聚氨酯残留废物的光合作用。使用催化剂TiO₂

M. Natsir, Aden Mula Pratiwi, Thamrin Azis, Nohong, Imran, Wa Ode Harlis, Alimin, La Ode Kadidae, Ruslan, C. Bijang, L. A. Kadir, Laily Nurliana
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引用次数: 0

摘要

采用TiO2催化剂对西米废弃物中的木质素进行了降解。本研究旨在确定使用TiO2催化剂从西米废料中降解木质素的有效性。用10% NaOH对西米果肉中的木质素进行分离,并用傅里叶变换红外光谱(FTIR)对其进行了表征。FTIR表征结果表明,波数2937.59 cm-1处的吸收是烷烃官能团的-C-H伸缩振动,波数2360.87 cm-1处的吸收是C≡C三键的振动,波数1795.73 cm-1和1637.56 cm-1与羰基的伸缩有关。波数1427.32 cm-1处的吸收是与芳环中不饱和键相连的碳氢振动。波数1105.21 cm-1、1128.36 cm-1、1153.43 cm-1处的吸收为-C-H在愈创硅环上的拉伸振动,波数1022.27 cm-1处的吸收为C-O-C醚的拉伸振动。从这个光谱中可以看出,木质素并不是完全纯净的,因为它可能仍然与纤维素混合在一起。在紫外光的帮助下,TiO2催化剂对木质素的降解效率测试结果表明,在木质素浓度为40 ppm的条件下,降解时间为3小时,木质素的降解率为31.43%。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Efektivitas Fotodegradasi Lignin dari Limbah Ampas Sagu (Metroxylon sagu Rottb.) Menggunakan Katalis TiO₂
Lignin degradation from sago (Metroxylon sagu Rottb.) waste has been carried out using a TiO2 catalyst. This research aims to determine the effectiveness of lignin degradation from sago waste using a TiO2 catalyst. Lignin from sago pulp was isolated using 10% NaOH and characterized using Fourier Transform Infra Red (FTIR) spectroscopy. The results of the characterization using FTIR show that the absorption at wave number 2937.59 cm-1 is the -C-H stretching vibration of the alkane functional groups, the absorption at wave number 2360.87 cm-1 is the vibration of the C≡C triple bond, the wave numbers 1795.73 cm-1 and 1637.56 cm-1 are associated with the stretching of the carbonyl group. The absorption at wave number 1427.32 cm-1 is a C-H vibration connected to an unsaturated bond in an aromatic ring. Absorptions at wave number 1105.21 cm-1, 1128.36 cm-1, 1153.43 cm-1 were the stretching vibration of -C-H on the guaiasil ring, and the absorption at wave number 1022.27 cm-1 was the stretching vibration of C-O-C ether. From this spectrum, it can be seen that lignin is not completely pure because it is probably still mixed with cellulose. The results of the effectiveness test of lignin degradation using a TiO2 catalyst with the help of UV light were able to degrade the lignin isolated by 31.43%, for 3 hours at a lignin concentration of 40 ppm.
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