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Home SCIENCE NEWS Space & Planetary Science

New sorbent removes maximum copper and zinc from water

March 22, 2022
in Space & Planetary Science
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An international team of scientists led by researchers at the Ural Federal University has synthesized a new sorbent with unique capabilities. It’s remove heavy metals such as copper and zinc from water solutions. And it can be used for effective treatment of heavy metal ions from mine, ore water, industrial wastewater, and drinking water. An article describing the results was published in the International Journal of Molecular Sciences.

Asmaa Abu El-Soad and Elena Kovaleva

Credit: UrFU / Ilya Safarov

An international team of scientists led by researchers at the Ural Federal University has synthesized a new sorbent with unique capabilities. It’s remove heavy metals such as copper and zinc from water solutions. And it can be used for effective treatment of heavy metal ions from mine, ore water, industrial wastewater, and drinking water. An article describing the results was published in the International Journal of Molecular Sciences.

“The basis of the synthesized sorbent is chitosan. It is a natural biopolymer that is obtained by alkaline treatment of chitin, which is found in algae and yeast and is a major component of the cell walls of fungi, arthropod exoskeletons and other invertebrates. Chitin is one of the most abundant renewable materials on Earth. Studies conducted by me and my students in Rwanda showed that the most accessible source of chitin, in addition to expensive crustacean shells, are insect organisms, which can be bred specifically to produce chitin biomass,” says Elena Kovaleva, head of the research group, professor at the UrFU Organic Synthesis Laboratory.

Chitosan itself has pronounced adsorption properties because it contains amino and hydroxyl groups that easily form complexes with metal ions. Chemists have improved the adsorption properties of chitosan by crosslinked it with glutaraldehyde and epichlorohydrin and by further modification with diethylentriamine and addition of monochloroacetic acid.

“In a series of experiments, we found that the most productive processes of adsorption of copper and zinc ions proceed at room temperature and the pH of aqueous solutions equal to 3.5. The maximum, 60%, adsorption of copper and zinc ions from aqueous solution occurred within 40 minutes in the first case and 60 minutes in the second. Thus, our modified chitosan demonstrated better adsorption characteristics compared with such well-known sorbents as activated carbon, bentonite, shabasite, cellulose, rice husk, and others,” reports the main performer of the research project, researcher at UrFU Asmaa Abu El-Soad.

At the second stage of the work, the research group, which included scientists from Egypt, Italy, Saudi Arabia, and Jordan in addition to the UrFU staff, regenerated the modified sorbent by desorbing copper and zinc ions. As a result of experiments, scientists found that the removal of the largest amount of copper ions from chitosan is provided by solutions with certain concentrations of nitric acid. The same effect in the case of zinc ions is produced by urea.

“In other words, the sorbent we obtained is reusable. The copper and zinc extracted as a result of the adsorption and desorption cycle will return to industrial production. Thus, the technology of cleaning industrial waste water, as well as drinking water with our sorbent will be environmentally friendly and cost-effective,” emphasizes Elena Kovaleva.

Note

Copper and zinc, like mercury, lead, arsenic, and some other chemical elements, are heavy metals. Large amounts of heavy metals are found in industrial effluents, which can cause contamination of water resources. Copper and zinc are very toxic to drinking water, despite their importance to industrial and agricultural processes. Excessive copper consumption causes high blood pressure, kidney and liver damage, respiratory disease and seizures. Excessive zinc can cause stomach disease, skin irritation, seizures and anemia. For this reason, over the past few decades, science has focused on the task of removing these contaminants from water.



Journal

International Journal of Molecular Sciences

DOI

10.3390/ijms23042396

Article Title

Chitosan Functionalized with Carboxyl Groups as a Recyclable Biomaterial for the Adsorption of Cu (II) and Zn (II) Ions in Aqueous Media

Article Publication Date

21-Feb-2022

Tags: coppermaximumremovessorbentwaterzinc
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