RK Jain, SS Rao (2014) Industrial Safety, Health and Environment Management System. 3rdedn., Khanna Publishers, New Delhi, pp. 84, 997Search in Google Scholar
FAO (2019) The Agricultural Production Indices, FAOSTAT, Food and Agriculture Organization of the United Nations, Last updated 22 December 2019Search in Google Scholar
KA Figueroa – Rodriguez, F Hernandez-Rosas, B Figueroa-Sandoval, J Velasco, NA Rivera (2019) What has been the focus of sugarcane research? A Bibliometric Overview. International Journal of Environmental Research and Public health, 16(18); 3326, https://doi.org/10.3390/ijerph1618332610.3390/ijerph16183326676581431509963Search in Google Scholar
K Sheth (2017) Top sugarcane producing countries. World Facts, Last updated 25 April 2017Search in Google Scholar
A Yahaya (2020) Sugarcane farming in Nigeria: Guide on how to start, Last updated 4 March 2020Search in Google Scholar
S Edem (2019) How to start a lucrative sugarcane farming business in Nigeria: the complete guide, Last updated 12 March 2019Search in Google Scholar
IE Etukudo (2000) Forest Our Divine Treasure. Dodan Publishers, Uyo, NigeriaSearch in Google Scholar
S Karthikeyan, SS Samipillai (2010) Sugarcane I therapeutics. Journal of Herbal Medicine and Toxicology, 4; 9 – 14Search in Google Scholar
S Omwoma, M Arowo, JO Lalah, K Schramm (2014) Environmental impacts of sugarcane production, processing and management: a chemistz perspective. Environmental Research Journal, 8(3); 195 – 223Search in Google Scholar
MAFD Moraes, FCR Oliveira, RA Diaz-Chavez (2015) Socio-economic impacts of Brazilian sugarcane industry. Environmental Development, 16; 31 – 4310.1016/j.envdev.2015.06.010Search in Google Scholar
MA Renouf, MK Wegener, LK Nielson (2008) An environmental life cycle assessment comparing Australian sugarcane with US corn and UK sugar beet as producers of sugars from fermentation. Biomass and Bioenergy, 32; 1144 – 115510.1016/j.biombioe.2008.02.012Search in Google Scholar
RA Patil, UB Deshannavar (2017) Dry sugarcane leaves renewable biomass resources for making briquettes. International Journal of Engineering Research and Technology, 10(1); 232 – 235Search in Google Scholar
P Jittabut (2015) Physical and thermal properties of briquette fuels from rice straw and sugarcane leaves by mixing molasses. Energy Procedia, 79; 2 – 9, https://doi.org/10.1016/j.egypro.2015.11.45210.1016/j.egypro.2015.11.452Search in Google Scholar
A Singh, UR Lai, HM Mukhtar, PS Sing, G Shah, RK Dhawan (2015) Phytochemical profile of sugarcane and its potential health aspects. Pharmacognosy Reviews, 9(17) 45 – 54, https://di.org/10.4103/0973-7847.15634010.4103/0973-7847.156340444116226009693Search in Google Scholar
OA Adigun, VO Oninla, NAA Babarmda (2019) Application of sugarcane leaves as biomass in the removal of Cadmium (II), Lead (II), and Zinc (II) ions from polluted water. International Journal of Energy and Water Resources, 3; 141 – 152, https://doi.org/10.1007/s42108-019-00024-w10.1007/s42108-019-00024-wSearch in Google Scholar
R Jorapur, AK Rajvanshi (1997) Sugarcane leaves bagasse gasifier for industrial heating application. Biomass and Bioenergy, 13(3); 141 – 14610.1016/S0961-9534(97)00014-7Search in Google Scholar
EH Martins, JBG Junior, TD Protásio, RF Mendes, BM Guimaraes (2016) Evaluation of Physical properties of particleboard produced from sugarcane leaves. Key Engineering Materials, 668; 270 – 274, https://doi.org/10.4028/www.scientificnet/KEM.668.270Search in Google Scholar
SE Etuk, UW Robert, OE Agbasi (2021) Investigation of heat transfer and mechanical properties of Saccharum Officinarumleaf boards. International Journal of Energy and Water Resources, 6(1); 95 – 102, https://doi.org/10.1007/s42108-021-00123-710.1007/s42108-021-00123-7Search in Google Scholar
D Patil, S Chavan, S Barkade (2013) Production of activated charcoal from sugarcane leaves using ZnCl2 activation for the adsorption of methylene blue dye. International Journal of Engineering Research and Technology, 2(3); 1 – 5Search in Google Scholar
UW Robert, SE Etuk, SA Ekong, OE Agbasi, NE Ekpenyong, SS Akpan, EA Umana (2022) Electrical characteristics of dry cement – based composites modified with coconut husk ash nanomaterial.Advances in Materials Science, Vol. 22, No. 2 (72), https://doi.org/10.2478/adms-2022-000810.2478/adms-2022-0008Search in Google Scholar
