Journal Serambi Engineering (JSE)
Vol. 11 No. 3 (2026): Juli 2026

Removal of Pb²⁺ Ions Using Rice Husk Ash and Metakaolin Based Geopolymer

Fatikhah Cahyani (Universitas Pembangunan Nasional Veteran Jawa Timur)
Della Arthamevia (Universitas Pembangunan Nasional Veteran Jawa Timur)
Srie Muljani (Universitas Pembangunan Nasional Veteran Jawa Timur)
Caecilia Pujiastuti (Universitas Pembangunan Nasional Veteran Jawa Timur)
Ketut Sumada (Universitas Pembangunan Nasional Veteran Jawa Timur)



Article Info

Publish Date
02 Jul 2026

Abstract

Heavy metal contamination in aquatic environments is a serious environmental issue due to its toxicity, persistence, and tendency to accumulate within living organisms. One promising approach to address this problem is adsorption using aluminosilicate-based geopolymers. This study aimed to evaluate the ability of rice husk ash and metakaolin-based geopolymers to remove Pb²⁺ ions and to investigate the effects of Si/Al molar ratio and NaOH concentration on geopolymer characteristics, removal efficiency, and adsorption capacity. Geopolymers were synthesized using rice husk ash as a silica source and metakaolin as an alumina source with varying Si/Al molar ratios and NaOH concentrations. The synthesized geopolymers were characterized using SEM-EDX and FTIR, while their adsorption performance was evaluated based on Pb²⁺ removal efficiency and adsorption capacity from Pb(NO₃)₂ solution. The results demonstrated that the geopolymer was successfully synthesized and showed potential as an effective adsorbent for Pb²⁺ removal. SEM-EDX and FTIR analyses confirmed the formation of an aluminosilicate structure and indicated that Pb²⁺ adsorption involved ion-exchange mechanisms and interactions with active functional groups on the geopolymer surface. Variations in the Si/Al molar ratio and NaOH concentration significantly affected the characteristics and adsorption performance of the geopolymer. The optimum adsorption condition was achieved at a Si/Al molar ratio of 4.2 and a NaOH concentration of 10 M, resulting in an adsorption capacity of 7.94 mg/g and a removal efficiency of 99.83%.

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Journal Info

Abbrev

jse

Publisher

Subject

Earth & Planetary Sciences Electrical & Electronics Engineering Energy Engineering Environmental Science Industrial & Manufacturing Engineering

Description

Jurnal ini bertujuan untuk merancang dan mengembangkan sistem turbin angin sebagai alat pengusir hama burung sekaligus sebagai pembangkit listrik alternatif di area persawahan. Penelitian difokuskan pada pemanfaatan energi angin untuk menggerakkan perangkat mekanik penghasil suara (sebagai pengusir ...