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Economic and environment-friendly design focuses on a reduction of construction material used, construction time spent and energy consumed within the buildings construction and service time.
Three methods (eco-efficiency, environmental priority strategy (EPS) system, and certified emission reduction (CER) price) have been proposed to support the decision-making processes that simultaneously consider cost and CO2 emission in acquiring an economical and environment-friendly design.
A new magnetic porous carbon-doped graphitic carbon nitride nanocomposite and experimental strategies were environment-friendly designed for solid phase extraction of brominated flame retardants from water sample.
These include enforcing BEC constraints on new building projects, promoting more environment friendly building designs, establishing a more sophisticated legislation for building energy conservation, and increasing the total budget in the area of BEC control.
Present work has been carried out to design environment friendly new biopolymer electrolytes (BPEs) using cellulose acetate (CA) complex with different concentrations of ammonium nitrate (NH4NO3), which have been prepared as film and characterized.
Many inhibitors were applied to reduce the VOCs emissions for designing environment friendly bituminous material.
Economically favorable, environment friendly, multifunctional, and easy to design, hybrid nanomaterials have demonstrated their enormous potential as target drug delivery vehicles.
The results obtained in this study would enhance our knowledge on heavy metal transformation in pyrolysis and would be useful in designing an environment friendly approach to utilize this Zn-rich AR or other biowaste with similar characteristics.
Hence, the preservation of the Australian as well as global ocean environments from the detrimental effects of muds and mud additives dictates the design of better environment friendly drilling mud systems using mud additives having no/negligible environmental impact.
This paper aims to develop approaches for the integration of Life Cycle Assessment (LCA) with computer-aided product development so as to enhance the environment-friendly product design and manufacturing.
The proposed approach is expected to ease the difficulties in performing LCA, especially in sorting, retrieval and integration of valuable data from exiting product and process models for life cycle modelling, and thus to better facilitate environment-friendly product design and manufacturing.
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