S Zafar (2020) Waste management challenges in developing nations. Bioenergy Consult, Last updated 14 March 2020Search in Google Scholar
N Ferronato, V Torreta (2019) Waste management in developing countries: A review of global issues. International Journal of Environmental Research and Public Health, 16(6); 1060, https://doi.org/10.3390/ijerph1606106010.3390/ijerph16061060646602130909625Search in Google Scholar
M Zohoori, A Ghani (2017) Municipal solid waste management challenges and problems for cities with low-income and developing countries. International Journal of Applied Science and Engineering, 6(2); 39 – 48.10.7753/IJSEA0602.1002Search in Google Scholar
UW Robert, SE Etuk, JB Emah, OE Agbasi, UA Iboh (2022) Thermophysical and Mechanical Properties of Clay-Based Composites developed with Hydrothermally Calcined Waste Paper Ash Nanomaterial for Building Purposes. International Journal of Thermophysics, 43(5); 1 - 20, https://doi.org/10.1007/s10765-022-02995-110.1007/s10765-022-02995-1Search in Google Scholar
J Chepkemoi (2017) The top pulp and paper producing countries in the world, World Facts, Last updated: September 25, 2017, www.worldatlas.comSearch in Google Scholar
RWJ McKinney (1995) Technology of paper recycling, Blackie-Academic and Professional, Chapman and Hall, New York, London, pp. 7 – 15Search in Google Scholar
MR Sanjay, P Madhu, M Jawaid, P Senthamaraikannan, S Senthil, S Pradeep (2017) Characterization and Properties of Natural Fiber Polymer Composites: A Comprehensive Review. Journal of Cleaner Production,172, 566-581, https://doi.org/10.1016/j.jclepro.2017.10.10110.1016/j.jclepro.2017.10.101Search in Google Scholar
UW Robert, SE Etuk, OE Agbasi, SA Ekong, EU Nathaniel, A Anonaba, LA Nnana (2021) Valorisation of Waste carton paper, Melon seed husks and Groundnut shells to thermal insulation panels for structural applications. Polytechnica, 4(2); 97 – 106, https://doi.org/10.1007/s41050-021-00034-w10.1007/s41050-021-00034-wSearch in Google Scholar
S Bano, YS Negi (2017) Studies on cellulose nano crystals isolated from groundnut shells. Carbohydrate Polymers, 157; 1041 – 1049, https://doi.org/10.1016/j.carbpol.2016.10.06910.1016/j.carbpol.2016.10.06927987804Search in Google Scholar
N Johar, I Ahmad, A Dufresne (2012) Extraction, preparation and characterization of cellulose fibres and nano crystals from rice husk. Industrial Crops and Products, 37; 93 – 99, https://doi.org/10.1016/j.indcrop.2011.12.01610.1016/j.indcrop.2011.12.016Search in Google Scholar
UW Robert, SE Etuk, OE Agbasi, US Okorie (2021) Quick Determination of Thermal Conductivity of Thermal Insulators using a Modified Lee – Charlton’s Disc Apparatus Technique. International Journal of Thermophysics, 42(8); 1 – 20, https://doi.org/10.1007/s10765-021-02864-310.1007/s10765-021-02864-3Search in Google Scholar
SE Etuk, OE Agbasi, ZT Abdulrazzaq, UW Robert (2018) Investigation of thermophysical properties of Alates (swarmers) termites wing as potential raw material for insulation. International Journal of Scientific World,6(1) 1 – 7Search in Google Scholar
UW Robert, SE Etuk, OE Agbasi (2019) Modified Water Displacement Method and its Use for Determination of Bulk Density of Porous Materials. Journal of Renewable Energy and Mechanics, 1(1); 1 – 16, https://doi.org/10.25299/rem.2029.vol1(01).2292Search in Google Scholar
US Okorie, UW Robert, UA Iboh, GP Umoren (2020) Assessment of the suitability of tiger nut fibre for structural applications. Journal of Renewable Energy and Mechanics, 3(1); 32 – 39, https://doi.org/10.25299/rem.2020.vol3(01).4417Search in Google Scholar
UW Robert, SE Etuk, OE Agbasi, GP Umoren, NJ Inyang (2021) Investigation of thermophysical and mechanical properties of board produced from coconut (Cocos nucifera) leaflet. Environmental Technology & Innovation, 24(1); 101869, https://doi.org/10.1016/j.eti.2021/101869Search in Google Scholar
SE Etuk, AN Ikot, NJ George, SD Ekpe, EU Nathaniel (2016) Comparative Study of Thermal Conductivity Values of Different Percentage Compositions of Ground Arachis hypogea (Groundnut) Husk and Vigna unguiculata (Beans) Husk Compressed Fiberboards. Journal of Thermal Science and Engineering Applications, 8(2); 1 – 4, https://doi.org/10.1115/1.403188710.1115/1.4031887Search in Google Scholar
