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Woman drinking bottled water. Scientists studying how tiny particles of plastic affect our everyday lives say that the amount of nanoplastics found in bottled water is between 10 to 100 times ...
In a trailblazing study, researchers have discovered bottled water sold in stores can contain 10 to 100 times more bits of plastic than previously estimated — nanoparticles so infinitesimally ...
A 2018 study found that tap water has fewer microplastics than bottled water, making it a likely better bet. Filtering your water is another possible way to decrease microplastics in drinking ...
Tiny particles known as microplastics (MPs), have been found in various environmental and biological matrices, including air, water, food, and human tissues. MPs, defined as plastic fragments smaller than 5 millimeter (mm), and even smaller particles such as nanoplastics (NPs), particles smaller than 1000 nanometer (nm) in diameter (0.001 mm or ...
In one study, 93% of the bottled water from 11 different brands showed microplastic contamination. Per liter, researchers found an average of 325 microplastic particles. [73] Of the tested brands, Nestlé Pure Life and Gerolsteiner bottles contained the most microplastic with 930 and 807 microplastic particles per liter (MPP/L), respectively. [73]
A 2017 study found that 83% of tap water samples taken around the world contained plastic pollutants. [ 96 ] [ 97 ] This was the first study to focus on global drinking water pollution with plastics, [ 98 ] and showed that with a contamination rate of 94%, tap water in the United States was the most polluted, followed by Lebanon and India .
Even if the plaintiffs did have health problems linked to microplastics, these particles are ubiquitous; it would be nearly impossible to isolate the effects from drinking microplastics in bottled ...
Nanotechnology is useful in regards to remediation, desalination, filtration, purification and water treatment. The main features that make nanoparticles effective for water treatment are More surface area; Small volume; The higher the surface area and volume, the particles become stronger, more stable and durable