USE OF COCONUT SHELL BECOME AN ALTERNATIVE ELECTRICITY

Sardi Salim, Ade Irawaty Tolago

Abstract


Abstract- The condition of non-renewable energy reserves is currently running low. Therefore an alternative is needed to divert use to renewable energy sources. Renewable energy sources are natural energy that is easy to obtain and always available. Renewable energy sources, such as coconut shells, can be easily obtained and widely available throughout Indonesia. This study points to determine the esteem of electrical energy generated from coconut shells with various compositions. The research method uses the experimental method. The coconut shell material is first made into bio briquettes. The quality standard for bio briquettes refers to the Indonesian National Standard 01-6235-2000, where a good bio briquette water content is at most 8%. To determine the combustion rate, a test was carried out using a biomass stove. The results showed that coconut shell-based bio briquettes had better quality, where for a mass of 200 grams, the water content was 6.48%, and the cellulose value was 35%. The resulting calorific value is 5664.8 cal/gram, and the burning rate is 0.236 gram/minute. Through the energy conversion process using the Thermoelectric Module, coconut shell bio briquettes with a mass of 200 – 400 grams can produce an average of 13.35 Wh of electrical energy.

Keywords


renewable energy, coconut shell, thermoelectric, energy resources, electrical energy

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References


References

D. Hernández and E. Siegel, Energy insecurity and its ill health effects: A community perspective on the energy-health nexus in New York City, Energy Research & Social Science, international journal Volume 47, January 2019, Pages 78-83. (article)

F. Martins, C. Felgueiras, M. Smitkova, and N. Caetano, Analysis of Fossil Fuel Energy Consumption and Environmental Impacts in European Countries, Energies 2019, 12, 964; doi:10.3390/en12060964

F. Perera, Pollution from Fossil-Fuel Combustion is the Leading Environmental Threat to Global Pediatric Health and Equity: Solutions Exist, International Journal Environ Res Public Health, 15(1): 16, Published online Dec 23, 2017. (article)

A. Boretti, Continued fossil fuel emissions and cognition impairment, International Journal of Global Warming, Published 8 May 2021, DOI:10.1504/ IJGW.2021.10037785 (article)

V. Vedanarayanan, Chirag Vibhakar, A. Sujaatha, Jiten K. Chavda, M. Karthik, P. V. Pramila, Ishwarya Komalnu Raghavan, "Utilization of Sustainable Resources for Promoting Energy Efficiency in Environment Using Smart Technologies", International Journal of Photoenergy, vol. 2022, Article ID 6711300, 9 pages, 2022. https://doi.org/10.1155/2022/6711300. (article)

C. Wang 1, H. Tibo and D.H. Duong, Renewable Energy Utilization Analysis of Highly and Newly Industrialized Countries Using an Undesirable Output Model, Energies 2020, 13(10), 2629;

https://doi.org/10.3390/en13102629. (article)

P. Kumah, P. A. Sowah, A.R. Adam, Emerging Energy Sources for Sustainable Power Generation: An Overview, Engineering and Technology Journal. Vol 8 No. 3, 6 March 2023.

DOI: https://doi.org/10.47191/etj/v8i3.02 (article)

Asian Development Bank, Indonesia Energy Sector Assessment, Strategy, And Road Map Update December 2020. DOI: http://dx.doi.org/10.22617/TCS200429, (books)

E. Wahyuni & H. Ardiansyah, Indonesia's National Strategy and Commitment towards Transition to Renewable Energy, Overseas Indonesian Student's Association Alliance & BRIN Publishing 2022. (book)

M. Langhof and Andrea S., 13 years of biomass production from three poplar clones in a temperate short-rotation alley cropping agroforestry system, Biomass and Bioenergy. Vol 175 (2023). Available online Jun 9 2023. (Book Publishing) DOI:

https://doi.org/10.1016/j.biombioe.2023.106853

R. Kandpal, R. Singh, Renewable Energy Sources – A Review, IOP SCIENCE ©ECS-The Electrochemical Society ECS Transactions, Volume 107, Number 1, 2022. DOI 10.1149/10701.8133ecst (prosiding)

