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Biochar : A Review of its History, Characteristics, Factors that Influence its Yield, Methods of Production, Application in Wastewater Treatment and Recent Development

Biointerface Research in Applied Chemistry 2021 48 citations ? Citation count from OpenAlex, updated daily. May differ slightly from the publisher's own count. Score: 40 ? 0–100 AI score estimating relevance to the microplastics field. Papers below 30 are filtered from public browse.
D Liu, Nur Salsabila Kamarudin, Edza Aria Wikurendra, Y Chen, Edza Aria Wikurendra, H Wang, Naimah Ibrahim, Naimah Ibrahim, Naimah Ibrahim, Naimah Ibrahim, Naimah Ibrahim, Naimah Ibrahim, Farrah Aini Dahalan, Farrah Aini Dahalan, Edza Aria Wikurendra, Khalida Muda, Farrah Aini Dahalan, Farrah Aini Dahalan, Masitah Hasan, Farrah Aini Dahalan, M Fujii, Farrah Aini Dahalan, Edza Aria Wikurendra, Masitah Hasan, Ong Soon An, Ong Soon An, Khalida Muda, Khalida Muda, Farrah Aini Dahalan, Masitah Hasan, N. A. Parmin, J Lehmann, Masitah Hasan, D Duan, H Wang, Naimah Ibrahim, Masitah Hasan, Naimah Ibrahim, Myzairah Hamdzah, Y Chen, Nor Azimah, Y Chen, Nor Azimah, C Lin, M Yang, Mohd Zain, A Kumar, Khalida Muda, Khalida Muda, J Baker, Edza Aria Wikurendra, A Kumar, H Lu, T Bhattacharya, Y Chen, A Kumar, Khalida Muda, K Spokas, W Koskinen, J Baker, N Bolan, D Reicosky, X Cao, J Shen, L Ma, J Baker, Y Liang, B Gao, H Wang, Y Chen, W Harris, Z Tan, C Lin, N Bolan, X Ji, Y Chen, N Bolan, T Rainey, Y Ok, K Lu, Y Ok, X Yang, N Bolan, N Bolan, J Shen, Y Chen, Y Ok, B Robinson, H Huang, K Lu, C Lian, D Liu, W Wu, W Harris, N Bolan, J Pei, H Wang, T Xu, L Lou, H Lu, L Luo, R Cao, M Chen, Y Chen, D Duan, Y Chen, A Kumar, S Joseph, D Liu, Y Chen, R Cao, C Han, S Shackley, S Carter, T Knowles, E Middelink, Y Chen, S Haefele, H Huang, S Sohi, H Lu, A Cross, S Haszeldine, X Yang, S Jeffery, D Liu, S Abiven, M Schimdt, A Bastos, H Wang, J Shen, S Joseph, W Wu, W Wu, M Yang, Q Feng, X Yang, Y Liang, J Hunt, H Huang, K Mcgrouther, H Wang, B Gao, H Lu, X Yang, Y Chen, L Ma, J Hunt, S Jeffery, F Verheijen, B Singh, M Velde, J Lehmann, A Bastos, R Kookana, A Sarmah, L Van-Zwieten, Y Chen, E Krull, Y Chen, B Singh, M Chen, J Lehmann, Y Chen, C Han, Y Chen, Y Awad, E Blagodatskaya, D Liu, B Singh, Y Ok, Y Kuzyakov, B Singh, C Han, H Wang, F Chen, C Lian, Y Chen, D Liu, R Liang, T Gao, W Liang, W Wu, B Singh, M Chen, W Wu, A Luo, B Gao, M Yang, T Gao, H Lu, A Kumi, Y Chen, Y Chen, M G; Ibrahim, M G; Nasr, Y Chen, J Baker, B Singh, M Fujii, B Lap, N Thinh, X Yang, Y Chen, N Hung, N Nam, Y Chen, H Dang, H Ba, N Ky, H Tuan, H Wang, Y Chen, J Hunt, M Duponte, D Sato, A Kawabata

Summary

This review examines biochar's history, physicochemical properties, production methods, and applications in wastewater treatment, highlighting its high porosity and diverse functional groups that enable effective adsorption of contaminants including heavy metals and organic pollutants.

Study Type Environmental

Biochar can alleviate several issues, and it should also be inexpensive to produce. Most biochars have a high pore structure and diverse functional groups that assist in the adsorption process. Due to the attributed properties of biochar, several studies have demonstrated that biochar is getting more attention for its efficiency in facilitating wastewater treatment. However, to ensure the feasibility of biochar in wastewater treatment, the factors involved in the preparation of biochar that influences its characteristics and adsorption capacity must be understood. This study reviews the history, characteristics, factors that influence its yield, production methods, application, and recent development of biochar in wastewater treatment.

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