首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Removal of hexavalent chromium from aqueous solution by different surface-modified biochars: Acid washing, nanoscale zero-valent iron and ferric iron loading
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Removal of hexavalent chromium from aqueous solution by different surface-modified biochars: Acid washing, nanoscale zero-valent iron and ferric iron loading

机译:通过不同的表面改性的Biochars从水溶液中除去六价铬:酸洗,纳米级零价熨斗和铁载

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摘要

Willow residue biochar (BC) and modified biochars (hydrochloric acid washing (HBC), HBC loaded with nanoscale zero-valent iron (nZVI-HBC), and HBC loaded with ferric iron (Fe3+-HBC)) after aging were used for aqueous Cr(VI) removal. HBC ( 98.67%), nZVI-HBC ( 98.86%), and Fe3+-HBC ( 99.64%) kept high Cr(VI) removal rates under the acidic conditions within a wide pH range ( 7.0), indicating their good adaptability to pH change because of aging. Cr(VI) reduction to Cr(III) was the dominant removal mechanism. The formation of eCOOH on BC, HBC, and nZVI-HBC indicates the oxidation of surface functional groups by Cr(VI) and simultaneous Cr(VI) reduction. The disappearance of nZVI peaks indicates the reduction of Cr(VI) to Cr(III) by nZVI. The color reaction result demonstrated that the converted Fe2+ in Fe3+-HBC contributed to Cr(VI) reduction. Taking into account the removal efficiency, recyclability, cost, preparation process, and stability of adsorbents, Fe3+-HBC was recommended for Cr(VI) removal.
机译:杨氏残留生物炭(BC)和改性的生物藻(盐酸洗涤(HBC),含有纳米级零价铁(NZVI-HBC)的HBC,老化后加载有铁(FE3 + -HBC)的HBC用于含水CR (vi)删除。 HBc(& 98.67%),NZVI-HBC(& 98.86%)和Fe3 + -Hbc(& 99.64%)在宽pH范围内的酸性条件下保持高Cr(vi)去除速率(&lt。7.0) ,表明由于衰老,它们对pH改变的良好适应性。 CR(vi)减少至Cr(iii)是主要的去除机制。在BC,HBC和NZVI-HBC上形成ECOHH,表明CR(VI)和同时Cr(VI)还原表面官能团的氧化。 NZVI峰的消失表明NZVI将Cr(vi)降低至Cr(iii)。颜色反应结果证明转化的Fe2 +在Fe3 + -HBC中有助于减少Cr(VI)。考虑到吸附剂的去除效率,可再循环性,成本,制备过程和稳定性,建议去除Cr(VI)的Fe 3 + -HBC。

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