14915 - KTP Associate in Molecular Modelling and Biochar Fertiliser
| Company: | The University of Edinburgh |
|---|---|
| Salary: | £41,064 to £48,822 a year |
| Hours: | Full-time |
| Location: | City of Edinburgh |
| Working pattern: | Hybrid - 2 days remote |
| Job type: | Temporary |
| Posting date: | 17 Sept 2026 |
| Closing date: | 1 Oct 2026 |
Summary
Grade UE07: £41,064 to £48,822 per annum
School of Chemistry / CSE
Full time: 35 hours per week
Fixed term: for 30 months
The Opportunity:
We are looking for a KTP Associate in Molecular Modelling and Biochar Fertiliser Design to join a 30-month Knowledge Transfer Partnership between the University of Edinburgh and Black Bull Biochar Ltd.
You will lead the molecular modelling and model-guided formulation work for a new generation of granulated biochar-fertiliser products for cereal crops. The role will combine computational chemistry, soil/environmental chemistry, materials characterisation and applied product development, translating molecular-level understanding of biochar–nutrient interactions into practical formulation rules for spring barley and winter wheat fertiliser prototypes.
This is an excellent opportunity for a researcher who wants to apply molecular modelling to real agricultural and environmental challenges while working closely with an innovative industrial partner. You will be employed by the University of Edinburgh and will work directly with Black Bull Biochar Ltd, University researchers, SRUC agronomy specialists and the wider KTP team.
This post is full-time, hours to be confirmed, and fixed-term for 30 months. Flexible or hybrid working may be considered where compatible with laboratory, industry-site and project-delivery requirements.
Your skills and attributes for success:
A PhD in computational chemistry, materials chemistry, environmental chemistry, soil science, chemical engineering, agricultural/environmental science or a related discipline.
Strong experience in molecular modelling, scientific computing and reproducible data analysis, ideally using HPC resources and molecular simulation tools relevant to surfaces, porous materials, aqueous systems or nutrient adsorption.
Knowledge of soil chemistry, environmental chemistry or fertiliser science, including nutrient speciation, nitrogen/phosphorus cycling, adsorption/desorption, pH and soil-solution chemistry.
Ability to translate computational and experimental evidence into applied formulation decisions, technical recommendations, standard operating procedures and product-development workflows.
Clear motivation to work with industry and to apply research to commercial product development. Previous industry, commercial R&D, start-up, agriculture, fertiliser, biochar or environmental technology experience would be advantageous.
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