Contaminant immobilization and nutrient release by biochar soil amendment: Roles of natural organic matter

生物炭 修正案 环境化学 化学 磷酸 烧焦 环境修复 活性炭 热解 有机质 家禽粪便 吸附 硫黄 碳化 腐植酸 木炭 吸附 污染 营养物 有机化学 肥料 生态学 法学 政治学 生物
作者
Minori Uchimiya,Isabel M. Lima,K. Thomas Klasson,Lynda H. Wartelle
出处
期刊:Chemosphere [Elsevier]
卷期号:80 (8): 935-940 被引量:477
标识
DOI:10.1016/j.chemosphere.2010.05.020
摘要

Contamination of soil interstitial waters by labile heavy metals such as Cu(II), Cd(II), and Ni(II) is of worldwide concern. Carbonaceous materials such as char and activated carbon have received considerable attention in recent years as soil amendment for both sequestering heavy metal contaminants and releasing essential nutrients like sulfur. Information is currently lacking in how aging impacts the integrity of biochars as soil amendment for both agricultural and environmental remediation purposes. Major contributors to biochar aging in soils are: sorption of environmental constituents, especially natural organic matter (NOM), and oxidation. To investigate the impact of NOM and organic fractions of chars, we employed broiler litter-derived chars and steam-activated carbons that underwent varying degrees of carbonization, in the presence and absence of NOM having known carboxyl contents. For aging by oxidation, we employed phosphoric acid activated carbons that underwent varying degrees of oxidation during activation. The results suggest that the organic fractions of biochars, and NOM having high carboxyl contents can mobilize Cu(II) retained by alkaline soil. Base treatment of broiler litter-derived char formed at low pyrolysis temperature (350 degrees C) improved the immobilization of all heavy metals investigated, and the extent of immobilization was similar to, or slightly greater than pecan shell-derived phosphoric acid activated carbons. Portions of total sulfur were released in soluble form in soil amended with broiler litter-derived carbons, but not pecan shell-derived phosphoric acid activated carbons.

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