We have extensive experience of working with collaborators and clients globally, offering cutting edge expertise in environmental- and geo-analysis and access to state-of-the art facilities.
If you have any questions or want to find out more please look at our Analytical Facilities page.
We produce standard and larger sized thin sections of varying different materials, such as rock, pottery, meteorite, coal, clay, grains, single crystals, and building materials.
Samples can also be impregnated with resin, blue dyed, and stained for carbonates if required. We do this using the following equipment:
In the polishing laboratory we have a Logitech PM5, Stuers Rotopol- 35 with Pdm Force 20 head and a Metprep Saphir 520 polishing machine. These machines are used for polishing thin sections and resin blocks using aluminium oxide and diamond slurries as polishing mediums.
We produce standard polished probe thin sections (25mm x 48mm). These can be de-mountable and doubly polished if required. Polished resin blocks of 1 inch diameter are also available. We also have a Raytech Vibratory polisher for hand specimens.
Our laboratory also includes a portable fume hood, hand-held engraver and ultrasonic baths.
If you have any questions or want to find out more please contact David Johnson.
Launched in 2012, our Virtual Microscope open-access website has been relaunched following a makeover in early 2021. The relaunch coincides with the addition of around 200 more geological samples in three new university collections.
We acquire and process digital images for hosting on the Virtual Microscope platform, allowing students, researchers, educators and enthusiasts worldwide the opportunity to explore a wide range of geological and planetary samples through their internet browser.
The Virtual Microscope displays high-resolution, zoomable images of entire thin sections in different light modes (plane-polarised, crossed polars, transmitted or reflected), with smaller fields of view at selected points of interest that can be rotated freely. Each sample page contains background information, while some sample pages also include a zoomable, rotating animation of the hand specimen.
We can create virtual microscope samples either from physical hand specimens, prepared thin sections (with coverslips), polished sections and resin mounts, or from scanned images acquired elsewhere. Please check the specifications with us first!
We use a Leica DM 2500P Pol microscope (with transmitted and reflected light capability) and a Leica fast acquisition digital microscope camera (DFC400) to acquire a mosaic of images across the entire section. These images are matched and stitched using Leica Power Mosaic software.
Images for the point of interest rotations are captured on a Leica DM Pol microscope using a Leica digital microscope camera (DFC490 HD).
Some components of the rotation digitiser microscope were made in the Open University Research Design & Engineering Facility.
Further processing of both the mosaic and rotation images, and coding of some auxiliary files, is required to prepare each sample for display on the virtual microscope platform.
If you have any questions or want to find out more please contact Tom Argles.
The Floodplain Meadows research group are available to undertake consultancy work, where the advice relates to a species rich floodplain meadow or restoration project and there is overlap with our research interests.
If you have any questions or want to find out more please contact Emma Rothero.
Knowledge Exchange Lead
Earth and Environment Laboratory Manager
Virtual Microscope Lead
Senior Knowledge Exchange Manager
We are celebrating another new professor in EEES, following the promotion of Dr Pallavi Anand to Professor of Ocean Biogeochemistry.
We are celebrating a new Professor in EEES. Dr Susanne Schwenzer has recently been promoted to Professor of Planetary Mineralogy.