Stability of Ferrihydrite–Humic Acid Coprecipitates under Iron-Reducing Conditions

铁酸盐 缺氧水域 化学 腐植酸 溶解有机碳 环境化学 总有机碳 水溶液 氧化铁 有机质 针铁矿 碳纤维 氧化物 核化学 无机化学 吸附 有机化学 复合材料 复合数 材料科学 肥料
作者
Jacqueline Mejia,Shaomei He,Yu Yang,Matthew Ginder‐Vogel,Eric Roden
出处
期刊:Environmental Science & Technology [American Chemical Society]
卷期号:52 (22): 13174-13183 被引量:57
标识
DOI:10.1021/acs.est.8b03615
摘要

Recent studies have suggested the potential for release of iron (hydr)oxide-bound organic carbon (OC) during dissimilatory iron oxide reduction (DIR). However, the stability of iron (hydr)oxide-bound OC in the presence of a natural microbial consortium capable of driving both OC metabolism and DIR has not been resolved. Pure ferrihydrite (Fhy) and Fhy–humic acid coprecipitates (Fhy-HA) were inoculated with a small quantity of freshwater sediment and incubated under anoxic conditions in the presence and absence of H 2 or glucose as electron donors for DIR. H 2 promoted DIR led to release of ca. 1 mM dissolved organic carbon (DOC). However, comparable amounts of DOC were released from both pure Fhy and Fhy-HA, similar to DOC levels in mineral-free, inoculum-only controls. These results suggest that the observed DOC release during H 2 -promoted DIR originated from OC contained in the inoculum as opposed to the much larger pool (ca. 38 mM) of OC in the Fhy-HA. Thus, DIR preferentially released sorbed OC with low aromaticity (inoculum OC) versus highly aromatic OC (HA) coprecipitated with iron oxide. Our findings provide new insight into the extent and mechanisms by which DIR is likely to influence aqueous/solid-phase OC partitioning in anoxic soils and sediments.
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