Heavy metal pollution in the aquatic environment: efficient and low-cost removal approaches to eliminate their toxicity: a review

Загрязнение водной среды тяжелыми металлами: эффективные и недорогие подходы к удалению, направленные на устранение их токсичности: обзор
Kosar Hikmat Hama Aziz, Fryad S. Mustafa, Khalid M. Omer, Sarkawt Hama, Rebaz F. Hamarawf, Kaiwan Othman Rahman
2023-01-01

advanced oxidation processesbiochar adsorptionheavy metal pollutionnatural zeolite ion exchangewastewater treatment
Heavy metal contamination of water sources has emerged as a major global environmental concern, threatening both aquatic ecosystems and human health. Heavy metal pollution in the aquatic environment is on the rise due to industrialization, climate change, and urbanization. Sources of pollution include mining waste, landfill leachates, municipal and industrial wastewater, urban runoff, and natural phenomena such as volcanic eruptions, weathering, and rock abrasion. Heavy metal ions are toxic, potentially carcinogenic, and can bioaccumulate in biological systems. Heavy metals can cause harm to various organs, including the neurological system, liver, lungs, kidneys, stomach, skin, and reproductive systems, even at low exposure levels. Efforts to find efficient methods to remove heavy metals from wastewater have increased in recent years. Although some approaches can effectively remove heavy metal contaminants, their high preparation and usage costs may limit their practical applications. Many review articles have been published on the toxicity and treatment methods for removing heavy metals from wastewater. This review focuses on the main sources of heavy metal pollution, their biological and chemical transformation, toxicological impacts on the environment, and harmful effects on the ecosystem. It also examines recent advances in cost-effective and efficient techniques for removing heavy metals from wastewater, such as physicochemical adsorption using biochar and natural zeolite ion exchangers, as well as decomposition of heavy metal complexes through advanced oxidation processes (AOPs). Finally, the advantages, practical applications, and future potential of these techniques are discussed, along with any challenges and limitations that must be considered.
1
Advanced oxidation processes can decompose heavy metal complexes and represent an additional efficient treatment strategy.
2
Heavy metal ions are toxic, potentially carcinogenic, and bioaccumulative, harming aquatic ecosystems and multiple human organs even at low exposure levels.
3
Heavy metal pollution in aquatic environments is increasing due to industrialization, climate change, urbanization, and diverse industrial, municipal, and natural sources.
4
Practical adoption of heavy metal removal technologies is constrained by preparation and operating costs, as well as unresolved implementation challenges and limitations.
5
The review evaluates cost-effective wastewater treatment approaches, emphasizing adsorption with biochar and natural zeolite ion exchangers.

heavy metal contamination and pollution in aquatic environments and wastewater

the sources, transformations, toxicological and ecological impacts, and efficient low-cost removal of heavy metals

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2023-01-01
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Kosar Hikmat Hama Aziz
Fryad S. Mustafa
Khalid M. Omer
Sarkawt Hama
Rebaz F. Hamarawf
Kaiwan Othman Rahman
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