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Titlebook: Engineered Biochar; Fundamentals, Prepar Sudipta Ramola,Dinesh Mohan,Toshiki Tsubota Book 2022 The Editor(s) (if applicable) and The Author

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https://doi.org/10.1007/978-3-322-87185-5al. Due to enhanced surface area, functional groups, mineral content and CEC, it increases the metal adsorption and reduces the labile fractions of heavy metal in soil solution. The impact of biochar in heavy metal dynamics in terms of soil health and plant yield potential is discussed in this chapter.
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Biochar Preparation by Different Thermo-Chemical Conversion Processesinterest in biochar as means for atmospheric carbon removal and sequestration. This chapter provides a brief overview of the different approaches to biochar production, identifying key opportunities and challenges, as well as future directions for research, development, and deployment.
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Biological Treatment for Biochar Modification: Opportunities, Limitations, and Advantagesdigested residue) or in situ (using extracellular enzymes) technologies. The process includes colonization and biofilm formation by microorganisms on biochar surface and attachment of microbes. Biologically modified biochar metabolizes organic/inorganic contaminants and helps in adsorption, biodegradation, and bio-adsorption simultaneously.
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Engineered Biochar as Adsorbent for Removal of Heavy Metals from Soil Mediumal. Due to enhanced surface area, functional groups, mineral content and CEC, it increases the metal adsorption and reduces the labile fractions of heavy metal in soil solution. The impact of biochar in heavy metal dynamics in terms of soil health and plant yield potential is discussed in this chapter.
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Book 2022stic overview for researchers from all related fields. Section 1 and 2 present the pyrolysis process, including the advantages and limitations of the physical, chemical, and biological modification methods and characterization of modified biochar. Section 3 highlights the wide spectrum of applicatio
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Taalontwikkeling bij meertalige kinderen,hanced by the modification of biochar via different methods. This chapter discusses the use of modified biochars as catalysts for environmental remediation, viz. advanced oxidation processes, photocatalysis, and energy generation, viz. biogas, biofuel, and syngas.
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