Effect of nano zero-valent iron (nZVI) on biohydrogen production in anaerobic fermentation of oil palm frond juice using Clostridium butyricum JKT37

被引:19
|
作者
Arisht, Shalini Narayanan
Roslan, Rozieffa
Gie, Goh Ann
Mahmod, Safa Senan
Sajab, Mohd Shaiful
Lay, Chyi-How
Wu, Shu-Yii
Ding, Gong-Tao
Jamali, Nur Syakina
Jahim, Jamaliah Md
Abdul, Peer Mohamed
机构
[1] Department of Chemical and Process Engineering, Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, Bangi, Selangor
[2] Research Centre for Sustainable Process Technology (CESPRO), Faculty of Engineering and Built Environment, Universiti Kebangsaan Malaysia, UKM Bangi, Selangor
[3] Master's program of Green Energy Science and Technology/General Education Center, Feng Chia University
[4] Department of Chemical Engineering, Feng Chia University, Taichung
[5] Biomedical Research Centre, Northwest Minzu University, Gansu Lanzhou
[6] Department of Chemical and Environmental Engineering, Faculty of Engineering, Universiti Putra Malaysia, Serdang, 43400, Selangor Darul Ehsan
来源
BIOMASS & BIOENERGY | 2021年 / 154卷
关键词
Oil palm frond; Biohydrogen; Dark fermentation; Initial pH; Clostridium butyricum JKT37; Nano zero-valent iron; BIO-HYDROGEN PRODUCTION; WASTE ACTIVATED-SLUDGE; DARK FERMENTATION; PH; SUBSTRATE; DIGESTION; BIOMASS; NANOPARTICLES; INHIBITION; BACTERIA;
D O I
10.1016/j.biombioe.2021.106270
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
Oil palm fronds (OPFs) are generally cast off as solid waste, which comprise of unused valuable product, fermentable sugars that can be utilised for biohydrogen generation. The OPF juice consisting of mainly glucose, sucrose, xylose, and fructose (TC = 51.53g/L) was utilised as a substrate for biohydrogen production using local strain, Clostridium butyricum JKT37 in batch anaerobic fermentation. The aim of this research was to optimise the initial pH and total carbohydrate (TC) concentration with the addition of nano zero-valent iron (nZVI) in OPF juice for enhanced biohydrogen yield (HY) and production rate (HPR). The optimal parameters obtained in this study were a pH of 6.5, 12.8 g/L TC, and 50 mg/L nZVI, which resulted in an optimum HY, HPR, and TC utilisation of 2.71 mol H-2/mol sugar, 88.75 mL(H2)/L-OPF h(-1), and 88.28%, respectively. The optimised condition showed a 1.85-fold increase in hydrogen productivity as compared to the control (raw unadjusted OPF juice TC). The predominant acidogenic by-products were butyric, acetic, lactic, and formic acid. Although lactic acid is one of the major constituents of volatile fatty acids (VFAs), hydrogen production was feasible with the optimum level of factors. The HY and HPR improved by 45.39% and 85.20%, respectively, compared to fermentation of raw OPF juice. nZVI nanoparticle was used in this study as a catalyst in dark fermentation to improve biohydrogen production and accelerate the fermentation process. This study demonstrated that nZVI nanoparticle could effectively shorten the lag time and facilitated the hydrolysis and utilisation of OPFs.
引用
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页数:12
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