Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
The result of the study have been presented on life cycle assessment used to assess new manufacturing methods for sustainability and design from environmental perspective. The sustainable product development integrated with life cycle assessment has been used for design of ensuring sustainable product. The objective of the present investigation was to develop a systematic method with environmental consciousness in the selection of alternative materials used in the components, meeting the performance and functional requirements and reducing the environmental impact associated with the product life cycle. The experiments were carried out using a monoblock pump stator and rotor subassembly components. The environmental impact of CO2, SO2, dichlorobenzene, ethene, and chloro-fluorocarbon (CFC-11) has been evaluated by the Centrum Voor Milieukunde Leiden (CML) methods during the process of metallurgy and refining, manufacturing, life cycle assessment (operation) and disposal and recycle. It was observed that there will be considerable reduction in pollutant emission and environmental impact.
Czasopismo
Rocznik
Tom
Strony
113--122
Opis fizyczny
Bibliogr. 19 poz., rys.
Twórcy
autor
- Department of Mechanical Engineering, Hindusthan College of Engineering and Technology, Othakkalmandapam, Coimbatore-641032, India
autor
- Adithya Institute of Technology, Kurumba Palayam, Coimbatore-641107, India.
Bibliografia
- [1] World Commission on Environment and Development, Brundtland report on our common future, United Nations, 1987.
- [2] VINODH S., JAYAKRISHNA K., Environmental impact minimization in an automotive component using alternative materials and manufacturing process, Mater. Des., 2011, 32, 5082.
- [3] YAGI K., Materials design for minimizing environmental load – ecomaterials, Bull Jpn. Inst. Met., 1997, 36 (9), 969.
- [4] YANG Q.Z., Life cycle assessment in sustainable product design, SIM Tech Technical Reports 2007, 8, 57.
- [5] SONG Y.S., YOUN J.R., GUTOWSKI T.G., Life cycle energy analysis of fiber reinforced composites, Composites Part A, 2009, 40, 1257.
- [6] AHMAD T., MAY Y.A.S., QATTAWI A., MAYYAS A.R., OMAR M.A., Life cycle assessment-based selection for a sustainable lightweight body-in-white design, Energy, 2011, 39, 412.
- [7] VINODH S., RATHOD G., Integration of ECQFD and LCA for sustainable product design, J. Clean. Prod., 2010, 18, 833.
- [8] KANCHANAPIYA P., UTAKA J., Life cycle assessment of lead acid battery. Case study for Thailand, Environ. Prot. Eng., 2013, 39, 101.
- [9] SENTHILKUMARAN D., ONG S.K., TAN B.H., NEE A.Y.C., Environmental life cycle cost analysis of products, Environ. Manage. Health, 2001, 12 (3), 260.
- [10] KHAREL G.P., CHARMONDUSIT K., Eco-efficiency of iron rod industry in Nepal, J. Clean. Prod., 2008, 16, 1379.
- [11] ELICECHE A.M., CORVALAN S.M., MARTINEZ P., Environmental life cycle impact as a tool for process optimization of a utility plant, Comput. Chem. Eng., 2007, 31, 648.
- [12] VINODH S., JAYAKRISHNA K., JOY D., Environmental impact assessment of an automotive component using eco-indicator and CML methodologies, Clean. Techn. Environ. Policy, 2012, 14, 333.
- [13] International Organization for Standards (ISO), Environmental management. Life cycle assessment – Principles and framework, ISO 14040, Geneve 2006.
- [14] International Organization for Standards (ISO), Environmental management. Life cycle assessment. Requirements and guidelines, ISO 14044, Geneve 2006.
- [15] Pre Consultants, GaBi LCA software, Germany 2010.
- [16] ANDERSSON K., OHLSSON T., OLSSON P., Screening life cycle assessment (LCA) of tomato ketchup. A case study, J. Clean. Prod, 1998, 6, 277.
- [17] PARIS H., MUSEAU M., Contribution to the environmental performance of the dry-vibratory drilling technology, CIRP Annals, Manufact. Technol., 2012, 61, 47.
- [18] MONTEIRO H., FREIRE F., Life cycle assessment of a house with alternative exterior walls. Comparison of three impact assessment methods, Energy Build., 2012, 47, 572.
- [19] GONZALEZ-GARCIA S., HOSPIDO A., MOREIRA M., ROMERO J., FEIJOO G., Environmental impact assessment of total chlorine free pulp from Eucalyptus globulus in Spain, J. Clean. Prod., 2009, 30,
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-a10a3672-aa31-4de4-bb05-f94fcd764083
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