Appendix A. Supplementary data
Supplementary data to this article can be found online at
https://doi.
org/10.1016/j.biortech.2021.125528
.
References
Al-Mohammedawi, H.H., Znad, H., 2020. Impact of metal ions and EDTA on
photofermentative hydrogen production by Rhodobacter sphaeroides using a
mixture of pre-treated brewery and restaurant effluents. Biomass Bioenergy 134,
105482.
https://doi.org/10.1016/j.biombioe.2020.105482
.
Bhat, T., Fortomaris, D., Kandare, E., Mouritz, A.P., 2018. Properties of thermally
recycled basalt fibres and basalt fibre composites. J. Mater. Sci. 53 (3), 1933
–
1944
.
Budiman, P.M., Wu, T.Y., 2018. Role of chemicals addition in affecting biohydrogen
production through photofermentation. Energy Convers. Manage. 165, 509
–
527
.
Dolly, S., Pandey, A., Pandey, B.K., Gopal, R., 2015. Process parameter optimization and
enhancement of photo-biohydrogen production by mixed culture of Rhodobacter
sphaeroides NMBL-02 and Escherichia coli NMBL-04 using Fe-nanoparticle. Int. J.
Hydrogen Energy 40 (46), 16010
–
16020
.
Hakobyan, L., Gabrielyan, L., Trchounian, A., 2012. Bio-hydrogen production and the
F0F1-ATPase activity of Rhodobacter sphaeroides: effects of various heavy metal
ions. Int. J. Hydrogen Energy 37 (23), 17794
–
17800
.
Hu, J., Jing, Y., Zhang, Q., Guo, J., Lee, D.-J., 2017. Mesophilic and thermophilic photo-
hydrogen production from micro-grinded, enzyme-hydrolyzed maize straws. Int. J.
Hydrogen Energy 42 (45), 27618
–
27622
.
Jing, Y., Sui, Q., Dong, C., Wang, P., 2018. Fitting and comparative analysis of growth
characteristics on HAU-M1 mixed photosynthetic bacteria. Henan Science 36 (6),
853
–
857
.
Li, Y., Zhang, Z., Lee, D.-J., Zhang, Q., Jing, Y., Yue, T., Liu, Z., 2020. Role of L-cysteine
and iron oxide nanoparticle in affecting hydrogen yield potential and electronic
distribution in biohydrogen production from dark fermentation effluents by photo-
fermentation. J. Cleaner Prod. 276, 123193
.
Liu, B., Jin, Y., Xie, G., Wang, Z., Wen, H., Ren, N., Xing, D., 2018. Simultaneous photo
catalysis of SiC/Fe
3
O
4
nanoparticles and photo-fermentation of Rhodopseudomonas
sp. nov. strain A7 for enhancing hydrogen production under visible light irradiation.
ES Energy
&
Environment 1, 56
–
66
.
Liu, H., Zhang, H., Zhang, Z., Xia, C., Li, Y., Lu, C., Zhang, Q., 2021. Optimization of
hydrogen production performance of Chlorella vulgaris under different hydrolase
and inoculation amount. J. Cleaner Prod. 310, 127293
.
Liu, H., Zhang, Z., Zhang, Q., Tahir, N., Jing, Y., Li, Y., Lu, C., 2019. Optimization of
photo fermentation in corn stalk through phosphate additive. Bioresour. Technol.
Reports 7, 100278
.
Lu, C., Jing, Y., Zhang, H., Lee, D.-J., Tahir, N., Zhang, Q., Li, W., Wang, Y., Liang, X.,
Wang, J., Jin, P., Zhang, X., 2020a. Biohydrogen production through active
saccharification and photo-fermentation from alfalfa. Bioresour. Technol. 304,
123007
.
Lu, C., Tahir, N., Li, W., Zhang, Z., Jiang, D., Guo, S., Wang, J., Wang, K., Zhang, Q.,
2020b. Enhanced buffer capacity of fermentation broth and biohydrogen production
from corn stalk with Na
2
HPO
4
/NaH
2
PO
4
. Bioresour. Technol. 313, 123783
.
Lu, J.-S., Chang, J.-S., Lee, D.-J., 2019. Adding carbon-based materials on anaerobic
digestion performance: a mini-review. Bioresour. Technol. 122696
.
M R, S., Arpitha, G.R., Naik, L., Gopalakrishna, K., Yogesha, B. 2016. Applications of
natural fibers and its composites: an overview, Natural Resources, 07(3), 108-114.
Shanmugam, S., Hari, A., Pandey, A., Mathimani, T., Felix, L., Pugazhendhi, A., 2020.
Comprehensive review on the application of inorganic and organic nanoparticles for
enhancing biohydrogen production. Fuel 270, 117453
.
Sinha, P., Pandey, A., 2011. An evaluative report and challenges for fermentative
biohydrogen production. Int. J. Hydrogen Energy 36 (13), 7460
–
7478
.
Srivastava, N., Srivastava, M., Mishra, P.K., Kausar, M.A., Saeed, M., Gupta, V.K.,
Singh, R., Ramteke, P.W., 2020. Advances in nanomaterials induced biohydrogen
production using waste biomass. Bioresour. Technol. 307, 123094
.
Zhang, H., Li, Y., Chen, L., Zhang, Q., 2021a. Effect of zinc ion on photo-fermentative
hydrogen production performance, kinetics and electronic distribution in
biohydrogen production by HAU-M1. Bioresour. Technol. 324, 124680
.
Zhang, J., Zhao, W., Yang, J., Li, Z., Zhang, J., Zang, L., 2021b. Comparison of mesophilic
and thermophilic dark fermentation with nickel ferrite nanoparticles
supplementation for biohydrogen production. Bioresour. Technol. 329, 124853
.
Zhang, Q., Liang, X., Wei, J., Li, S., Xiao, X., Liu, Z., Rong, X., Liang, Z., Wu, Z., 2019.
Effects of size and spacing of basalt fiber carrier media on performance, extracellular
polymeric substances and microbial community of hybrid biological reactors.
Environ. Sci. Water Res. Technol. 5 (7), 1253
–
1261
.
Zhang, X., Zhou, X., Ni, H., Rong, X., Zhang, Q., Xiao, X., Huan, H., Liu, J.F., Wu, Z.,
2018. Surface modification of basalt fiber with organic/inorganic composites for
biofilm carrier used in wastewater treatment. ACS Sustainable Chem. Eng. 6 (2),
2596
–
2602
.
Zhang, Z., Li, Y., Zhang, H., He, C., Zhang, Q., 2017. Potential use and the energy
conversion efficiency analysis of fermentation effluents from photo and dark
fermentative bio-hydrogen production. Bioresour. Technol. 245, 884
–
889
.
C. He et al.
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