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通过煅烧过程或添加氢氧化铁(III)对鸭蛋壳粉进行改性对铅去除效率的影响。

Influence of duck eggshell powder modifications by the calcination process or addition of iron (III) oxide-hydroxide on lead removal efficiency.

作者信息

Praipipat Pornsawai, Ngamsurach Pimploy, Tannadee Rattanaporn

机构信息

Department of Environmental Science, Faculty of Science, Khon Kaen University, Khon Kaen, 40002, Thailand.

Environmental Applications of Recycled and Natural Materials (EARN) Laboratory, Khon Kaen University, Khon Kaen, 40002, Thailand.

出版信息

Sci Rep. 2023 Jul 26;13(1):12100. doi: 10.1038/s41598-023-39325-w.

Abstract

Lead-contaminated wastewater causes toxicity to aquatic life and water quality for water consumption, so it is required to treat wastewater to be below the water quality standard before releasing it into the environment. Duck eggshell powder (DP), duck eggshell powder mixed iron (III) oxide-hydroxide (DPF), calcinated duck eggshell powder (CDP), and calcinated duck eggshell powder mixed iron (III) oxide-hydroxide (CDPF) were synthesized, characterized, and investigated lead removal efficiencies by batch experiments, adsorption isotherms, kinetics, and desorption experiments. CDPF demonstrated the highest specific surface area and pore volume with the smallest pore size than other materials, and they were classified as mesoporous materials. DP and DPF demonstrated semi-crystalline structures with specific calcium carbonate peaks, whereas CDP and CDPF illustrated semi-crystalline structures with specific calcium oxide peaks. In addition, the specific iron (III) oxide-hydroxide peaks were detected in only DPF and CDPF. Their surface structures were rough with irregular shapes. All materials found carbon, oxygen, and calcium, whereas iron, sodium, and chloride were only found in DPF and CDPF. All materials were detected O-H, C=O, and C-O, and DPF and CDPF were also found Fe-O from adding iron (III) oxide-hydroxide. The point of zero charges of DP, DPF, CDP, and CDPF were 4.58, 5.31, 5.96, and 6.75. They could adsorb lead by more than 98%, and CDPF illustrated the highest lead removal efficiency. DP and CDP corresponded to the Langmuir model while DPF and CDPF corresponded to the Freundlich model. All materials corresponded to a pseudo-second-order kinetic model. Moreover, they could be reusable for more than 5 cycles for lead adsorption of more than 73%. Therefore, CDPF was a potential material to apply for lead removal in industrial applications.

摘要

含铅废水会对水生生物造成毒性影响,并影响供人饮用的水质,因此需要在将废水排放到环境之前将其处理至水质标准以下。合成了鸭蛋壳粉(DP)、混合氢氧化铁(III)的鸭蛋壳粉(DPF)、煅烧鸭蛋壳粉(CDP)和混合氢氧化铁(III)的煅烧鸭蛋壳粉(CDPF),对其进行了表征,并通过批量实验、吸附等温线、动力学和脱附实验研究了铅去除效率。与其他材料相比,CDPF具有最高的比表面积和孔体积,且孔径最小,它们被归类为介孔材料。DP和DPF表现出具有特定碳酸钙峰的半结晶结构,而CDP和CDPF则表现出具有特定氧化钙峰的半结晶结构。此外,仅在DPF和CDPF中检测到特定的氢氧化铁(III)峰。它们的表面结构粗糙,形状不规则。所有材料都含有碳、氧和钙,而铁、钠和氯仅在DPF和CDPF中被发现。所有材料都检测到了O-H、C=O和C-O,并且由于添加了氢氧化铁(III),在DPF和CDPF中还发现了Fe-O。DP、DPF、CDP和CDPF的零电荷点分别为4.58、5.31、5.96和6.75。它们对铅的吸附率可达98%以上,其中CDPF的铅去除效率最高。DP和CDP符合朗缪尔模型,而DPF和CDPF符合弗伦德里希模型。所有材料均符合准二级动力学模型。此外,它们可重复使用5个以上循环,铅吸附率超过73%。因此,CDPF是一种在工业应用中用于去除铅的潜在材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7937/10372095/772a1708caaf/41598_2023_39325_Fig1_HTML.jpg

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