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Peter de Peinder

Explore the profile of Peter de Peinder including associated specialties, affiliations and a list of published articles. Areas
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Articles 15
Citations 57
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Recent Articles
1.
Riddell L, de Peinder P, Lindner J, Meirer F, Bruijnincx P
Nat Protoc . 2025 Mar; PMID: 40075188
Technical lignins are an industrial byproduct of plant biomass processing, for example, paper production or biorefinery operations. They are highly functional and aromatic, making them potentially suitable for a diverse...
2.
Dorresteijn J, Terlingen B, Bossers K, Jacobs T, Wisse Y, de Peinder P, et al.
J Am Chem Soc . 2025 Feb; 147(7):5642-5648. PMID: 39930550
Typical industrial olefin polymerization processes to produce both commodity and specialty polyolefin grades are mainly based on spherical, heterogeneous catalyst particles. During α-polymerization, heat from the exothermic reaction and pressure...
3.
Bos J, Vloedgraven J, Wiedemann S, van Dongen L, Moonen R, Wels B, et al.
Catal Sci Technol . 2024 Nov; 14(24):7037-7047. PMID: 39610692
C branched saturated fatty acids (BSFA) are used as ingredients in cosmetics and lubricants and are produced the hydrogenation of C branched unsaturated fatty acids (BUFA). Industrial-grade C BUFA contain...
4.
Constant S, Lancefield C, Vogelzang W, Pazhavelikkakath Purushothaman R, Frissen A, Houben K, et al.
Green Chem . 2024 Jul; 26(13):7739-7751. PMID: 38957875
Humins, (side-)products of the acid-catalysed dehydration of carbohydrates, will be produced in substantial quantities with the development of industrial biorefining processes. Most structural knowledge about such humins is based on...
5.
Riddell L, de Peinder P, Polizzi V, Vanbroekhoven K, Meirer F, Bruijnincx P
ACS Sustain Chem Eng . 2024 Jun; 12(23):8968-8977. PMID: 38872958
Recent scientific advances in the valorization of lignin, through e.g., (partial-)catalytic depolymerization, require equally state-of-the-art approaches for the analysis of the obtained depolymerized lignins (DLs) or lignin bio-oils. The use...
6.
Riddell L, Lindner J, de Peinder P, Meirer F, Bruijnincx P
ChemSusChem . 2024 Jan; 17(9):e202301464. PMID: 38194292
To expedite the valorisation of lignin as a sustainable component in materials applications, rapid and generally available analytical methods are essential to overcome the bottleneck of lignin characterisation. Where features...
7.
Smak T, de Peinder P, van der Waal J, Altink R, Vollmer I, Weckhuysen B
ChemSusChem . 2023 Nov; 17(7):e202301198. PMID: 38009265
To reduce the pressure on the environment created by the increasing amount of plastic waste, the need to develop suitable plastic recycling methods has become more evident. However, the chemical...
8.
Bossers K, Mandemaker L, Nikolopoulos N, Liu Y, Rohnke M, de Peinder P, et al.
Nat Commun . 2022 Aug; 13(1):4954. PMID: 36002458
Polyolefin catalysts are characterized by their hierarchically complex nature, which complicates studies on the interplay between the catalyst and formed polymer phases. Here, the missing link in the morphology gap...
9.
Khalili K, de Peinder P, Donkers J, Gosselink R, Bruijnincx P, Weckhuysen B
ChemSusChem . 2021 Nov; 14(24):5517-5524. PMID: 34812582
Technical lignins are increasingly available at industrial scale, offering opportunities for valorization, such as by (partial) depolymerization. Any downstream lignin application requires careful tailoring of structural properties, such as molecular...
10.
Spiess L, de Peinder P, van den Bijgaart H
Foods . 2021 Jun; 10(5). PMID: 34069770
Fourier-transform mid-infrared spectrometry is an attractive technology for screening adulterated liquid milk products. So far, studies on how infrared spectroscopy can be used to screen spectra for atypical milk composition...