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Project type/Form of grant
Grant for employment or scholarship
Title [sv]
Grundläggande studier av kemisk speciation i askfraktioner från termisk omvandling av biomassa och restströmmar med särskilt fokus på fosfater och tungmetaller
Title [en]
Fundamental studies of chemical speciation in ash fractions from thermal conversion of biomass and waste streams focusing on phosphates and heavy metals
Abstract [en]
This project uses the synchrotron-based analysis techniques X-ray absorption spectroscopy found at Advanced Light Source, Lawrence Berkeley National Laboratory (LBNL), USA and MAX IV Laboratory to close fundamental knowledge gaps on the chemical environment surrounding phosphorus  and trace elements such as heavy metals in ash fractions. Understanding how phosphorus and heavy metals are present in ash after combustion or gasification of biomass and waste streams is crucial for developing existing models for fuel design in order to affect in which compounds these elements are present. The ultimate goal is to integrate recovery of phosphorus and micronutrients as well as separation of heavy metals in renewable energy production utilizing biomass and waste streams. The project establishes a research track at Umeå University (UmU) dedicated to making synchrotron-based techniques a natural complement to existing in-house analytical methods (X-ray diffraction, energy and wavelength dispersive X-ray spectroscopy) for various materials related to renewable energy. Three longer visits at LBNL, where it is possible to use X-ray energy ranges required for measurements at phosphorus K-edge, are included and supported by LBNL. This ensures that Dr Skoglund has necessary expert support in creating and maintaining this line of research beyond the grant period (2018-2021), and he and the PhD student funded in this grant can adapt expert support roles to other research groups at UmU.
Publications (2 of 2) Show all publications
Elbashir, S., Ramstedt, M., Thyrel, M., Broström, M. & Skoglund, N. (2022). Structural Study On The Chemical Environment Surrounding Phosphorus In Ash Fractions Suitable For Nutrient Recovery. In: ESPC4 & PERM5 2022 – Book of Abstracts: . Paper presented at European Sustainable Phosphorus Conference ESPC4, Vienna, Austria, June 20-22.
Open this publication in new window or tab >>Structural Study On The Chemical Environment Surrounding Phosphorus In Ash Fractions Suitable For Nutrient Recovery
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2022 (English)In: ESPC4 & PERM5 2022 – Book of Abstracts, 2022Conference paper, Poster (with or without abstract) (Refereed)
Abstract [sv]

Nutrient recovery is an integral part of sustainable clean energy production where one of the most important nutrients is phosphorus (P). Phosphorus recovery from biomass and waste ashes has been a hot topic for research and development activities for decades. However, the chemical speciation of heavy metals (HM) that may be included in recovered phosphates is yet to be resolved. Numerous trial and error approachs have been applied to lower the amount of HM content by fuel design and/or additives. Nevertheless, the connection between P and HM is theses complex phosphate systems on the atomic level is not fully understood. Therefore, exploring if HM are associated with phosphates is paramount for creating a naturallink between sustainable energy production and primary production of biomass.

This study aims to examine the formation of different phosphates found in ashes and the potential inclusion of HM in their structures. The inclusion of Zn and Cu in whitlockite phosphates is investigated by powder X-ray diffraction and FTIR/RAMAN spectroscopy to identify possibilities and challenges with direct application of P-rich ash fractions as a nutrient source for plants. These measurements will be complemented by synchrotron-based X-rayabsorption spectroscopy analysis in future work.

National Category
Inorganic Chemistry
Research subject
Inorganic Chemistry
Identifiers
urn:nbn:se:umu:diva-198281 (URN)
Conference
European Sustainable Phosphorus Conference ESPC4, Vienna, Austria, June 20-22
Projects
Bio4energy
Funder
Bio4EnergySwedish Research Council, 2017-05331
Available from: 2022-07-27 Created: 2022-07-27 Last updated: 2022-07-28Bibliographically approved
Falk, J., Skoglund, N., Grimm, A. & Ohman, M. (2020). Systematic Evaluation of the Fate of Phosphorus in Fluidized Bed Combustion of Biomass and Sewage Sludge. Energy & Fuels, 34(4), 3984-3995
Open this publication in new window or tab >>Systematic Evaluation of the Fate of Phosphorus in Fluidized Bed Combustion of Biomass and Sewage Sludge
2020 (English)In: Energy & Fuels, ISSN 0887-0624, E-ISSN 1520-5029, Vol. 34, no 4, p. 3984-3995Article, review/survey (Refereed) Published
Abstract [en]

Comprehensive knowledge concerning the behavior of phosphorus (P) during combustion is necessary to enable more efficient recovery of P from combustion ashes for agricultural purposes. To this end, parameters that influence the distribution and speciation of P in combustion ashes are important because they may influence which ash fractions are suitable for P recovery. This study aims to determine the fate of P as a result of fuel ash composition and chemical association in the fuel during fluidized bed combustion by a systemic review of previous work. The synthesis was performed by comparing scanning electron microscopy–energy-dispersive X-ray spectroscopy and X-ray diffraction chemical analyses of bed ash, fly ash particles, and deposits from fluidized bed combustion of different blends of P-poor (logging residues or wheat straw) and P-rich (sewage sludge, dried distiller’s grain with solubles, or phosphoric acid) fuels and additives. The blends were produced to have a similar ash composition but with a different P source. The distribution of P among ash fractions indicated that P is mainly found in the coarse ash fractions (bed and cyclone ash), irrespective of fuel ash composition or chemical association in the fuel. The chemical speciation of P in coarse ash fractions differed between biomass blends containing sewage sludge compared to blends with phosphoric acid or dried distiller’s grain with solubles. Phosphates in the ash from the two sewage sludge blends included predominantly Ca with minor inclusion of other cations. In contrast, ashes from the blends with phosphoric acid or dried distiller’s grain with solubles contained phosphates with a significant amount of K, Ca, and Mg. The difference in phosphate speciation could not solely be explained by the combustion conditions and the elemental composition of the ash fractions. These results show that it is necessary to consider the chemical association of P in the fuel to predict the type of phosphates that will form in fluidized bed combustion ashes.

Place, publisher, year, edition, pages
American Chemical Society (ACS), 2020
National Category
Bioenergy
Identifiers
urn:nbn:se:umu:diva-170545 (URN)10.1021/acs.energyfuels.9b03975 (DOI)000526324100002 ()2-s2.0-85084672705 (Scopus ID)
Funder
Swedish Research Council Formas, 942-2015-619Swedish Research Council, 2017-05331
Available from: 2020-05-27 Created: 2020-05-27 Last updated: 2023-03-23Bibliographically approved
Principal InvestigatorSkoglund, Nils
Coordinating organisation
Umeå University
Funder
Period
2018-01-01 - 2021-12-31
National Category
Inorganic ChemistryOther Chemistry TopicsEnergy Engineering
Identifiers
DiVA, id: project:1623Project, id: 2017-05331_VR

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