Moses Arowo
Beijing University of Chemical Technology
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Publication
Featured researches published by Moses Arowo.
Chemosphere | 2016
Deming Ge; Zequan Zeng; Moses Arowo; Haikui Zou; Jian-Feng Chen; Lei Shao
This work investigated the degradation of methyl orange by ozone in the presence of ferrous and persulfate ions (O3/Fe(2+)/S2O8(2-)) in a rotating packed bed. The effects of various operating parameters such as initial pH, rotational speed, gas-liquid ratio, ozone inlet concentration and reaction temperature on the degradation rate of methyl orange were studied with an aim to optimize the operation conditions. Results reveal that the degradation rate increased with an increase in rotational speed, gas-liquid ratio and ozone inlet concentration, and reached a maximum at 25 °C and initial pH 4. Contrast experiments involving ozone and ferrous ions (O3/Fe(2+)) were also carried out, and the results show approximately 10% higher degradation rate and COD removal in the O3/Fe(2+)/S2O8(2-) process than in the O3/Fe(2+) process. Additionally, the intermediates of the degradation process were analyzed to ascertain the degradation products.
Langmuir | 2015
Yibo Zhao; Moses Arowo; Wei Wu; Jian-Feng Chen
Polyaniline (PANI) nanofibers with improved properties were prepared by high gravity chemical oxidative polymerization in a rotating packed bed with the assistance of p-aminodiphenylamine (AD) and p-phenylenediamine (AP). The effects of reactor type, additive dosage, reaction temperature, and high-gravity level on the properties of products were investigated in detail. Three conclusions were made: (1) a small amount of additive can significantly improve some properties of the nanofibers such as uniformity, specific surface area, and specific capacitance; (2) in order to obtain high-quality nanofibers, the high-gravity level should coordinate with the reaction rate; (3) the molecular weight and conductivity of PANI decrease with the increase of additive dosage. The products have larger specific surface areas of up to 73.9 and 68.4 m(2)/g and consequently improved specific capacitance of up to 527.5 and 552 F/g for the PANI nanofibers prepared with AD and AP, respectively. However, the specific surface area and specific capacitance of pure PANI are only 49.1 m(2)/g and 333.3 F/g, respectively. This research provides a simple, reliable, and scalable method to produce PANI nanofibers of high performances.
Chemical Engineering Journal | 2013
Zequan Zeng; Haikui Zou; Xin Li; Moses Arowo; Baochang Sun; Jian-Feng Chen; Guangwen Chu; Lei Shao
Physical Chemistry Chemical Physics | 2015
Yibo Zhao; Huige Wei; Moses Arowo; Xingru Yan; Wei Wu; Jian-Feng Chen; Yiran Wang; Zhanhu Guo
Journal of Environmental Management | 2015
Mo Li; Zequan Zeng; Yingwen Li; Moses Arowo; Jian-Feng Chen; Hong Meng; Lei Shao
Chemical Engineering Journal | 2016
Yucheng Yang; Yang Xiang; Guangwen Chu; Haikui Zou; Baochang Sun; Moses Arowo; Jian-Feng Chen
Journal of Industrial and Engineering Chemistry | 2015
Yibo Zhao; Moses Arowo; Wei Wu; Haikui Zou; Jian-Feng Chen; Guangwen Chu
Chemical Engineering Science | 2015
Yucheng Yang; Yang Xiang; Guangwen Chu; Haikui Zou; Yong Luo; Moses Arowo; Jian-Feng Chen
Chemical Engineering Science | 2015
Yingwen Li; Siwen Wang; Baochang Sun; Moses Arowo; Haikui Zou; Jian-Feng Chen; Lei Shao
Separation and Purification Technology | 2014
Mei-Yuan Pan; Zhi Qian; Lei Shao; Moses Arowo; Jian-Feng Chen; Jie-Xin Wang