[Phytic Acid Modification Enhanced Cadmium Sorption and Immobilization of Sludge-based Hydrochar].

Q2 Environmental Science
Hai-Long Gao, Cen-Yao Shang, Xiao-Dong Pei, Hui-Fang Xie, Bing-Yu Wang
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引用次数: 0

Abstract

Phytic acid-assisted sludge hydrothermal carbonization was employed to synthesize phytic acid-modified hydrochar via a one-step method. The surface morphology, pore structure, elemental composition, functional groups, and thermal stability of the phytic acid-modified hydrochar were characterized. Sorption kinetics and isotherm experiments were conducted to investigate the effects of humic acid, temperature, and pH on the sorption process of cadmium (Cd) onto the phytic acid-modified hydrochar. The Cd fixation ability was evaluated through soil passivation experiments. The results demonstrated that the surface of the phytic acid-modified hydrochar exhibited an abundance of phosphoric acid groups, enhanced electronegativity, and thermal stability. Furthermore, both the sorption rate and maximum sorption capacity for Cd increased by 1.88 times and 1.22 times compared to that in unmodified hydrochar, respectively, owing to the presence of phosphoric acid groups that enhanced complexation and electrostatic interaction with Cd. Elevated temperatures, higher pH values, and coexistence with humic acids were beneficial for enhancing Cd sorption onto phytic acid-modified hydrochar. When heavy metals such as Cu, Zn, and Pb coexisted, the sorption capacity of phytic acid-modified hydrochar for Cd was 0.77-6.88 times higher than that for other metals. Phyic acid-modified hydrochar exhibited excellent efficiency in fixing Cd (56.1%-81.l%), mitigating the loss of available nutrients in soil and significantly increasing the AP content in the soil. In conclusion, the use of phytic acid-modified hydrochar could effectively remove Cd from water and serve as a promising soil amendment for stabilizing soil Cd content.

[植酸改性增强了污泥基水炭对镉的吸附和固定]。
采用植酸辅助污泥水热碳化法一步合成了植酸改性水煤炭。对植酸改性水碳的表面形态、孔隙结构、元素组成、官能团和热稳定性进行了表征。通过吸附动力学和等温线实验研究了腐殖酸、温度和 pH 值对植酸改性水煤炭镉(Cd)吸附过程的影响。吸附过程的影响。通过土壤钝化实验评估了镉的固定能力。结果表明,植酸改性水碳表面具有丰富的磷酸基团,电负性增强,热稳定性提高。此外,与未改性水碳相比,镉的吸附率和最大吸附容量分别增加了 1.88 倍和 1.22 倍,这是因为磷酸基团的存在增强了与镉的络合和静电作用。温度升高、pH 值升高以及与腐殖酸共存有利于增强植酸改性水碳对镉的吸附。当铜、锌和铅等重金属共存时,植酸改性水炭对镉的吸附能力是其他金属的 0.77-6.88 倍。植酸改性水炭对镉的固定效率极高(56.1%-81.1%),缓解了土壤中可利用养分的流失,显著提高了土壤中 AP 的含量。总之,使用植酸改性水碳可有效去除水中的镉,是稳定土壤中镉含量的一种很有前景的土壤改良剂。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Huanjing Kexue/Environmental Science
Huanjing Kexue/Environmental Science Environmental Science-Environmental Science (all)
CiteScore
4.40
自引率
0.00%
发文量
15329
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