Department of Environmental Engineering, Helmholtz Centre for Environmental Research - UFZ, D-04318 Leipzig, Germany.
Department of Environmental Engineering, Helmholtz Centre for Environmental Research - UFZ, D-04318 Leipzig, Germany.
Chemosphere. 2022 Nov;307(Pt 4):136079. doi: 10.1016/j.chemosphere.2022.136079. Epub 2022 Aug 19.
Functional colloidal carbon materials find various applications, including the remediation of contaminated water and soil in so-called particle-based in-situ remediation processes. In this study, uniform and highly dispersible micro-sized carbonaceous spheres (CS) were generated by hydrothermal carbonization (HTC) of sucrose in the presence of carboxymethyl cellulose (CMC) as environmentally friendly polyelectrolyte stabilizer. In order to ensure their optimal subsurface delivery and formation of a self-contained treatment zone, a narrow size distribution and low agglomeration tendency of the particles is desired. Therefore, the obtained CS were thoroughly characterized and optimized with respect to their colloidal properties which are a crucial factor for their application as quasi-liquid sorbent. The as-prepared uniform CS are readily dispersible into single particles in water as confirmed by digital microscopy and form stable suspensions. Due to their perfectly spherical shape, particle sedimentation in aqueous suspensions is well predicted by Stokes' law. High sorption coefficients on the synthesized CS K were determined for phenanthrene (up to log (K/[L kg]) = 5) and other hydrophobic groundwater contaminants. This confirms the application potential of the CS, which were prepared by an economic low-temperature process using sucrose as bio-based precursor, for generating in-situ sorption barriers for groundwater and soil remediation.
功能胶体碳材料有各种应用,包括在所谓的基于颗粒的原位修复过程中修复受污染的水和土壤。在这项研究中,通过在羧甲基纤维素(CMC)存在下的水热碳化(HTC)将蔗糖转化为均匀且高度分散的微尺度碳质球(CS),CMC 作为环保的聚电解质稳定剂。为了确保它们在地下的最佳输送和自成一体的处理区的形成,希望颗粒具有较窄的粒径分布和较低的团聚趋势。因此,对所获得的 CS 进行了彻底的表征,并优化了其胶体性质,这是将其用作类液体吸附剂的关键因素。通过数字显微镜证实,所制备的均匀 CS 很容易在水中分散为单个颗粒,并形成稳定的悬浮液。由于其完美的球形形状,水悬浮液中的颗粒沉降很好地符合 Stokes 定律。在合成 CS K 上测定了对菲(高达 log(K/[L kg])= 5)和其他疏水性地下水污染物的高吸附系数。这证实了 CS 的应用潜力,CS 是通过使用蔗糖作为生物基前体的经济低温工艺制备的,可用于生成地下水和土壤修复的原位吸附屏障。