Publiora

Menghubungkan ke Publiora...

Publiora

Optimized Heating Rate and Soot-catalyst Ratio for Soot Oxidation over MoO3 Catalyst

Mei, CongweiMei, DeqingYue, ShanChen, ZongYuan, Yinnan
Bulletin of Chemical Reaction Engineering & Catalysis (Sinta 1)Vol. 0 No. 01 Desember 2017
DOI10.9767/bcrec.12.3.845.408-414

Abstrak

MoO3 is now utilized as a promising catalyst due to its high activity and favorable mobility at low temperature. Its spectral data and surface microstructures were characterized by Fourier transform infrared spectra (FT-IR) and Field emission scanning electron microscope (FESEM). Thermo-analysis of the carbon black was performed over nano-MoO3 catalyst in a thermogravimetric analyzer (TGA) at various heating rates and soot-catalyst ratios. Through the analysis of kinetic parameters, we found that the heat transfer effect and diffusion effect can be removed by setting lower heating rates and soot-catalyst ratios. Therefore, a strategy for selecting proper thermogravimetric parameters were established, which can contribute to the better understanding of thermo-analytical process.

Kata Kunci

diesel sootkinetic parametersnano-MoO3thermogravimetric parameters

Cari jurnal yang tepat untuk naskah Anda

MatchMind AI mencocokkan abstrak naskah Anda dengan ribuan jurnal terakreditasi dan menampilkan rekomendasi terbaik beserta alasannya.

Coba MatchMind

Lihat profil lengkap jurnal ini

Waktu review, biaya APC, statistik sitasi, indeksasi Scopus, dan banyak lagi.

Buka Bulletin of Chemical Reaction Engineering & Catalysis

Artikel ini juga tersedia di situs resmi jurnal.

Optimized Heating Rate and Soot-catalyst Ratio for Soot Oxidation over MoO3 Catalyst | Bulletin of Chemical Reaction Engineering & Catalysis | Publiora