Dep. of Agricultural, Forest and Food Sciences, Univ. of Turin, Largo Paolo Braccini 2, Grugliasco, TO, 10095, Italy.
Geological Institute of Romania, Str. Caransebes 1, Sector 1, Bucharest, 012271, Romania.
J Environ Qual. 2020 Nov;49(6):1655-1666. doi: 10.1002/jeq2.20145. Epub 2020 Nov 1.
The hazardous effects of arsenic are closely linked to its speciation and interaction with different soil minerals, which influence both As mobility and bioavailability. Adsorption onto iron (oxyhydr)oxides is one of the main processes controlling the partitioning of arsenite [As(III)] and arsenate [As(V)] between aqueous and solid phases. Arsenic retention can be affected by changes in soil pH and the presence of competing anions, like phosphate. Although competition with inorganic phosphorus (P) for sorption sites on mineral surfaces has been widely studied, little is known about the interactions with organic P (P ) compounds, in particular inositol phosphates, even though they may represent a large fraction of total soil P. We quantified the effects of myo-inositol hexaphosphate (InsP6) on the adsorption and retention of As(III) and As(V) on goethite as influenced by pH, the order of anion addition, and residence time. The efficiency of InsP6 in displacing adsorbed As(III) decreased with increasing pH values and interaction time, which may be attributed to the increase in bonding strength of the As(III) complexes on the surface of goethite. Adsorption and retention of As(V) by goethite generally decreased with increasing pH, particularly in the presence of InsP6 due to the similar pK values and the competition for the same binding sites. The addition of InsP6 before, together with, or after adsorption of As(III) and As(V) strongly reduced the amounts of sorbed As, suggesting that the addition of P -rich matrices to As-contaminated soils may strongly enhance As mobility.
砷的有害影响与其形态和与不同土壤矿物质的相互作用密切相关,这影响了砷的迁移性和生物可利用性。吸附到铁(氢)氧化物上是控制亚砷酸盐 [As(III)] 和砷酸盐 [As(V)] 在水相和固相之间分配的主要过程之一。砷的保留会受到土壤 pH 值变化和竞争阴离子(如磷酸盐)的影响。尽管已经广泛研究了矿物表面上吸附位点与无机磷 (P) 的竞争,但对于与有机磷 (P) 化合物的相互作用,特别是肌醇六磷酸 (InsP6),知之甚少,尽管它们可能代表土壤总磷的很大一部分。我们量化了 InsP6 对 pH 值、阴离子添加顺序和停留时间影响下针铁矿吸附和保留 As(III) 和 As(V) 的影响。InsP6 取代吸附的 As(III) 的效率随着 pH 值和相互作用时间的增加而降低,这可能归因于针铁矿表面上 As(III) 配合物的键合强度增加。随着 pH 值的增加,针铁矿对 As(V)的吸附和保留通常会降低,特别是在存在 InsP6 的情况下,这是由于相似的 pK 值和对相同结合位点的竞争。在吸附 As(III) 和 As(V) 之前、同时或之后添加 InsP6 会强烈减少吸附的 As 量,这表明向含砷土壤中添加富含 P 的基质可能会强烈增强 As 的迁移性。