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白云石-海藻酸钠复合珠粒对磷酸盐的增强吸附和缓慢释放及其作为潜在肥料的性能。

Enhanced adsorption and slow release of phosphate by dolomite-alginate composite beads as potential fertilizer.

机构信息

School of Environmental Science and Engineering, Sun Yat-sen University, Guangzhou, China.

Department of Civil and Environmental Engineering, Vanderbilt University, Nashville, Tennessee.

出版信息

Water Environ Res. 2019 Aug;91(8):797-804. doi: 10.1002/wer.1122. Epub 2019 May 2.

DOI:10.1002/wer.1122
PMID:30993735
Abstract

The recovery and reuse of phosphorus (P) from wastewater treatment process is a critical and viable target for sustainable P utilization. This study explores a novel approach of integrating ultrafine mineral particles into hydrogel matrixes for enhancing the capacity of phosphate adsorption. Dolomite-alginate (DA) hydrogel beads were prepared by integrating ball-milled, ultrafine dolomite powders into calcium cross-linked alginate hydrogel matrix. The adsorption isotherms followed a Langmuir-Freundlich adsorption model with higher specific adsorption capacity than those reported in literature. The kinetics of phosphate adsorption suggest that the adsorption is diffusion controlled. Investigation of adsorption capacity at different pH showed a maximum adsorption capacity in the pH range of 7-10. Lastly, we demonstrated that the DA beads are capable of slowly releasing most of the adsorbed phosphate, which is an important criterion for them to be an effective phosphorous fertilizer. This study, using DA composite hydrogel as an example, demonstrates a promising strategy of immobilizing ultrafine mineral adsorbents into biocompatible hydrogel matrix for effective recovery of phosphorous resource from wastewater. PRACTITIONER POINTS: Integration of dolomite and alginate hydrogel beads is demonstrated using ball milling. Ball milling process increases the specific adsorption capacity of dolomite on phosphorus. Adsorption isotherms, kinetics, and pH effects of the dolomite-alginate beads are investigated. The dolomite-alginate beads can be used as slow-release phosphorus fertilizer.

摘要

从废水处理过程中回收和再利用磷(P)是可持续磷利用的一个关键且可行的目标。本研究探索了一种将超细矿物颗粒整合到水凝胶基质中以提高磷酸盐吸附能力的新方法。通过将球磨的超细白云石粉末整合到钙交联藻酸盐水凝胶基质中,制备了白云石-藻酸盐(DA)水凝胶珠。吸附等温线遵循朗缪尔-弗伦德利希吸附模型,比文献中报道的具有更高的比吸附容量。磷酸盐吸附动力学表明,吸附是扩散控制的。在不同 pH 值下研究吸附容量表明,在 pH 值为 7-10 的范围内具有最大的吸附容量。最后,我们证明了 DA 珠能够缓慢释放大部分吸附的磷酸盐,这是它们成为有效磷肥的一个重要标准。本研究以 DA 复合水凝胶为例,展示了一种将超细矿物吸附剂固定在生物相容性水凝胶基质中的有前途的策略,用于从废水中有效回收磷资源。

实践者要点

展示了使用球磨将白云石和藻酸盐水凝胶珠整合在一起的过程。

球磨过程提高了白云石对磷的比吸附容量。

研究了白云石-藻酸盐珠的吸附等温线、动力学和 pH 值影响。

白云石-藻酸盐珠可用作缓释磷肥。

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