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重金属在废弃生物质(麦麸)上的吸附机制研究

Study of adsorption mechanism of heavy metals onto waste biomass (wheat bran).

作者信息

Ogata Fumihiko, Kangawa Moe, Tominaga Hisato, Tanaka Yuko, Ueda Ayaka, Iwata Yuka, Kawasaki Naohito

机构信息

Faculty of Pharmacy, Kinki University.

出版信息

J Oleo Sci. 2013;62(11):949-53. doi: 10.5650/jos.62.949.

Abstract

In this study, raw wheat bran (R-WB), a type of waste biomass (WB) was treated with Pectinase PL (P-WB), and the properties (yield percentage, carboxy group surface concentration, the solution pH, and specific surface area) of R-WB and P-WB were investigated. The surface concentration of carboxy groups on R-WB (3.56 mmol/g) was greater than that of P-WB (2.11 mmol/g). In contrast, the specific surface area of P-WB (24.98 m²/g) was greater than that of R-WB (3.25 m²/g). In addition, the adsorption of cadmium and lead ions to WB was evaluated. Adsorption of the heavy-metal ions reached equilibrium within 9 h, and the experimental data was fitted to a pseudo-second-order model. More heavy-metal ions were adsorbed onto R-WB than onto P-WB. The correlation coefficient between the amount of ions adsorbed and the number of carboxy groups or pectin exceeded 0.884 and 0.975, respectively. This study indicated that wheat bran was useful for the removal of cadmium or lead ions from aqueous solutions. The adsorption mechanism of cadmium and lead ions to WB was associated with presence of carboxy group in pectin.

摘要

在本研究中,对一种废弃生物质——生麦麸(R-WB)进行了果胶酶PL处理(P-WB),并对R-WB和P-WB的性质(产率、羧基表面浓度、溶液pH值和比表面积)进行了研究。R-WB上羧基的表面浓度(3.56 mmol/g)高于P-WB(2.11 mmol/g)。相比之下,P-WB的比表面积(24.98 m²/g)大于R-WB(3.25 m²/g)。此外,还评估了麦麸对镉和铅离子的吸附情况。重金属离子的吸附在9小时内达到平衡,实验数据符合准二级模型。R-WB上吸附的重金属离子比P-WB上的多。吸附的离子量与羧基数量或果胶之间的相关系数分别超过0.884和0.975。本研究表明,麦麸可用于从水溶液中去除镉或铅离子。镉和铅离子对麦麸的吸附机制与果胶中羧基的存在有关。

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