P.D.C. Sanchez, M.M.T. Aspe, K.N. Sindol, An overview on the production of bio-briquettes from agricultural wastes: methods, processes, and quality, Journal of Agricultural and Food Engineering 1 (2022) 0036, DOI: http://doi.org/10.37865/jafe.2022.0036. (article)

P.D. Sanchez, M.M.T. Aspe, K.N. Sindol, An Overview on the Production of Bio-briquettes from Agricultural Wastes: Methods, Processes and Quality, Journal of Agricultural and Food Engineering 1 (2022) 0036, DOI: http://doi.org/10.37865/jafe.2022.0036 (article)

A. Tamilvanan, Preparation of Biomass Briquettes using Various AgroResidues and Waste Papers, Journal of Biofuels, Vol. 4 Issue 2, July-December 2013 pp. 47-55, (article) DOI: 10.5958/j.0976-4763.4.2.006. (article)

V.A. Pinchuk, T.A. Sharabura, A.V. Kuzmin, The effect of water phase content in coal-water fuel on regularities of the fuel ignition and combustion, Fuel Processing Technology, Volume 191, August 2019, Pages 129-137.

https://doi.org/10.1016/j.fuproc.2019.04.011

F. Inegbedion and E. Ikpoza, Estimation of the Moisture Content, Volatile Matter, Ash Content, Fixed Carbon and Calorific Values of Rice Husk Briquettes, Proceedings of the International Conference on Industrial Engineering and Operations Management Nsukka, Nigeria, 5 - 7 April 2022. (proceedings)

M.L. Ramadhan, J. Carrascal, A. Osorio and J.P. Hidalgo, The effect of moisture content and thermal behaviour on the ignition of Eucalyptus saligna leaves, International Journal of Wildland Fire 30(9) 680-690, 21 June 2021, https://doi.org/10.1071/WF20069

D. A. da Silva, A.L.S. Hansted, G.T. Nakashima, E.R.D. Padilla, J.C. Pereira, and F.M. Yamaji, Volatile matter values change according to the standard utilized, Research, Society and Development, V. 10, No. 12, e291101220476, 2021, (article) DOI: http://dx.doi.org/10.33448/rsd-v10i12.20476

G.S. Kumar, C.J. Rao, S.K. Madhavi, Evaluation Of Calorific Value Of Bio-Briquette, International Journal of Research in Engineering and Technology, Volume: 05 Issue: 09, Sep-2016, (article) DOI:

http://ijret.esatjournals.org

H. Jinqiao, C. Leng, B. Liu, Z. Chen, L. Zhenlin, Analysis of flame characteristics of low calorific value gas diffusion combustion under the action of thermal dynamics, Combustion Theory and Modelling Volume 24, 2020 - Issue 5, (book)

https://doi.org/10.1080/13647830.2020.1793001

Mohammed T.I. and Olugbade T.O., Burning Rate of Briquettes Produced from Rice Bran and Palm Kernel Shells, International Journal of Material Science Innovations Volume 03, Issue 02, Pages 68-73, 2015, (article)

Taylor, R.A. "Applicability of Nanofluids in High Flux Solar Collectors". Journal Of Renewable And Sustainable Energy 3, 023104. 2011. (article)

Khairil, I. Arwiyan, Akhyar, S. Sofyan, Fundamental Study on Combustion Characteristics of Bio-briquette as Alternative Fuels for Domestic Coffee Stove, IOP Conference Series: Earth and Environmental Science, Volume 1121, 2022 8th International Conference on Environment and Renewable Energy 25/02/2022 - 27/02/2022 Hanoi, Vietnam (prosiding)

S.B. Riffat and Xiaoli Ma, "Thermoelectrics: A review of present and potential applications". Applied Thermal Engineering 23 (2003) 913–935. (article)

Sahin, Ahmet Z. Yilbas, Bekir S.. "Performance analysis of a thermoelectric power generator under volumetric constraint". Transactions of the Canadian Society for Mechanical Engineering, Vol. 40, No. 1. March 2016. (article)

N. Jaziri, A. Boughamoura, J. Müller, B. Mezghani, F. Tounsi and M. Ismail, A comprehensive review of Thermoelectric Generators: Technologies and typical applications, Energy Reports Volume 6, Supplement 7, December 2020, Pages 264-287. (article).

ticle).




DOI (PDF): https://doi.org/10.20508/ijsmartgrid.v7i3.302.g318

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