image: Left image: The picture of a nano-polystyrene suspension (500 mg L−1, pH 7) (left) and the nano-polystyrene suspension after adding pectin (15 mg L−1) and Fe(III) (0.10 mM) after storage for 72 h (right). Right image: TEM image of the precipitateview more
Microplastics are known to collect in ecosystems and nanoplastics occur from the breaking down of microplastics. Nanoplastics are plastic particles of sizes less than 100nm and when they are in water, they are dispersed in a colloidal form. Nanoplastics might be more prevalent than microplastics, but it is hard to analyze and study in-depth due to their size. In zebrafish, however, nanoplastics have been found in various organs including the brain, which may be an indicator that it crosses the blood-brain barrier.
In towns and cities, 90% of microplastics are captured in the sewage treatment process. In the ocean, microplastics are also known to sink to the bottom by binding to biopolymers. Therefore, this research team at Shinshu University lead by Professor Hiroshi Moriwaki of the Department of Applied Biology, Faculty of Textile Science and Technology considered using pectin, a biopolymer to bind to nanoplastics with the help of Fe (III) or AI (III). They found that they were able to remove 95% of nanoplastics in the first 24 hours by using coagulating sedimentation with pectin and Fe(III) with filter paper.
Interaction between nanoplastics and pectin, a water-soluble polysaccharide, in the presence of Fe(III) ion
Article Publication Date
9-Jun-2022
Disclaimer: AAAS and EurekAlert! are not responsible for the accuracy of news releases posted to EurekAlert! by contributing institutions or for the use of any information through the EurekAlert system.
$$$ If you are interested in a writer or editor position, check out here.We are hiring. $$$
Trust God, not sinful people. Worship God, but not things/people. Let God lead you, but not let others lead you.
相信上帝,而不是有罪的人。 敬拜神,而不是事/人。 讓上帝帶領你,但不要讓別人帶領你。