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Adsorption of Multi-heavy Metals Onto Water Treatment Residuals: Sorption Capacities and Applications

机译:多重金属在水处理残渣上的吸附:吸附能力和应用

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摘要

Inherently formed iron-based water treatment residuals (WTRs) were tested as alternative sorbents for multi-heavy metal removal from synthetic solutions, contaminated sediments, and surface waters. The WTRs were mainly composed of iron (hydr)oxides and had a high BET surface area (170.7 m2/g), due to the presence of micro- and mesopores. The sorption capacity of WTRs for As(V), Cd2+, Pb2+ and Zn2+ from synthetic solutions surpassed that of a commercially available goethite by 100-400% for single contaminant tests, and by 240% for total sorption in multi contaminant tests. The maximum sorption capacity of WTRs towards As(V), Pb2+ and Zn2+ was estimated by Langmuir equation fitting to range between 0.5 to 0.6 mmol/g, and their maximum sorption capacity for Cd was 0.19 mmol/g. WTRs performed significantly better than goethite for adsorption of cationic contaminants (Cd, Co, Ni, Pb, Zn) in the sediment tests, independent of the dosage or sediment sample. At the highest WTRs dosage (250 mg/g), concentrations of the cationic contaminants decreased by at least 80%, while approximately 40% removal was obtained with 50 mg/g dosage. Sorbent mixtures composed of WTRs with goethite, and with a clinoptilolite natural zeolite were used to reduce As leaching. The sorbent mixtures delivered the desired performance, with the natural zeolite performing better than the goethite as an amendment to WTRs. In addition, up to 90% removal of surface water contaminants was achieved with both fresh WTRs and the WTRs regenerated using 0.01 M EDTA.
机译:测试了固有形成的铁基水处理残留物(WTR)作为替代性吸附剂,用于从合成溶液,受污染的沉积物和地表水中去除多种重金属。由于存在微孔和中孔,WTR主要由氧化铁(氢氧化铁)组成,并具有较高的BET表面积(170.7 m2 / g)。 WTR对合成溶液中的As(V),Cd2 +,Pb2 +和Zn2 +的吸附能力超过了市售针铁矿,单污染物测试的吸附能力提高了100-400%,多污染物测试的总吸附能力提高了240%。根据Langmuir方程拟合,WTR对As(V),Pb2 +和Zn2 +的最大吸附能力介于0.5至0.6 mmol / g之间,其对Cd的最大吸附能力为0.19 mmol / g。在沉积物测试中,WTR的吸附阳离子污染物(Cd,Co,Ni,Pb,Zn)的性能显着优于针铁矿,而与剂量或沉积物样品无关。在最高WTRs剂量(250 mg / g)下,阳离子污染物的浓度降低了至少80%,而在50 mg / g剂量下,去除了约40%。由WTR和针铁矿以及斜发沸石天然沸石组成的吸附剂混合物可减少As的浸出。吸附剂混合物提供了理想的性能,天然沸石的性能优于针铁矿,这是对WTR的修正。此外,新鲜的WTR和使用0.01 M EDTA再生的WTR均可实现高达90%的地表水污染物去除。

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