Open Access Open Access  Restricted Access Subscription or Fee Access

Green Hydrogen based Green Nanotechnology for Industrial Nano waste Treatment

Gizachew Diga Milki

Abstract


The research into nanowaste treatment and recycling is ongoing process. Particularly the development of new methods and technology for nanowaste treatment is a focus of most professionals, scientist and engineers. One of the developments among the emerging technology is the green nanotechnology, which is environmental friend, affordable, an alternative means of clean energy productions, and economically cost effective. This research is therefore, focused on assessment of chemical related waste and the role of green hydrogen based Green nanotechnology for industrial nanowaste. This treatment technique is effective for industrial nanowaste like heavy metal containing wastewater, chemical waste; dye synthesized waste, microbial waste, organic waste, and polymer waste. Green hydrogen based green nanotechnology is not only nanowaste treatment technology but also nanowaste recycling technology. Hence, the effect of green hydrogen based green nanotechnology in minimizing industrial nanowaste, its role as recycling technology, and its potential as a treatment technology is seen. In this regard, emphasis is given to the roles of green hydrogen based nanotechnology for the treatment of Microbial waste, organic waste, and Nanosized polymers waste. It is expected that this technique will ensure ecofriendly energy environment free from pollution by realizing zero carbon energy resource.


Full Text:

PDF

References


Tian H et al. Organic waste to bio hydrogen, 2019, V. 256, 15, 113961

Rahul Gautama et al. Bio-hydrogen production through microbial electrolysis cell: Structural components and influencing factors, J. Chemical engineering, 2023, V. 455, 1, 140535

Rousseau R et al. Microbial electrolysis cell (MEC): Strengths, weaknesses, and research needs from electrochemical engineering standpoint. J. applied energy, 2020, V. 257. 113938

Samuel M. S et al. A Review on Green synthesis of nanoparticles, and their Diverse Biomedical and Environmental Applications, Catalysts 2022, 12, 459.

Yadav et al. Bio-hydrogen production from waste materials: A review, MATEC Web of Conferences 2018, 192, 02020

G AlZohbi, Green Hydrogen Generation: Recent Advances and Challenges, IOP Conf. Series: Earth and Environmental Science,2022, 1050, 012003

Banerjee et al. Bio resources and Bioprocessing, 2014, 1:3

Khoo S K et al., Nanomaterials Utilization in Biomass for Biofuel and Bioenergy Production energies, 2020, 13, 892, pp. 1-19

Fernanda D. Guerra et al. Nanotechnology for Environmental Remediation: Materials and Applications, Molecules 2018, 23, 1760

Malik S, Dhasmana A, Preetam S, Mishra YK, Chaudhary V, Bera SP, Ranjan A, Bora J, Kaushik A, Minkina T, Jatav HS. Exploring Microbial-Based Green Nanobiotechnology for Wastewater Remediation: A Sustainable Strategy. Nanomaterials. 2022 Nov 25;12(23):4187.

M. M. Berekaa, Nanotechnology in Wastewater Treatment, influence of Nanomaterials on Microbial Systems, Int. J. Curr. Microbiol, App. Sci (2016) 5(1): 713-726

Jebin Ahmed et al. Industrial wastewater and its toxic effects, chemistry in the environmental series, 2021, No. 5, Pp. 1-13

Spath, P. M. Mann, and W. Amos, Comparison of Gasification Technologies for Converting Biomass to Hydrogen. the First World Conference on Biomass and Industry, 2000 pp. 1-10

Faaij A, Hamelinck C, Larson E, and Kreutz T, Production of Methanol and Hydrogen from Biomass via Advanced Conversion Concepts, 1999

Liao Q et al. Bioreactors for microbial biomass and energy conversion Green energy and Technology, 2018, 934 449

Nakum and Bhattacharya, Various Green Nanomaterials used for wastewater and soil treatment, A Mini-Review. Front. Environ. Sci. 2022, 9, 724814

Mandeep and Shukla, Microbial Nanotechnology for bio remediation of industrial wastewater, Front. Microbiol, 2020, 11: 590 631

Abdo, A.M. et al. Green Synthesis of Zinc Oxide Nanoparticles (ZnO-NPs) by Pseudomonas aeruginosa and their Activity against pathogenic microbes and common house mosquito, Culex pippins, Materials 2021, 14, 6983

Thangavelu L, A Survey on Nanotechnology-Based Bioremediation of Wastewater, Bioinorganic Chemistry and Applications 2022, 5063177

Purkayastha et al., Industrial waste-derived nanoparticles and microspheres can be potent antimicrobial and functional ingredients, 2014,V. 12, 171427




DOI: https://doi.org/10.37628/ijccm.v8i2.953

Refbacks

  • There are currently no refbacks.