Ahuja Radha, Kalia Anu, Sikka Rajeev, P Chaitra
Department of Soil Science, Punjab Agricultural University, Ludhiana, Punjab 141004, India.
Electron Microscopy and Nanoscience Laboratory, Department of Soil Science, Punjab Agricultural University, Ludhiana, Punjab 141004, India.
ACS Omega. 2022 Dec 9;7(50):45825-45836. doi: 10.1021/acsomega.2c05117. eCollection 2022 Dec 20.
Biochar (BC) is a carbon-rich material that can be obtained by thermal decomposition of agricultural solid waste under oxygen-limited conditions. It has received increasing attention as a cost-effective sorbent to treat metal-contaminated water due to attributes such as high porosity and the presence of various functional groups. The heavy metal (HM) sorption and removal capacity of BC can be enhanced by developing novel biochar nanohybrids (BNHs) that can be produced via surface modification of BC with nanomaterials. Loading of nanomaterials on the biochar surface can improve its physicochemical properties through alterations in the functional group profile, porosity, and availability of active sites on the BC surface which can enhance the HM adsorption ability. This manuscript provides information on preparation of nano-based biochar hybrids emanating from the type of modifying agent for the removal of different HM ions from wastewaters, and the underlying mechanisms have been discussed. Further, this compilation discusses published literature depicting the influence of different processes of preparation on the physicochemical properties and adsorption capacity of nanobiochar hybrids. The potential risks of BNHs have been reviewed to effectively avoid the possible harmful impacts on the environment, and future research directions have been proposed.
生物炭(BC)是一种富含碳的材料,可通过在氧气受限条件下对农业固体废物进行热分解获得。由于具有高孔隙率和存在各种官能团等特性,它作为一种经济高效的吸附剂用于处理金属污染水受到了越来越多的关注。通过开发新型生物炭纳米杂化物(BNHs)可以提高生物炭对重金属(HM)的吸附和去除能力,这些杂化物可通过用纳米材料对生物炭进行表面改性来制备。纳米材料负载在生物炭表面可以通过改变官能团分布、孔隙率以及生物炭表面活性位点的可用性来改善其物理化学性质,从而增强对重金属的吸附能力。本手稿提供了有关基于纳米的生物炭杂化物制备的信息,这些杂化物源自用于从废水中去除不同重金属离子的改性剂类型,并讨论了其潜在机制。此外,本综述讨论了已发表的文献,这些文献描述了不同制备过程对纳米生物炭杂化物物理化学性质和吸附能力的影响。对生物炭纳米杂化物的潜在风险进行了综述,以有效避免对环境可能产生的有害影响,并提出了未来的研究方向。