DOAJ Open Access 2024

Efficient degradation of methyl orange through photo-Fenton processes with MIL-100(Fe) modified Fe\(_3\)O\(_4\) (Fe\(_3\)O\(_4\)@MIL-100(Fe)) catalyst

Melani Puji Puspitasari Jeesica Hermayanti Pratama Roshid Adi Nugroho Witri Wahyu Lestari Yusnadia Kemala +4 lainnya

Abstrak

The research successfully synthesized a composite MIL-100(Fe) modified Fe3O4 (Fe3O4@MIL-100(Fe)) catalyst and examined its efficiency in degrading methyl orange (MO) through the photo-Fenton process compared to Fenton. The different percentages of Fe3O4 were integrated into MIL-100(Fe) and their effects on material characteristics and degradation capabilities were studied. Ex-situ synthesis involved varying Fe3O4 weight ratios (3, 10, and 20% w/w). Characterization techniques confirmed the integration of Fe3O4 and MIL-100(Fe) and revealed changes in surface area, pore size, and thermal stability with Fe3O4 addition. Meanwhile, removal tests showed promising results with the photo-Fenton process exhibiting maximum efficiency (95.51%) using 10% Fe3O4@MIL-100(Fe). This study provides valuable insights into developing efficient photo-Fenton catalysts for environmental remediation, particularly for addressing dye pollution in wastewater by highlighting the potential of Fe3O4@MIL-100(Fe) composites in this context.

Penulis (9)

M

Melani Puji Puspitasari

J

Jeesica Hermayanti Pratama

R

Roshid Adi Nugroho

W

Witri Wahyu Lestari

Y

Yusnadia Kemala

T

Teguh Endah Saraswati

H

Hamzah Fansuri

R

Rino Rakhmata Mukti

R

Rujito S. R. Suharbiansah

Format Sitasi

Puspitasari, M.P., Pratama, J.H., Nugroho, R.A., Lestari, W.W., Kemala, Y., Saraswati, T.E. et al. (2024). Efficient degradation of methyl orange through photo-Fenton processes with MIL-100(Fe) modified Fe\(_3\)O\(_4\) (Fe\(_3\)O\(_4\)@MIL-100(Fe)) catalyst. https://doi.org/10.21924/cst.9.2.2024.1493

Akses Cepat

PDF tidak tersedia langsung

Cek di sumber asli →
Lihat di Sumber doi.org/10.21924/cst.9.2.2024.1493
Informasi Jurnal
Tahun Terbit
2024
Sumber Database
DOAJ
DOI
10.21924/cst.9.2.2024.1493
Akses
Open Access ✓