Mechanisms and adsorption capacities of biochar for the removal of organic and inorganic pollutants from industrial wastewater
Механизмы и адсорбционная способность биоугля при удалении органических и неорганических загрязнителей из промышленных сточных вод
2020-12-26
SCID: 54.1/gq7kzeys
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adsorption mechanismsbiochar adsorptionindustrial wastewaterorganic and inorganic pollutantsphotocatalytic degradation
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Abstract (AI)
Abstract Currently, due to the rapid growth of urbanization and industrialization in developing countries, a large volume of wastewater is produced from industries that contain chemicals generating high environmental risks affecting human health and the economy if not treated properly. Consequently, the development of a sustainable low-cost wastewater treatment approach has attracted more attention of policymakers and scientists. The present review highlights the recent applications of biochar in removing organic and inorganic pollutants present in industrial effluents. The recent modes of preparation, physicochemical properties and adsorption mechanisms of biochar in removing organic and inorganic industrial pollutants are also reviewed comprehensively. Biochar showed high adsorption of industrial dyes up to 80%. It also discusses the recent application and mechanism of biochar-supported photocatalytic materials for the degradation of organic contaminants in wastewater. We reviewed also the possible optimizations (such as the pyrolysis temperature, solution pH) allowing the increase of the adsorption capabilities of biochar leading to organic contaminants removal. Besides, increasing the pyrolysis temperature of the biochar was seen to lead to an increase in its surface area, while it decreases their amount of oxygen-containing functional groups, consequently leading to a decrease in the adsorption of metal (loid) ions present in the medium. Finally, the review suggests that more research should be carried out to optimize the main parameters involved in biochar production and its regeneration methods. Future efforts should be also carried out towards process engineering to improve its adsorption capacity to increase the economic benefits of its implementation.
Key Findings
1
Biochar achieves adsorption of industrial dyes up to 80%, demonstrating substantial removal potential for organic contaminants.
2
Biochar is reviewed as a sustainable, low-cost adsorbent for removing organic and inorganic pollutants from industrial wastewater.
3
Biochar preparation methods, physicochemical properties, adsorption mechanisms, and pollutant-removal applications are comprehensively examined.
4
Biochar-supported photocatalytic materials can facilitate degradation of organic wastewater contaminants beyond adsorption alone.
5
Increasing pyrolysis temperature raises biochar surface area but reduces oxygen-containing functional groups, decreasing adsorption of metal(loid) ions.
6
Optimizing pyrolysis temperature, solution pH, regeneration, and process engineering is necessary to improve capacity and economic feasibility.
Research Object
Biochar used for treating industrial wastewater containing organic and inorganic pollutants
Research Subject
Adsorption capacity, physicochemical properties, pollutant-removal mechanisms, and optimization of biochar preparation and operating conditions, including pyrolysis temperature and solution pH
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2020-12-26
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