SE Etuk, UW Robert, OE Agbasi (2020) Design and Performance evaluation of a device for determination of specific heat capacity of thermal insulators. Beni-Suef University Journal of Basic and Applied Sciences, 9(1); 1 – 7, https://doi.org/10.1186/s43088-020-00062-y10.1186/s43088-020-00062-ySearch in Google Scholar
UW Robert, SE Etuk, OE Agbasi, US Okorie, A Lashin (2021) Hygrothermal properties of sandcrete blocks produced with raw and hydrothermally-treated sawdust as partial substitution materials for sand. Journal of King Saud University – Engineering Sciences, https://doi.org/10.1016/j.jksues.2021.10.00510.1016/j.jksues.2021.10.005Search in Google Scholar
UW Robert, SE Etuk, OE Agbasi, GP Umoren (2020) Comparison of clay soils of different colors existing under same conditions in a location. Imam Journal of Applied Sciences, 5(2); 68 – 73Search in Google Scholar
UW Robert, SE Etuk, OE Agbasi, GP Umoren, SS Akpan, LA Nnana (2021) Hydrothermallycalcined waste paper ash nanomaterial as an alternative to cement for clay soil modification for building purposes. Acta Polytechnica, 61(6); 749–761, https://doi.org/10.14311/AP.2021.61.074910.14311/AP.2021.61.0749Search in Google Scholar
NE Ekpenyong, GP Umoren, IE Udo, OJ Yawo (2022) Assessment of Thermophysical and Mechanical Properties of Composite Panels Fabricated from Untreated and Treated Coconut Husk Particles for Structural Application. Brilliant Engineering, 2; 1-5, https://doi.org/10.36937/ben.2022.454710.36937/ben.2022.4547Search in Google Scholar
ASTM D790 (2017) Standard Test Methods for Flexural Properties of Unreinforced and Reinforced Plastics and Electrical Insulating Materials. ASTM International, West Conshohocken, PA.Search in Google Scholar
UW Robert, SE Etuk, OE Agbasi, SA Ekong, ZT Abdulrazzaq, AU Anonaba (2021) Investigation of Thermal and Strength Properties of Composite Panels fabricated with Plaster of Paris for Insulation in Buildings. International Journal of Thermophysics, 42(2); 1–18, https://doi.org/10.1007/s10765-020-02780-y10.1007/s10765-020-02780-ySearch in Google Scholar
McGraw-Hill (2004) Concise Encyclopedia of Science and Technology, 5thedn. McGraw-Hill, New York, pp. 1062, 1254Search in Google Scholar
Standard A (2008) Facts about particleboard and MDF EWPAIA. Australian Wood Panels Association Incorporated, https://www.ewp.asn.auSearch in Google Scholar
ASTM D1037 (2012) Standard Test Methods for Evaluating Properties of Wood-Based Fiber and Particle Panel Materials. ASTM International, West Conshohocken, PASearch in Google Scholar
FDe Souza, CHS Del Menezzi, GB Júnior (2011) Material properties and non-destructive evaluation of laminated veneer lumbaer (LVL) made from Pinus oocarpaandP. kesiya. European Journal of Wood and Wood Products, 69; 183 – 193, https://doi.org/10.1007/s00107-010-0415-010.1007/s00107-010-0415-0Search in Google Scholar
EN312 (2010) Particleboards specifications. European Committee for Standardization, Brussels, BelgiumSearch in Google Scholar
TT Law, ZAM Ishak (2010) Water absorption and dimensional stability of short kenaf fiber filled polypropylene composites treated with maleated polypropylene. Journal of Applied Polymer Science, 120(1); 563 – 572, https://doi.org/10.1002/app.3318Search in Google Scholar
AJ Fontana, B Wacker, CS Campbell, GS Campbell (2001) Simultaneous thermal conductivity, thermal resistivity, and thermal diffusivity measurement of selected foods and soil. The Society for Engineering in Agricultural Food and Biological Systems. Paper Number: 01 – 6101, An ASAE Meeting Presentation10.13031/2013.5543Search in Google Scholar
BF Adeosun, O Alaofe (2002) Thermodynamic parameters of stretching and thermal conductivity of loaded natural rubber. Journal of Chemical Society of Nigeria, 27(2); 128 – 135Search in Google Scholar
ERE Rajput (2015) Heat and Mass Transfer, 6th Revised edn. S. Chand & Company PVT Ltd, Ram Nagar, New Delhi, p. 15Search in Google Scholar
J Twidell, T Weir (1990) Renewable Energy Resources. E and F.N. Spon, London, p. 418Search in Google Scholar
Walls and Ceiling Time Life (1980) Home Repair and Improvement Ceilings Time Life Books. Time Warner Inc, USA, Alexandria, pp. 83 – 85Search in Google Scholar
CO Ataguba (2016) Properties of ceiling boards produced from a composite of waste paper and rice husk. International Journal of Advances in Science Engineering and Technology, 2; 117 – 121Search in Google Scholar