Pengaruh Adsorpsi Fe Dalam Air Asam Tambang Terhadap Luas Permukaan Adsorben

  • Mycelia Paradise Institut Teknologi Nasional Yogyakarta

Abstract

Adsorption is one of the effective methods to reduce heavy metals in water. One of the important factors for the success of the adsorption process is the adsorbent. This research utilizeed clay, zeolite, and coconut shell activated charcoal as composites to absorb Fe. The adsorption process was carried out in a batch system with a composite mass of 2.5 grams, stirring speed of 300 rpm and  contact time of 30 minutes. The results showed that the adsorbent had a surface area of ​​62.442 m2/g. After the adsorption, the surface area decreased to 56.050 m2/g. The decreasing of  surface area of ​​the adsorbent was in line to the decreasing of Fe concentration after adsorption, from the initial concentration of 13.006 mg/L to 0.1484 mg/L. This indicated that the composite as an adsorbent has succeeded in absorbing Fe and the pores were  filled with Fe and other heavy metals.

Keywords: adsorption, adsorbent, Fe, surface area

 

References

DAFTAR PUSTAKA

[1] Catri, C. R. 2016. The Effectiveness of Natural Zeolite as Metal Absorbent Copper (II) in Pool Water With Coloumn Adsorption Method.Jurnal Penelitian Saintek, 21(2), 87-95.
[2] Kunarti, E. S., Sutarno, S., & Baralangi, S. 2015. Adsorpsi Polutan Ion Dikromat Menggunakan Zeolit Alam Termodifikasi Amina (Adsorption of Dichromate Ions Pollutant Using Ammine Modified-natural Zeolites). Jurnal Manusia dan Lingkungan, 22(3), 298-304.
[3] Mukarrom, F., Karsidi, R., Gravitiani, E., Astuti, F., & Maharditya, W. 2020. The assessment of claystone, quartz and coconut shell charcoal for adsorbing heavy metals ions in acid mine drainage. In IOP Conference Series:Materials Science and Engineering (Vol. 858, No. 1, p. 012040). IOP Publishing.
[4] Musso, T. B., Parolo, M. E., Pettinari, G., &Francisca, F. M. 2014. Cu (II) and Zn (II) adsorption capacity of three different clay liner materials. Journal of environmental management, 146, 50-58.
[5] Ngapa, Y. D., & Gago, J. 2019. Adsorpsi ion Pb (II) Oleh Zeolit Alam Ende Teraktivasi Asam: Studi Pengembangan Mineral Alternatif Penjerap Limbah Logam Berat.
[6] Nwosu, F. O., Ajala, O. J., Owoyemi, R. M., & Raheem, B. G. 2018. Preparation and characterization of adsorbents derived from bentonite and kaolin clays. Applied Water Science, 8(7), 195
[7] Pambayun, G. S., Yulianto, R. Y., Rachimoellah, M., & Putri, E. M. 2013. Pembuatan karbon aktif dari arang tempurung kelapa dengan aktivator ZnCl2 dan Na2CO3 sebagai adsorben untuk mengurangi kadar fenol dalam air
limbah. Jurnal Teknik ITS, 2(1), F116-F120.
[8] Pranoto, Martini, T., Astuti, F., & Maharditya, W. 2020. Test The Effectiveness and Characterization of Quartz Sand/Coconut Shell Charcoal Composite as Adsorbent of Manganese Heavy Metal. IOP Conference Series: Materials Science and Engineering. 858. 012041. 10.1088/1757-899X/858/1/012041.
Published
2022-11-11
How to Cite
Mycelia Paradise (2022) “Pengaruh Adsorpsi Fe Dalam Air Asam Tambang Terhadap Luas Permukaan Adsorben ”, ReTII, pp. 608-610. Available at: //journal.itny.ac.id/index.php/ReTII/article/view/3714 (Accessed: 22November2024).