Institute of Geographic Sciences and Natural Resources Research, Chinese Academy of Sciences, Beijing, 100101, China; Department of Land, Air and Water Resources, University of California, Davis, CA, 95616, USA.
Department of Land, Air and Water Resources, University of California, Davis, CA, 95616, USA.
Environ Pollut. 2020 Jun;261:114157. doi: 10.1016/j.envpol.2020.114157. Epub 2020 Feb 11.
Effective and economically viable method to remove elevated metal(loid)s from farm and industrial lands remains a major challenge. In this study, magnetic biochar-based adsorbents with FeO particles embedded in a porous biochar matrix was synthesized via iron (Fe) treated biochar or thermal pyrolysis of Fe treated cedar sawdust. Application and separation of the adsorbent to a multi-contaminated soil slurry simultaneously removed 20-30% of arsenic, cadmium and lead within 24 h. Fast removal of multi-metal(loid)s result from the decrease in all operationally defined fractions of metal(loid)s, not limited to the exchangeable fraction. The direct removal of arsenic-enriched soil particles was observed via micro X-ray fluorescence maps. Furthermore, through comparison of biochars with different production methods, it has been found that magnetization after pyrolysis treatment leads to stronger metals/metalloids adsorption with a higher q (bound sorbate) than other treatments but pyrolysis after magnetization stabilized Fe oxides on the biochar surface, indicating a higher biochar recovery rate (∼65%), and thus a higher metal(loid)s removal efficiency. The stability of Fe oxides on the surface of biochar is the determining factor for the removal efficiency of metal(loid)s from soil.
从农田和工业用地中有效且经济可行地去除重金属(类金属)仍然是一个主要挑战。在这项研究中,通过铁(Fe)处理的生物炭或 Fe 处理的雪松木屑的热解,合成了具有嵌入多孔生物炭基质中的 FeO 颗粒的基于磁性生物炭的吸附剂。吸附剂在多污染土壤浆中的应用和分离在 24 小时内同时去除了 20-30%的砷、镉和铅。多金属(类金属)的快速去除源于所有操作定义的金属(类金属)形态的减少,而不仅限于可交换形态。通过微 X 射线荧光图谱观察到富砷土壤颗粒的直接去除。此外,通过比较不同生产方法的生物炭,发现与其他处理相比,热解处理后的磁化导致更强的金属/类金属吸附,具有更高的 q(结合吸附质),但磁化后的热解在生物炭表面稳定了 Fe 氧化物,表明更高的生物炭回收率(约 65%),从而具有更高的金属(类金属)去除效率。Fe 氧化物在生物炭表面的稳定性是土壤中金属(类金属)去除效率的决定因素。