Toxicity mechanisms of photodegraded polyvinyl chloride nanoplastics on pea seedlings
Author:
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s11783-024-1809-2.pdf
Reference79 articles.
1. AbdElgawad H, Farfan-Vignolo E R, Vos D D, Asard H (2015). Elevated CO2 mitigates drought and temperature-induced oxidative stress differently in grasses and legumes. Plant Science, 231: 1–10
2. Anthony B M, Chaparro J M, Prenni J E, Minas I S (2023). Carbon sufficiency boosts phenylpropanoid biosynthesis early in peach fruit development priming superior fruit quality. Plant Physiology and Biochemistry, 196: 1019–1031
3. Arp H P H, Kuhnel D, Rummel C, Macleod M, Potthoff A, Reichelt S, Rojo-Nieto E, Schmitt-Jansen M, Sonnenberg J, Toorman E, et al. (2021). Weathering plastics as a planetary boundary threat: exposure, fate, and hazards. Environmental Science & Technology, 55(11): 7246–7255
4. Bandow N, Will V, Wachtendorf V, Simon F G (2017). Contaminant release from aged microplastic. Environmental Chemistry, 14(6): 394–405
5. Besseling E, Redondo-Hasselerharm P, Foekema E M, Koelmans A A (2019). Quantifying ecological risks of aquatic micro- and nanoplastic. Critical Reviews in Environmental Science and Technology, 49(1): 32–80
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