Aarhus Universitet

Posição de Pós-Doutorado em Modelação e Otimização de Plantas de Pirólise com Captura Integrada de CO₂

Junte-se à Aarhus University na Dinamarca como pesquisador pós-doutoral para modelar e otimizar plantas de pirólise com captura integrada de CO₂. Colabore com a ECA Engineering e contribua para projetos de transição verde no Norte da Jutlândia.

Aarhus Universitet

Visão Geral da Empresa

Nome

Universidade de Aarhus

Sede

Aarhus, Dinamarca

Fundada

1928

Tamanho

Aproximadamente 8.000 funcionários (source: linkedin.com).

O que eles fazem

A Universidade de Aarhus é uma instituição pública de pesquisa que se concentra em pesquisa, educação e demonstração de tecnologias de energia renovável, incluindo energia solar, armazenamento de energia, baterias de fluxo e energia eólica marinha. O trabalho relacionado à energia da universidade é realizado por meio de departamentos e centros especializados, como o Centro Dinamarquês para Meio Ambiente e Energia (DCE) e o Centro para Tecnologias de Energia (CET), frequentemente em colaboração com a indústria para desenvolvimento de tecnologia e projetos piloto (source: peer.eu, dce.au.dk, btech.au.dk). As oportunidades de emprego para candidatos se concentram em funções acadêmicas, de pesquisa e técnicas nessas unidades, em vez de operações comerciais impulsionadas por energia.

Projetos & Resultados

Entre os projetos notáveis está a Comunidade de Energia da Universidade (UEF), que instalou dois sistemas solares montados no telhado com uma capacidade total de 98 kW em setembro de 2024, que devem produzir 90 MWh anualmente por 25 anos (source: fedarene.org). Além disso, foi iniciado um projeto de demonstração para armazenamento de água em balões subterrâneos, que recebeu DKK 4,9 milhões em financiamento EUDP e simula um sistema em escala real para armazenamento de 230 MWh (source: stateofgreen.com). O projeto DanFlow, que recebeu DKK 11 milhões em apoio, foca na otimização de baterias de fluxo de vanádio para reduzir os custos de armazenamento (source: eurekalert.org).

Desenvolvimentos Recentes

Nos últimos dois anos, a Universidade de Aarhus garantiu DKK 4,9 milhões em apoio EUDP para a demonstração de armazenamento em balões de água, que agora está na fase de construção (source: stateofgreen.com). A comunidade solar UEF foi lançada em setembro de 2024 e instalou sistemas de 98 kW (source: fedarene.org). A pesquisa DanFlow recebeu DKK 11 milhões da Fundação de Inovação, e um novo centro de economia de energia e clima foi inaugurado na Aarhus BSS (source: eurekalert.org).

Trabalhar Lá

As funções de trabalho nas unidades de energia da Universidade de Aarhus variam de professorados a posições de pós-doutorado e assistentes de pesquisa, com departamentos como Engenharia, Ecologia e Ciências Ambientais contratando (source: stateofgreen.com, eurekalert.org). A cultura enfatiza a colaboração entre pesquisa e indústria, com modelos de governança democráticos em projetos como o UEF, e há um foco no equilíbrio entre vida profissional e pessoal em ambientes acadêmicos dinamarqueses (source: fedarene.org). Os benefícios incluem aposentadorias financiadas pelo governo, semanas de trabalho de 37 horas, 6 semanas de férias e horários de trabalho flexíveis, embora as especificações possam variar dependendo da função (source: linkedin.com).


Última atualização em mar 13, 2026 | Relatar um problema

The Department of Biological and Chemical Engineering, Aarhus University, invites applications for a postdoctoral position on advanced modelling and optimization of pyrolysis plants integrated with CO₂ capture (CCUS), conducted in close collaboration with ECA Engineering ApS in Aalborg. The position is sponsored by the Just Transition Fund to support green-transition initiatives in Northern Jutland. The goal of the project is to develop a state-of-the-art digital tool for assessing and designing current and next‑generation pyrolysis plants and their interaction with CCUS and PtX systems. In addition, a tool capable for determining the Carbon Dioxide Removal (CDR) credits as a function of feedstock, location, pyrolysis process and technology and will be validated by real-world data.

You will be employed at the Department of Biological and Chemical Engineering, Aarhus University, with primary workplace in Åbogade 40, at experimental facilities in Foulum and selected industrial pyrolysis plants with regular presence at ECA Engineering ApS in Aalborg.

Expected start date and duration of employment

The position is a full-time postdoctoral position expected to start on 1 November 2026, or as soon as possible thereafter, and is fixed-term until 31 October 2028.

Job description

The postdoctoral researcher will play a central role in the research and development activities of the project "Development of detailed models for the design and optimization of pyrolysis plants in interaction with CO₂ capture." You will drive the development of a comprehensive, modular simulation framework that links all major unit operations in the pyrolysis value chain with downstream CCUS and PtX technologies, implemented in ECA Engineering's existing software platform.

