Knowledge:

  • Ordering competence - the ability to assess how samples should be collected and handled to ensure integrity, and which pretreatment and analyses are required to address a given problem.
  • Safety and procedures for working in an environmental chemistry laboratory, calibration of basic equipment, pipetting of standard solutions, and an understanding of the conditions required for accuracy and precision.
  • Knowledge of leaching tests and passive samplers, and how they can be used to describe phase distributions, bioavailability, and their implications for environmental risk.

Skills:

  • Be familiar with good practices for sampling soil and water, as well as selecting methods that are best suited under different conditions.
  • Prepare soil and water samples for analysis using standard methods and instruments.
  • Perform simple soil chemistry analyses.
  • Evaluate the quality and uncertainties of their own analyses.
  • Evaluate the suitability of their methods and results for determining the environmental consequences of measured parameters.

General competence:

  • Be able to choose appropriate sampling, sample preparation, and analytical methods based on knowledge of sample type and analyte(s), as well as requirements for analytical quality.
  • Assess the quality of analytical results.
  • Present the work in the form of a report.
  • Learning activities

    The student activities comprises daily preparatory lectures followed up by either demonstrations or student exercises. Time will be allocated during the course for the students to work on their laboratory reports. The students will be grouped in smaller groups during laboratory exercises.
  • Syllabus

    -Korgstad, T., Børresen, T., and Almås, Å. R. 2018. Field and laboratory methods for the analysis of soil.

    -NS/EN 12457 - Characterisation of waste — Leaching — Compliance test for leaching of granular waste materials and sludges

    -Sahuquillo, A., Rigol, A., Rauret, G. (2003). Overview of the use of leaching/extraction tests for risk assessment of trace metals in contaminated soils and sediments.

    -Relevant litterature will be listed in Canvas

  • Prerequisites

    MILJØ200 or similar.
  • Assessment method

    Assignment:

    Group report.

    Grading scale: Passed / Not passed



    Group report Karakterregel: Passed / Not Passed
  • About use of AI

    K3 - Full use of AI.

    The use of AI is permitted, but it must comply with the Guidelines for Use of Artificial Intelligence (AI) at NMBU.

    Descriptions of AI-category codes.

  • Examiner scheme

    External examiner participates in the evaluation of the assessment arrangements for students’ performance in the course.
  • Mandatory activity

    Take part in all laboratory activities and demonstrations. Presentation of the group report.
  • Notes

    Students who want to take the course must apply for admission in Studentweb no later than December 1st. After that, the places in the course will be distributed.

    If there are few students, the course may either be postponed by one year or offered with an alternative teaching arrangement.

  • Teaching hours

    Approximately 112 hours.
  • Preferential right

    Exchange students following DIKU-exchange programs and M-MILJØ.
  • Reduction of credits

    5 ECTS reduction agains JORD212 and JORD213.
  • Admission requirements

    Special requirements in Science