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赤铁矿和针铁矿改性生物炭作为高效过硫酸盐活化催化剂用于磺胺甲恶唑的降解:一步法生物炭合成方法及溶液基质对磺胺甲恶唑去除动力学的影响。

Biochar modification with hematite and goethite as efficient persulfate activation catalysts for sulfamethoxazole degradation: one-step biochar synthesis method and solution matrix effect on sulfamethoxazole removal kinetics.

机构信息

Department of Agriculture, University of Arkansas at Pine Bluff, Pine Bluff, AR, 71601, USA.

出版信息

Environ Sci Pollut Res Int. 2022 Nov;29(55):83931-83944. doi: 10.1007/s11356-022-21743-4. Epub 2022 Jul 1.

DOI:10.1007/s11356-022-21743-4
PMID:35776307
Abstract

Using biochar to adsorb and degrade organic contaminants has attracted increasing attention due to its relatively low cost and high efficiency. In this work, two magnetic biochars were synthesized by pyrolyzing a mixture of naturally occurring hematite or goethite mineral and pine needle biomass. The biochar composite was characterized with X-ray diffraction, scanning electron microscopy, and surface area analyzer. The result demonstrated iron minerals have been deposited on carbon surfaces and been reduced to magnetite or wustite minerals. In comparison to the unmodified biochar, the iron mineral-modified biochar had better sorption ability, likely because the iron mineral particles on the carbon surface served as additional sorption sites for sulfamethoxazole (SMX) removal. After modification, the biochar also showed higher persulfate activation capacity with radical generation: at 4 h, neutral pH, 67.5 and 77.9% of persulfate is activated with hematite and goethite modified biochar, where only 11.7% persulfate is activated by unmodified biochar. With persulfate, goethite-modified biochar showed better SMX removal capacity than hematite-modified biochar with about 79% of SMX removed in 4 h. Solution chemistry such as pH and co-exist humic acid can affect SMX removal by affecting iron minerals. Because the magnetized biochar can be easily isolated and removed with external magnets, it can be used in various contaminant removal applications.

摘要

利用生物炭吸附和降解有机污染物因其成本相对较低、效率较高而受到越来越多的关注。在这项工作中,通过将天然赤铁矿或针铁矿矿物和松针生物质的混合物热解,合成了两种磁性生物炭。使用 X 射线衍射、扫描电子显微镜和比表面积分析仪对生物炭复合材料进行了表征。结果表明,铁矿物已沉积在碳表面并被还原为磁铁矿或浮士体矿物。与未改性的生物炭相比,铁矿物改性的生物炭具有更好的吸附能力,这可能是因为碳表面上的铁矿物颗粒充当了用于去除磺胺甲恶唑(SMX)的额外吸附位点。改性后,生物炭还表现出更高的过硫酸盐活化能力,产生自由基:在中性 pH 值、4 小时和 67.5-77.9%的过硫酸盐在赤铁矿和针铁矿改性生物炭中被激活,而未改性生物炭中只有 11.7%的过硫酸盐被激活。用过硫酸盐处理时,针铁矿改性生物炭比赤铁矿改性生物炭具有更好的 SMX 去除能力,在 4 小时内可去除约 79%的 SMX。溶液化学性质,如 pH 值和共存腐殖酸,会通过影响铁矿物来影响 SMX 的去除。由于磁化生物炭可以很容易地用外部磁铁分离和去除,因此它可以用于各种污染物去除应用。

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