Institute of Physical Chemistry Polish Academy of Sciences, Warsaw, Poland, TEAM 17: Environmental Chemistry
National Science Center
Project title, type and project number
OPUS 27, Project No 2024/53/B/ST10/01173 Entitled: „The influence of the spatial structure of aerosol precursors on the components of secondary atmospheric aerosol and their potential environmental and health effects”, 54/2026
Project leader
Dr inż. Agata Błaziak
Description
Atmospheric aerosol, known for its chemical complexity, serious negative impact on human health, and large but uncertain effects on climate, represents a substantial fraction of tropospheric air pollution. Global and regional observations reveal that most submicron aerosol particles are secondary in nature, i.e., formed through atmospheric chemical processes, contributing up to 90% of aerosol mass over continental regions. Despite substantial progress in understanding the formation of secondary organic aerosol (SOA), the molecular-level processes controlling its chemical composition, transformation, and atmospheric fate remain incompletely understood.
A particularly promising but still insufficiently explored aspect of SOA chemistry is its molecular chirality. Chiral organic compounds are abundant among biogenic volatile organic compound (BVOC) oxidation products, especially those derived from monoterpenes and other terpenoids. Their enantiomeric composition can provide information on precursor sources, atmospheric processing, and the extent of chemical transformation. At the same time, atmospheric oxidation may alter the abundance and enantiomeric composition of individual compounds, potentially generating characteristic molecular fingerprints of SOA formation and aging. Consequently, chirality represents a powerful but underutilized molecular-level approach for investigating the atmospheric evolution of organic aerosol.
The main objective of the project is to establish a comprehensive understanding of the role of molecular chirality in the formation and atmospheric aging of secondary organic aerosol, with particular emphasis on SOA derived from monoterpenes. We aim to investigate how the enantiomeric composition of selected chiral oxidation products changes during atmospheric oxidation and how these changes can be linked to precursor identity, oxidation pathways, and aerosol aging. Laboratory-generated SOA will be produced under atmospherically relevant oxidative conditions and characterized using advanced chromatographic and mass-spectrometric approaches capable of resolving and quantifying individual enantiomers.
The laboratory results will be confronted with measurements of ambient aerosol collected in forested, rural, and suburban environments. By combining molecular composition, enantiomeric ratios, and conventional aerosol characteristics, we will assess whether chiral compounds can serve as molecular tracers of SOA sources and atmospheric processing. Particular attention will be given to distinguishing primary source signatures from changes induced by atmospheric oxidation and to identifying compounds or enantiomeric ratios that retain information about precursor origin.
The project will provide novel experimental data on the occurrence, transformation, and atmospheric significance of chiral organic compounds in SOA. By introducing chirality as an additional molecular dimension of aerosol characterization, the study will contribute to a better understanding of SOA formation and aging and may provide new tools for tracing biogenic aerosol sources and evaluating atmospheric processing in forested, rural, and suburban regions. Importantly, the project will focus on gas-phase oxidation and particle-phase processes and will not investigate chemical reactions occurring in the aqueous phase.
Number of vacancies
1
Key responsibilities include
Responsibilities
1. Sample preparation
2. Measurements with different spectrometric and spectroscopic techniques
3. Data analysis
4. Reporting
Position in the project
Student scholarship position
Job type
Scholarship
Salary
1500 PLN/month
Planned start of work in the project
1.10.2026
Planned period of contract/stipend agreement
6 months, with a possible extension
We offer
Career development prospects at IPC PAS
Career development prospects at IChF:
Scientific discipline
Chemistry
Scientific profile of a candidate
First Stage Researcher (R1)
Requirements
Requirements for the candidate – the candidate:
Key assessment criteria
The recruitment committee will evaluate the candidates’ research achievements, their research-related achievements and competencies as regards specific tasks in the research project, expressed as a point score:
https://www.ncn.gov.pl/sites/default/files/pliki/uchwaly-rady/2024/uchwala25_2024-zal1_ang.pdf
The incomplete applications will be not considered.
The application deadline is on the 23.09.2026, 12:00 CEST (UTC +2:00).
Applications should be sent to rekrutacja@ichf.edu.pl. IMPORTANT! email subject: “Recruitment no 54/2026” (emails without this number will not be considered)
The scholarship will be awarded in accordance with the rules defined by National Science Center’s document REGULATIONS FOR AWARDING NCN SCHOLARSHIPS FOR NCN-FUNDED RESEARCH PROJECTS https://www.ncn.gov.pl/sites/default/files/pliki/uchwaly-rady/2024/uchwala25_2024-zal1_ang.pdf
and in accordance with the Employment policy of the Institute of Physical Chemistry PAS https://ichf.edu.pl/files/csr/ipc-procedures.pdf
Top candidates can be invited for an online or in-person interview. We reserve the right to contact and reply to only selected candidates.
• The incomplete applications may not be considered.
• The scholarship will be awarded to the person who obtains the highest number of points.
• The results of the competition are made public
• The results of the recruitment are planned to be announced on the 28.09.2026.
If the top candidate does not sign the contract due to the resignation, we reserve the right to choose the next candidate from the ranking list.
More details about the project:
https://projekty.ncn.gov.pl/index.php?projekt_id=616482
https://projekty.ncn.gov.pl/opisy/616482-pl.pdf
For more details about the position please visit:
More information about the IPC PAS:
For additional job details please contact the Leader of this project: ablaziak@ichf.edu.pl
Name of the post and its definition in the meaning of the grant documentation:
NCN scholarships may be awarded to individuals who are not PhD holders and meet any of the following terms:
a) be students of full-time first or second-cycle degree programmes or uniform Master’s studies at any university in Poland;
b) participate in a doctoral programme (Within the meaning of the Act on Higher Education of 27 July 2005) ;
c) are PhD students at a doctoral school (Within the meaning of the Act on Higher Education and Science of 20 July 2018)
According to REGULATIONS FOR AWARDINGNCN SCHOLARSHIPS FOR NCN-FUNDED RESEARCH PROJECTS
https://www.ncn.gov.pl/sites/default/files/pliki/uchwaly-rady/2024/uchwala25_2024-zal1_ang.pdf
At the starting date of the work within the project: status of a student or doctoral student in biology, chemistry, biophysics, biotechnology or a related field. Document confirming the status of a student or doctoral student (in accordance with the rules defined by National Science Center’s document REGULATIONS FOR AWARDING NCN SCHOLARSHIPS FOR NCN-FUNDED RESEARCH PROJECTS will be required before concluding the scholarship agreement.
Application deadline
23.09.2026 12:00
Planned date of settlement of the competition
28.09.2026
Send the application via the "Apply to the position" button, or to rekrutacja@ichf.edu.pl with the title 54/2026.
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