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The influence of redox potential on speciation of metals and nutrients in compost-amended upland and wetland soils.

机译:氧化还原电势对堆肥改良的旱地和湿地土壤中金属和养分形态的影响。

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Increasingly, municipal solid waste (MSW) and sewage sludge composts containing heavy metals are being applied to agricultural lands. Agricultural soils may experience wide seasonal fluctuations in redox potential with a potential to change metal mobility. To assess the influence of redox potential on the speciation of metals (Cd, Cu, Ni, Pb and Zn) and elements regulating metal behavior (Fe, Mn, Al, P and S) in two soils (Typic Fragiaquept and Aeric Fragiochrept) amended with sewage sludge and MSW composts, metals and regulating elements were sequentially extracted from soil-water slurries maintained at four redox levels ({dollar}-{dollar}200, 0, +225 and +450 mV). Results indicated that redox-induced changes in the physical and chemical characteristics of compost-amended soils strongly influence metal speciation and availability.; Oxides of Fe, Mn and Al in soils and composts control metal behavior through chemisorption. However, oxide quantities in the compost-amended soils generally responded to redox potential changes, suggesting that metal sorption capacities may change with soil oxidation conditions. Phosphorus concentrations were high in the sewage sludge compost, and soluble P levels were elevated under reduced conditions to levels of environmental concern. Both composts contributed significant amounts of soluble sulfur, but the sewage compost sulfur was apparently non-reducible and thus would not be involved in control of metal availability under reduced conditions through formation of insoluble metal sulfides.; Soluble and exchangeable metal concentrations generally increased with oxidation, peaking at an Eh of +225mV. This was attributed to dissolution of insoluble metal-sulfides and metal-organic matter complexes formed under reduced conditions. Significantly, field measurements indicated that redox conditions in the Fragiaquept were close to the +225mV level for a significant portion of the year. Changes with oxidation in soluble+exchangeable and organic-bound metal concentrations in the sewage sludge compost treatments suggested that organic matter in this compost was more easily degraded than soil or MSW organic matter. Further, degradation contributed soluble organic matter which complexed and solubilized metals.; During this investigation, it was noted that methods typically used to evaluate Pt redox electrodes could not discriminate between functioning and non-functioning electrodes. A test method using soil-water slurries was developed, evaluated and found to effectively screen Pt electrodes.
机译:越来越多的城市固体废物(MSW)和含重金属的污水污泥堆肥被用于农田。农业土壤的氧化还原电位可能会出现较大的季节性波动,并可能改变金属的迁移率。为了评估氧化还原电势对两种土壤(典型的Fragiaquept和Aeric Fragiochrept)中的金属(Cd,Cu,Ni,Pb和Zn)和调节金属行为的元素(Fe,Mn,Al,P和S)的形态的影响,利用污水污泥和MSW堆肥,依次从保持在四个氧化还原水平(200、0,+ 225和+450 mV)的土壤-水泥浆中提取金属和调节元素。结果表明,氧化还原引起的堆肥改良土壤的物理和化学特性变化强烈影响金属形态和有效性。土壤和堆肥中的铁,锰和铝的氧化物通过化学吸附控制金属行为。然而,堆肥改良土壤中的氧化物含量通常对氧化还原电势变化有反应,这表明金属吸附能力可能随土壤氧化条件而变化。污水污泥堆肥中的磷浓度很高,并且在减少的条件下可溶磷水平升高至环境关注水平。两种堆肥贡献了大量的可溶性硫,但是污水堆肥显然不可还原,因此不会通过形成不溶性金属硫化物而在还原条件下控制金属的利用率。可溶性和可交换金属浓度通常随氧化而增加,在+ 225mV的Eh达到峰值。这归因于在还原条件下形成的不溶性金属硫化物和金属-有机物复合物的溶解。值得注意的是,现场测量表明,Fragiaquept中的氧化还原条件在一年中的大部分时间内都接近+ 225mV的水平。污泥堆肥处理中可溶+交换和有机结合金属浓度的氧化变化表明,该堆肥中的有机物比土壤或城市固体废弃物有机物更容易降解。此外,降解产生了可溶的有机物,使有机物络合和溶解。在此研究过程中,应注意的是,通常用于评估Pt氧化还原电极的方法无法区分功能电极和非功能电极。开发,评估和发现了一种使用土壤-水浆的测试方法,可以有效地筛选Pt电极。

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