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Key factors related to drinking water treatment residue selection for adsorptive properties tuning via oxygen-limited heat treatment

机译:与通过限氧热处理调节吸附性能的饮用水处理残渣选择有关的关键因素

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The beneficial recycling of drinking water treatment residue (DWTR) for environmental remediation has attracted growing attention, and oxygen-limited heat treatment has a high potential to improve DWTR adsorptive properties for better recycling. In this study, physicochemical property variation induced by oxygen-limited heat treatment was evaluated for six DWTR obtained from different drinking water treatment plants in Australia, China, and Ireland. The results showed that the changes in many properties, typically amorphous Al and Fe contents, mesopores, specific surface area (SSA), and total pore volume (TPV) of DWTR after treatment, showed inconsistent trends. The treatment also led to the varied lability of metals and As in DWTR although the human bioaccessibility and plant bioavailability of most metals decreased. Accordingly, oxygen-limited heat treatment may not be applicable for all DWTR improvement. Based on these findings, pre-screening processes to evaluate adsorptive properties and metal and metalloid lability were determined. Oxygen-limited heat treatment was more applicable to DWTR with neutral and weak alkaline properties (pH 7.0-7.8), low humic acid (HA) content (<2.09 mg g(-1)), and high amorphous Fe and HA ratio (>5.93), as well as with relatively high amorphous Al and HA ratio and high humin content. (C) 2016 Elsevier B.V. All rights reserved.
机译:用于环境修复的饮用水处理残留物(DWTR)的有益循环已引起越来越多的关注,并且氧限制热处理具有改善DWTR吸附性能以实现更好循环利用的巨大潜力。在这项研究中,对从澳大利亚,中国和爱尔兰的不同饮用水处理厂获得的六种DWTR,评估了限氧热处理引起的理化性质变化。结果表明,处理后DWTR的许多性能(通常为非晶态Al和Fe含量,中孔,比表面积(SSA)和总孔体积(TPV))的变化趋势不一致。尽管大多数金属的人类生物利用度和植物生物利用度均下降,但该处理还导致了DWTR中金属和砷的不稳定性。因此,限氧热处理可能不适用于所有DWTR改善。基于这些发现,确定了用于评估吸附性能以及金属和准金属不稳定性的预筛选过程。限氧热处理更适用于中性和弱碱性(pH 7.0-7.8),低腐殖酸(HA)含量(<2.09 mg g(-1)),高非晶铁和高HA比(> 5.93),以及相对较高的无定形Al和HA比例以及较高的人红素含量。 (C)2016 Elsevier B.V.保留所有权利。

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