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负载超细氧化镁纳米颗粒的生物炭对磷的高效去除与回收

Efficient removal and recovery of phosphate by biochar loaded with ultrafine MgO nanoparticles.

作者信息

Huang Yanpeng, Wu Qiong, Yan Jingfan, Chu Fumin, Xu Yuming, Li Dongmin, Zhang Hongjia, Yang Sen

机构信息

Beijing Key Laboratory of Farmland Soil Pollution Prevention and Remediation, College of Resources and Environmental Sciences, China Agricultural University, Beijing, 100193, China.

COFCO Nutrition and Health Research Institute, Beijing, 102209, China.

出版信息

Environ Res. 2025 Feb 1;266:120518. doi: 10.1016/j.envres.2024.120518. Epub 2024 Dec 7.

Abstract

Biochar loaded with MgO is a promising adsorbent for the removal and recovery of phosphate from aqueous solutions. However, its phosphate adsorption capacity is unsatisfactory, especially at low phosphate concentrations. Loading nanoscale MgO onto biochar is an effective strategy. Here, ultrafine MgO nanoparticles and MgO nanosheets were loaded onto biochar from steam-exploded straw (UMB and SMB) via an impregnation-precipitation-pyrolysis method. The crystal sizes of ultrafine MgO nanoparticles and MgO nanosheets were about 6-8 nm and 10-16 nm, respectively. The phosphate adsorption capacity of UMB at C = 100 mg P L was 219.4 mg P g, which was higher than that of SMB (164.9 mg P g). The results suggest that surface precipitation was the dominant adsorption mechanism and the hydration process and the smaller particle size of MgO may play a key role in the superior phosphate removal by UMB. Removal tests in real low-concentration phosphate water samples showed that 0.05 g L UMB could reduce the phosphate concentration from 0.17 mg P L to 0.01 mg P L. In addition, phosphate could be desorbed from UMB in varying environments, and therefore has the potential to be used in fertilizer production or directly as a slow-release fertilizer.

摘要

负载氧化镁的生物炭是一种从水溶液中去除和回收磷酸盐的有前景的吸附剂。然而,其磷酸盐吸附能力并不理想,尤其是在低磷酸盐浓度下。将纳米级氧化镁负载到生物炭上是一种有效的策略。在此,通过浸渍-沉淀-热解方法将超细氧化镁纳米颗粒和氧化镁纳米片负载到蒸汽爆破秸秆制成的生物炭上(UMB和SMB)。超细氧化镁纳米颗粒和氧化镁纳米片的晶体尺寸分别约为6-8纳米和10-16纳米。在C = 100毫克磷/升时,UMB的磷酸盐吸附容量为219.4毫克磷/克,高于SMB(164.9毫克磷/克)。结果表明,表面沉淀是主要的吸附机制,水化过程以及氧化镁较小的粒径可能在UMB对磷酸盐的优异去除中起关键作用。在实际低浓度磷酸盐水样中的去除试验表明,0.05克/升的UMB可将磷酸盐浓度从0.17毫克磷/升降低至0.01毫克磷/升。此外,磷酸盐可在不同环境中从UMB上解吸,因此有潜力用于肥料生产或直接用作缓释肥料。

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