Structural alteration within fly ash-based geopolymers governing the adsorption of Cu2+ from aqueous environment: Effect of alkali activation

被引:80
作者
Darmayanti, Lita [1 ,2 ]
Kadja, Grandprix T. M. [3 ,4 ]
Notodarmojo, Suprihanto [1 ]
Damanhuri, Enri [1 ]
Mukti, Rino R. [3 ,4 ]
机构
[1] Univ Riau, Dept Civil Engn, Kampus Bina Widya Simpang Baru, Pekanbaru 28293, Indonesia
[2] Inst Teknol Bandung, Dept Environm Engn, Jalan Ganesha 10, Bandung 40132, Indonesia
[3] Inst Teknol Bandung, Div Inorgan & Phys Chem, Jalan Ganesha 10, Bandung 40132, Indonesia
[4] Inst Teknol Bandung, Res Ctr Nanosci & Nanotechnol, Jalan Ganesha 10, Bandung 40132, Indonesia
关键词
Alkali activation; Cu2+ adsorption; Fly ash; Geopolymers; Structural alteration; REMOVAL; COPPER; CRYSTALLIZATION; ZEOLITES; WASTE; ADSORBENT; TOXICITY; METALS; STAGE; IONS;
D O I
10.1016/j.jhazmat.2019.05.086
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Fly-ash based geopolymers have been considered as a low-cost yet effective adsorbent for the removal of heavy metal cations, including Cu2+, from the aqueous environment. In the synthesis of geopolymers, the fly-ash needs to be alkali activated using several systems rich in either Na+ or K. Herein, we investigate the effect of alkali activation on the structural alteration and its consequence on the adsorption capacity. Based on the series of detailed characterizations, the geopolymers formed in Na+-based alkali system is found to have more organized structure compared to that formed in K+-based alkali system. Moreover, the incorporation of additional silicate creates ancillary structure which positively contributes to the organization of the overall structure. All the samples, fly-ash and geopolymers, exhibits Cu2+ adsorption based on Langmuir isotherm and pseudo-second order kinetic. The geopolymers with more organized structure display higher Cu2+ adsorption capacity, which reaches 40 mg g(-1) higher in comparison to 7 mg g(-1) for fly ash sample. The structural alteration induces the formation of open-framework structure with more accessible sites which can accommodate more Cu2+. Our study provides a fundamental understanding for the design and fabrication of geopolymers as an effective adsorbent for the removal of heavy metal cations.
引用
收藏
页码:305 / 314
页数:10
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