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比较混合软木和芒草秸秆制成的生物炭对镍的吸附。

Comparison of nickel adsorption on biochars produced from mixed softwood and Miscanthus straw.

机构信息

Geotechnical and Environmental Research Group, Department of Engineering, University of Cambridge, Cambridge, CB2 1PZ, UK.

Department of Earth and Atmospheric Sciences, University of Alberta, Edmonton, AB, T6G 2E3, Canada.

出版信息

Environ Sci Pollut Res Int. 2018 May;25(15):14626-14635. doi: 10.1007/s11356-018-1674-2. Epub 2018 Mar 12.

Abstract

In order to understand the influence of feedstock type on biochar adsorption of heavy metals, the adsorption characteristics of nickel (Ni), copper (Cu) and lead (Pb) onto biochars derived from mixed softwood and Miscanthus straw were compared. The biochars were produced from mixed softwood pellets (SWP) and Miscanthus straw pellets (MSP), at both 550 and 700 °C for each material, using a standardised production procedure recommended by the UK Biochar Research Centre. Kinetics analyses show that the adsorption of Ni to all four biochars reached equilibrium within 5 min. The degree of Ni removal for all four biochars remained nearly constant within initial pH values of 3-8, because the equilibrium pH values within this range were similar due to the buffering effect of the biochars. A sharp increase of Ni removal percentage for all biochars at initial solution pH 8-10 was observed as the equilibrium pH also increased. MSP derived biochars generally had higher maximum adsorption capacities (Q) for the three tested metals as compared with those from SWP, which was likely due to their higher degree of carbonisation during production. This study shows that feedstock type is a primary factor affecting the adsorption capacities of the tested biochars for heavy metals.

摘要

为了了解原料类型对生物炭吸附重金属的影响,比较了源自混合软木和芒草秸秆的生物炭对镍(Ni)、铜(Cu)和铅(Pb)的吸附特性。生物炭由混合软木颗粒(SWP)和芒草秸秆颗粒(MSP)在 550 和 700°C 下制成,每种材料均采用英国生物炭研究中心推荐的标准化生产工艺。动力学分析表明,所有四种生物炭对 Ni 的吸附在 5 分钟内达到平衡。在初始 pH 值为 3-8 范围内,所有四种生物炭的 Ni 去除率基本保持不变,因为生物炭的缓冲作用使这个范围内的平衡 pH 值相似。在初始溶液 pH 值为 8-10 时,所有生物炭的 Ni 去除率都有明显增加,因为平衡 pH 值也随之升高。与 SWP 相比,源自 MSP 的生物炭对三种测试金属的最大吸附容量(Q)通常更高,这可能是由于其在生产过程中碳化程度更高。本研究表明,原料类型是影响测试生物炭对重金属吸附能力的主要因素。

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