We can't find the internet
Attempting to reconnect
Something went wrong!
Hang in there while we get back on track
0
Article
?
AI-assigned paper type based on the abstract. Classification may not be perfect — flag errors using the feedback button.
Tier 2
?
Original research — experimental, observational, or case-control study. Direct primary evidence.
Detection Methods
Food & Water
Sign in to save
Raman microspectroscopic analysis of fibers in beverages
Analytical Methods
2016
145 citations
?
Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count.
Score: 40
?
0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
Natalia P. Ivleva
Natalia P. Ivleva
Philipp Anger,
Philipp Anger,
Philipp Anger,
Philipp Anger,
Alexandra C. Wiesheu,
Reinhard Nießner,
Natalia P. Ivleva
Philipp Anger,
Reinhard Nießner,
Thomas Baumann,
Natalia P. Ivleva
Philipp Anger,
Natalia P. Ivleva
Philipp Anger,
Alexandra C. Wiesheu,
Alexandra C. Wiesheu,
Philipp Anger,
Philipp Anger,
Philipp Anger,
Thomas Baumann,
Natalia P. Ivleva
Natalia P. Ivleva
Philipp Anger,
Natalia P. Ivleva
Alexandra C. Wiesheu,
Philipp Anger,
Philipp Anger,
Philipp Anger,
Natalia P. Ivleva
Reinhard Nießner,
Reinhard Nießner,
Thomas Baumann,
Thomas Baumann,
Reinhard Nießner,
Reinhard Nießner,
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Reinhard Nießner,
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Reinhard Nießner,
Reinhard Nießner,
Philipp Anger,
Reinhard Nießner,
Natalia P. Ivleva
Reinhard Nießner,
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Philipp Anger,
Alexandra C. Wiesheu,
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Reinhard Nießner,
Reinhard Nießner,
Natalia P. Ivleva
Reinhard Nießner,
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Natalia P. Ivleva
Summary
Researchers demonstrated that Raman microspectroscopy can reliably distinguish between synthetic and natural fibers in beverage samples, providing a rapid method for detecting microplastic fiber contamination in drinks.
Raman microspectroscopy allows us to distinguish between synthetic and natural fibers in beverage samples.
Sign in to start a discussion.