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首页> 外文期刊>Journal of Hazardous Materials >Arsenic removal from iron-containing groundwater by delayed aeration in dual-media sand filters
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Arsenic removal from iron-containing groundwater by delayed aeration in dual-media sand filters

机译:通过双介质砂滤器延迟通气从含铁地下水中除去砷

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Generally, abstracted groundwater is aerated, leading to iron (Fe2+) oxidation to Fe3+ and precipitation as Fe3+-(hydr)oxide (HFO) flocs. This practice of passive groundwater treatment, however, is not considered a barrier for arsenic (As), as removal efficiencies vary widely (15-95%), depending on Fe/As ratio. This study hypothesizes that full utilization of the adsorption capacity of groundwater native-Fe2+ based HFO flocs is hampered by rapid Fe2+ oxidation-precipitation during aeration before or after storage. Therefore, delaying Fe2+ oxidation by the introduction of an anoxic storage step before aeration-filtration was investigated for As(III) oxidation and removal in Rajshahi (Bangladesh) with natural groundwater containing 329(+/- 0.05) mu gAs/L. The results indicated that As(III) oxidation in the oxic storage was higher with complete and rapid Fe2+ oxidation (2 +/- 0.01 mg/L) than in the anoxic storage system, where Fe2+ oxidation was partial (1.03 +/- 0.32 mg/L), but the oxidized As (V)/Fe removal ratio was comparatively higher for the anoxic storage system. The low pH (6.9) and dissolved oxygen (DO) concentration (0.24 mg/L) in the anoxic storage limited the rapid oxidation of Fe2+ and facilitated more As(V) removal. The groundwater native-Fe2+ (2.33 +/- 0.03 mg/L) removed 61% of As in the oxic system (storage-aeration-filtration), whereas 92% As removal was achieved in the anoxic system.
机译:通常,抽象的地下水被充气,导致铁(Fe2 +)氧化至Fe3 +和作为Fe3 + - (乙烯)氧化物(HFO)絮凝物的沉淀。然而,这种无源地下水处理的做法不被认为是砷(AS)的屏障,因为除去效率变化很大(15-95%),取决于Fe / AS比率。本研究假设通过在贮藏之前或之后通过快速Fe2 +氧化沉淀的快速Fe2 +氧化沉淀,充分利用地下水天然Fe2 +基于基于HFO絮凝物的吸附能力。因此,通过引入氧气储存步骤延迟Fe2 +氧化在通过含有329(+/- 0.05)亩气/升的天然地水的氧化过滤之前进行曝气过滤氧化和去除。(孟加拉国)。结果表明,由于缺氧储存系统中的氧化储存(2 +/- 0.01 mg / L),氧储存中的(iii)氧化更高,其中Fe2 +氧化是部分的(1.03 +/- 0.32 mg / L),但氧化氧化储存系统的氧化为(V)/ Fe除去率相对较高。低pH(6.9)和脱氧氧储存中的溶解氧(DO)浓度(0.24mg / L)限制Fe2 +的快速氧化,并促进更易于除去(V)。地下水本机的Fe2 +(2.33 +/- 0.03毫克/升)在好氧系统(存储通气过滤)除去作为61%,而92%的As去除在缺氧系统达到了。

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