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首页> 外文期刊>Geochemical Journal >Adsorption of aqueous Cd2+, Pb2+, Cu2+ ions by nano-hydroxyapatite:Single- and multi-metal competitive adsorption study
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Adsorption of aqueous Cd2+, Pb2+, Cu2+ ions by nano-hydroxyapatite:Single- and multi-metal competitive adsorption study

机译:纳米羟基磷灰石对Cd2 +,Pb2 +,Cu2 +离子的吸附:单金属和多金属竞争吸附研究

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Being an inexpensive but efficient adsorbent, hydroxyapatite is extensively used for decontaminating wastewater and soils polluted by heavy metals. However, its solubility and grain size can affect its remediation effectiveness. This study investigated the ability of nano-hydroxyapatite (nano-HAP) to adsorb aqueous Cd, Pb and Cu ions from single-metal and multi-metal ions reaction systems. Langmuir and Freundlich isotherm equations were employed to study the sorption constants. Based on the sum of squares errors (SSE), results showed that the Langmuir isotherm better fits sorption data than the Freundlich equation. The sorption affinity of nano-HAP for Pb(II) is always higher than that for Cu(II) and for Cd(II); the sorption maxima for the Cd, Pb and Cu follow the order Pb2+ > Cu2+ > Cd2+. This could be inversely propor-tional to the hydrated ionic radii as Pb2+ (4.01 A) > Cu2+ (4.19 A) > Cd2+ (4.26 A). The measured selectivity coefficients in multi-metal (Cd-Pb-Cu) reaction systems shows that Ph has the highest sorption selectivity on nano-HAP among the metals investigated. This sorption selectivity coincided well with the sorption affinity order in mono-metal reaction sys-tems. The pH of the solution is an important parameter in controlling Cd, Pb and Cu ions sorption on nano-HAP. Indeed, the nano-HAP sorption capacity increases with increasing pH up to a value of 6.25. This implies that the removal of metals from the solution is recommended for pH 6.25 or below, during remediation using nano-HAP as a sorbent.
机译:羟基磷灰石是一种廉价但有效的吸附剂,被广泛用于净化废水和重金属污染的土壤。但是,其溶解度和粒度会影响其修复效果。这项研究调查了纳米羟基磷灰石(nano-HAP)从单金属和多金属离子反应系统中吸附Cd,Pb和Cu离子的能力。 Langmuir和Freundlich等温线方程用于研究吸附常数。根据平方误差总和(SSE),结果表明,朗格缪尔等温线比弗伦德里希方程更适合吸附数据。纳米HAP对Pb(II)的吸附亲和力始终高于Cu(II)和Cd(II)。 Cd,Pb和Cu的吸附最大值遵循Pb2 +> Cu2 +> Cd2 +的顺序。这与水合离子半径成反比,如Pb2 +(4.01 A)> Cu2 +(4.19 A)> Cd2 +(4.26 A)。在多金属(Cd-Pb-Cu)反应系统中测得的选择性系数表明,在所研究的金属中,Ph对纳米HAP的吸附选择性最高。这种吸附选择性与单金属反应体系中的吸附亲和力顺序非常吻合。溶液的pH是控制Cd,Pb和Cu离子在纳米HAP上吸附的重要参数。实际上,纳米HAP的吸附能力会随着pH值的增加而增加,直至达到6.25。这意味着在使用nano-HAP作为吸附剂的修复过程中,建议在pH值为6.25或更低的情况下从溶液中去除金属。

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