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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Assessing arsenic redox state evolution in solution and solid phase during As (III) sorption onto chemically-treated sewage sludge digestate biochars
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Assessing arsenic redox state evolution in solution and solid phase during As (III) sorption onto chemically-treated sewage sludge digestate biochars

机译:在化学处理过的污水污泥消化生物脉内(III)吸附过程中溶液和固相的砷氧化铈状态演变和固相

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This work aimed to determine the arsenic redox state distribution during As(III) sorption onto chemically-modified biochars. A solid-liquid extraction protocol using phosphoric (0.3 M) and ascorbic (0.5 M) acids at 80 degrees C for 20 min was established to ensure a quantitative recovery and stability of As(III) during the extraction. During sorption experiments, the redox conversions of As occurred and As(III) was either stable or partially oxidized in solution. The As distribution strongly varied depending on the biochar chemical treatment performed as well as the selected washing procedures (batch versus column washings). As(III) oxidation was favored with the KOH-modified biochar washed in batch mode. This oxidation was mostly induced by the biochar solid compounds rather than by soluble compounds released in solution. The As redox state distribution of As sorbed onto the biochars was successfully assessed using the extraction procedure. Arsenic was predominantly sorbed as As(III) (76-92%) onto the biochars.
机译:这项工作旨在将砷氧化还原状态分布在化学修饰的生物脉内的化学改性的生物脉内确定。确定使用磷(0.3μm)和抗坏血酸(0.5μm)酸在80℃下进行20分钟的固液提取方案,以确保在提取过程中的定量回收和稳定性。在吸附实验期间,发生的氧化还原转化和(III)在溶液中稳定或部分氧化。根据所表演的生物炭化学处理以及所选洗涤程序(批次与柱洗涤),AS分布强烈变化。如(iii)氧化在批次模式下洗涤的KOH改性的生物凝块是有利的。该氧化主要由生物炭固体化合物而不是通过溶液中释放的可溶性化合物诱导。使用提取程序成功评估了作为生物脉冲潜水管的氧化还原状态分布。砷主要被吸收为(III)(III)(76-92%)到Biochars上。

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