Tasks

  • Develop detailed, first‑principles and semi‑empirical models for all core unit operations in biomass pyrolysis plants (e.g. dryer, reactor, filters, scrubbers, electrostatic precipitators, tanks, gas dehumidification, engines) based on mass and energy balances and state‑of‑the‑art literature.
  • Integrate these unit models into a coherent flowsheet within ECA Engineering's existing software platform, ensuring robust numerical performance and interoperability.
  • Extend the framework to include CCUS and PtX components (compressors, coolers, JT flash for CO₂ conditioning, storage tanks, pipeline transport, electrolysis/hydrogen production modules) to enable full-chain simulations of pyrolysis-CCUS-PtX systems.
  • Design and execute systematic simulation campaigns to study the impact of feedstock variability, operating conditions, hydrogen addition, and downstream integration on synthesis gas yield, CO₂ emissions, process efficiency and fouling/"coatings" behaviour.
  • Collaborate with Aarhus University's experimental teams in Foulum and laboratory facilities to define experimental campaigns and use measured data for model calibration, validation and uncertainty analysis.
  • Work closely with ECA Engineering and industrial partners operating full‑scale or pilot pyrolysis plants to obtain plant data, test model predictions, and translate modelling insights into concrete design and operating recommendations.
  • Build and validate a CDR assessment model for pyrolysis plants of varying design and feedstocks, including software architecture and database, for eventual use as a new application.
  • Lead the literature review on thermochemical conversion, biomass pyrolysis, coupled CCUS/PtX systems and relevant kinetic/transport models to underpin the successive model versions (V1-V3) envisioned in the project.
  • Contribute to the implementation of a web‑based user interface that exposes the models to external users (engineers, operators, consultants, authorities) and supports scenario studies, sensitivity analysis and "worst‑case" decision support.
  • Co‑author peer‑reviewed scientific articles documenting the modelling framework, its validation and application to real pyrolysis plants, in collaboration with ECA Engineering.
  • Participate in regular project meetings (weekly coordination, technical work sessions) and represent the modelling activities in interactions with external stakeholders, including authorities and potential software users.

The position is research‑oriented but has a strong applied and industrial dimension, with the explicit goal of delivering a validated, commercially relevant software tool that can be used by designers, investors and regulators when planning and assessing future pyrolysis projects.

The successful candidates will become part of a collaborative and international environment within the Department of Biological and Chemical Engineering (BCE) at Aarhus University. The positions are mainly based at AU Viborg, home to BCE's mid-TRL experimental facilities, which support the development and testing of sustainable technologies on pilot scale. Depending on the position, the work will involve a combination of experimental research, process simulation, reactor operation, and system-level optimization.

Your profile

We are looking for an ambitious and technically strong candidate who is motivated by combining rigorous modelling with direct industrial impact in the green transition.

You have:

  • A PhD in chemical engineering, process engineering, mechanical engineering, data science, computer science, energy engineering or a closely related field.
  • Solid background in thermodynamics, transport phenomena, and process modelling and computer programming with documented experience in developing and applying unit operation and flowsheet models for chemical or energy systems.
  • Experience with one or more process simulation and/or modelling environments (e.g. Aspen Plus/HYSYS, gPROMS, Modelica, Python/Matlab‑based frameworks) and an interest in working with various software architectures (e.g. CAPE-OPEN) and object‑oriented software platforms.
  • Knowledge of thermochemical conversion of biomass (e.g. pyrolysis, gasification) and/or CO₂ capture technologies; familiarity with CCUS and PtX system integration will be considered a distinct advantage.
  • Strong programming and numerical skills (e.g. in Python, C#, C++, or similar) and a keen interest in writing clean, well‑documented and reusable scientific code.
  • Experience in building Big Data databases (e.g. SQL), managing large datasets, and querying / structuring in logical way and parametric simulation engines.
  • Familiarity of machine learning / AI techniques and custom LLMs generation is beneficial.
  • Knowledge of life cycle assessment (LCA) and LCA methods, carbon accounting and Carbon Direct Removal (CDR) approaches and analysis methodologies is viewed favorably.
  • Ability to work independently and proactively while contributing constructively to a cross‑disciplinary team spanning academia, software development and industrial plant operation.
  • Excellent communication skills in English, both written and spoken, and an interest in engaging with external stakeholders, including plant operators, technology suppliers and authorities.
  • Experience with validation against industrial data, sensitivity/uncertainty analysis, or decision‑support tools for investors and regulators is an asset, as the project explicitly targets model‑based documentation to underpin future investments in large‑scale pyrolysis plants.

Candidate-se agora

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Sobre a função

9 setembro 2026

9 setembro 2026

Tempo inteiro

Híbrido

Escola

Energia hidroelétrica, Bioenergia

Aarhus Universitet

international.au.dk

  •  Aalborg, Dinamarca
  •  Tjele, Dinamarca

PhD required

UTC+01:00