Negatively charged nano-hydroxyapatite can be used as a phosphorus fertilizer to increase the efficacy of wollastonite for soil cadmium immobilization

硅灰石 化学 肥料 柠檬酸 环境修复 核化学 农学 环境化学 生物化学 污染 有机化学 生物 生态学 原材料
作者
Rong Huang,Peng Mao,Lei Xiong,Guoming Qin,Jinge Zhou,Jingfan Zhang,Zhian Li,Jingtao Wu
出处
期刊:Journal of Hazardous Materials [Elsevier BV]
卷期号:443: 130291-130291 被引量:24
标识
DOI:10.1016/j.jhazmat.2022.130291
摘要

Improper application of phosphorus (P) fertilizer during soil cadmium (Cd) immobilization reduces the efficiency of fertilizer and Cd remediation. In this study, we synthesized three types of nano-hydroxyapatite (NHAP) with different surface charges as slow-release P fertilizers during Cd immobilization. We also evaluated the effects of wollastonite application with or without NHAP addition, in comparison with triple superphosphate (TSP) or bulk hydroxyapatite, on Cd accumulation in Amaranthus tricolor L. The results showed that adding wollastonite significantly reduced P availability (23.5%) in the soil, but it did not inhibit plant P uptake. In wollastonite-amended soil, the application of negatively/positively charged NHAP significantly increased plant biomass by 643–865% and decreased Cd uptake by 74.8–75.1% compared to the unamended soil as well as showed greater efficiency than those with TSP. This was ascribed to the increased soil pH (from 3.94 to 6.52–6.63) and increased abundance of organic acids (including citric acid, malic acid, lactic acid, and acetic acid) secreted by plants. In addition, the P-preferring bacterial class Bacteroidia was specific to soils amended with both wollastonite and NHAP-. These results suggest that NHAP- may be an appropriate P fertilizer for soil Cd immobilization using wollastonite.
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