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Cost-Benefit Analysis of Construction Material Wastage, Its Causes, Adaptation and Financial Influences on High-Rise Structure
Subject area: Science,Engineering and Technology · Area of research: Civil Engineering
Abstract
Construction costs form part of the overall costs incurred during the development of a built asset such as a building. Construction cost is one of the peak criteria of success of a project throughout its lifecycle and is of high concern to those who are involved in the construction industry. Shaping the methodological basis of professional cost management it is possible to speak about a new direction in the development of the construction pricing. Effective management of solid waste has become environmentally and economically mandatory due to the increase of environmental problems. The evaluation of economic aspects is imperative since the implementation of a solid waste management system is connected with considerable investment and operating costs. The Economic Evaluation was performed based on a cost structure, which we have to analyze the waste management scenarios from a cost perspective.
Keywords
Construction costs, Real Estate Regulatory Authority (RERA), Waste management techniques, RERA & GST Effect, Benefits, Economic Feasibility, impacts, Compositing cost, Construction and Demolition Waste.
References
[1] Iasi County Council. 2009. Long-term investment plan for the period 2008–2038 on integrated waste management [online], [cited 14 November 2015].
[2] Xin-gang, Z.; Gui-wu, J.; Ang, L.; Yun, L. 2016. Technology, cost, a performance of waste-to-energy incineration industry in China, Renewable and Sustainable Energy Reviews 55: 115– 130
[3] World Bank. 2011. Solid waste management in Bulgaria, Croatia, Poland and Romania. A cross-country analysis of sector challenges towards EU harmonization. Reports No.60078–ECA [online], [cited 14 November 2015]. Available from Internet: https://openknowledge.worldbank.org/bitstream/handle/10986/2754/600780ESW0WHIT andcandidates0FINAL. Pdf? sequence=1
[4] Weng, Y.-C.; Fujiwara, T. 2011. Examining the effectiveness of municipal solid waste management systems: An integrated cost-benefit analysis perspective with a financial cost modeling in Taiwan, Waste Management 31(6): 1393–1406.
[5] Available from Internet: http:// www.icc.ro/activitate/mediu/MasterP/MasterPlan.pdf (in Romanian)
[6] Hernández–Berriel, M. C.; Mañón-Salas, M. C.; Buenrostro-Delgado, O.; Sánchez- Yáñez, H. M., Márquez-Benavides, L. 2014. Landfill leachate recirculation. Part I: Solid waste degradation and biogas production, Environmental Engineering and Management Journal 13(10): 2687–2695.
[7] Den Boer, E.; den Boer, J.; Jager, J.; Rodrigo, J.; Meneses, M.; Castells, F.; Schanne, L. 2005. The use of life cycle assessment tool for the development of integrated waste management strategies for cities and regions with rapid growing economies LCA–IWM. Deliverable report on D3.1 and D3.2: Environmental sustainability criteria and indicators for waste management (Work Package 3). Technical University of Darmstadt, Darmstadt, Germany, 1–198.
[8] Brunner, P. H.; Rechberger H. 2015. Waste to energy – key element for sustainable waste management, Waste Management 37: 3–12.
[9] Begum, R. A., Satari, S. K. and Pereira, J. J., (2010). Waste Generation and Recycling: Comparison of Conventional and Industrialized Building Systems. American Journal of Environmental Sciences, 6(4), 383-388.
[10] M. F. a. Goosen, “Environmental management and sustainable development,” Procedia Engineering, vol. 33, pp. 6–13, Jan. 2012
[11] Somani M., Datta M., Ramana G.V. and Sreekrishnan T.R. (2019). “Leachate Characteristics of Aged Soil-Like Material from MSW Dumps: Sustainability of Landfill Mining.” Journal of Hazardous, Toxic and Radioactive Waste, ASCE, 23(4), 04019014.
[12] Bučinskas, A., Kriipsalu, M., & Denafas, G. (2018). “Proposal for feasibility assessment model for landfill mining and its implementation for energy generation scenarios.” Sustainability, 10(8), 2882.
[13] Schneider, P., Anh, L. H., Wagner, J., Reichenbach, J., & Hebner, A. (2017). “Solid waste management in Ho Chi Minh City, Vietnam: moving towards a circular economy?” Sustainability, 9(2), 28
How to cite this paper
@article{1708056,
author = {Rajesh Kumar Singh, Prof. Gaurav Vispute},
title = {Cost-Benefit Analysis of Construction Material Wastage, Its Causes, Adaptation and Financial Influences on High-Rise Structure},
journal = {Iconic Research And Engineering Journals},
year = {2024},
volume = {7},
number = {9},
pages = {522-529},
issn = {2456-8880},
url = {https://www.irejournals.com/formatedpaper/1708056.pdf},
abstract = {Construction costs form part of the overall costs incurred during the development of a built asset such as a building. Construction cost is one of the peak criteria of success of a project throughout its lifecycle and is of high concern to those who are involved in the construction industry. Shaping the methodological basis of professional cost management it is possible to speak about a new direction in the development of the construction pricing. Effective management of solid waste has become environmentally and economically mandatory due to the increase of environmental problems. The evaluation of economic aspects is imperative since the implementation of a solid waste management system is connected with considerable investment and operating costs. The Economic Evaluation was performed based on a cost structure, which we have to analyze the waste management scenarios from a cost perspective. },
keywords = {Construction costs, Real Estate Regulatory Authority (RERA), Waste management techniques, RERA & GST Effect, Benefits, Economic Feasibility, impacts, Compositing cost, Construction and Demolition Waste.},
month = {March},
}