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Article
Publication date: 2 November 2023

Visar Hoxha, Hasan Dinçer and Serhat Yuksel

This study aims to investigate the strategic priorities of green building projects and analyze energy consumption alternatives in green residence projects using two innovative…

Abstract

Purpose

This study aims to investigate the strategic priorities of green building projects and analyze energy consumption alternatives in green residence projects using two innovative methods.

Design/methodology/approach

This study uses two methods, decision-making trial and evaluation laboratory (DEMATEL) to measure strategic priorities and golden-cut quantum spherical fuzzy technique for order preference by similarity to the ideal solution (TOPSIS) to analyze energy consumption alternatives.

Findings

The study reveals that sustainability and atmosphere are the most significant factors in determining the priorities of green residence projects, whereas innovation has a limited impact on addressing environmental challenges in the building sector. The ranking of energy use alternatives shows that sustainability issues and atmosphere quality of space heating and cooking are the top priorities, whereas other factors like white goods, water heating, lighting and space cooling are ranked lower.

Originality/value

This paper offers a significant contribution to the understanding of green buildings by introducing innovative methodological approaches. Theoretically, it uses the DEMATEL to enhance traditional analytical frameworks, marking a novel effort in understanding green residence projects. In addition, the golden-cut quantum spherical fuzzy TOPSIS method is introduced, offering a comprehensive decision-making framework for green projects, considering factors like energy consumption and economic feasibility. This combination of methodologies provides a holistic evaluation, emphasizing sustainability in green building construction. This study reveals untapped potential for environmental sustainability and energy efficiency, enriching the existing knowledge base.

Details

International Journal of Energy Sector Management, vol. 18 no. 6
Type: Research Article
ISSN: 1750-6220

Keywords

Article
Publication date: 29 November 2024

Ghassan Adhab Atiyah, Ahmed Ismael Ibrahim and Ahmed Abdulkhudhur Jasim

This research aims to explore the complexities surrounding smart contracts enforcements in cross-jurisdictional transactions.

Abstract

Purpose

This research aims to explore the complexities surrounding smart contracts enforcements in cross-jurisdictional transactions.

Design/methodology/approach

To achieve the aim of this study, doctrinal legal analysis was adopted. Although the subject is multidisciplinary, the aspect of enforcement in cross-jurisdictional transactions from legislative analysis does not require a technical method to be analysed, hence the adoption of this method. Where relevant legal academic journal articles were sourced and analysed along different legislative frameworks in some jurisdictions under review. To determine the legality of smart contracts, applicable law and court with jurisdiction to enforce blockchain smart contract disputes.

Findings

It was discovered that there remain fundamental questions regarding jurisdiction, applicable law and enforcement. Due to the problem of a uniform legislation to manage smart contract transactions.

Research limitations/implications

This study limits itself to the legality of smart contracts within a conflict of laws, and it propels the need for either a choice of domestic legislation for parties to be bound or the adoption of a universal legal framework for all smart contract formation through an international treaty or convention that has a binding effect on contracting parties to a smart contract.

Originality/value

This study highlights the fact that the key elements of smart contracts within traditional contract requirements as provided in domestic legislation vary across jurisdictions. This variation results not only in conflict of law but also affects enforcement in cases of dispute in the contractual terms.

Details

International Journal of Law and Management, vol. ahead-of-print no. ahead-of-print
Type: Research Article
ISSN: 1754-243X

Keywords

Article
Publication date: 6 September 2024

Gobi Nallathambi, Rajalekshmi Akasaperumal and Berly Robert

This research focuses on the development and characterization of oil-wetted spun-bonded polypropylene (PP) non-woven filters for improved air intake systems in automobiles. The…

Abstract

Purpose

This research focuses on the development and characterization of oil-wetted spun-bonded polypropylene (PP) non-woven filters for improved air intake systems in automobiles. The study aims to enhance engine performance, durability, fuel economy and emission reduction by addressing key aspects such as contaminants filtration efficiency, loading capacity, pressure drop, temperature performance and longevity.

Design/methodology/approach

The research methodology involves the utilization of textile fabrics, particularly oil-wetted spun-bonded PP non-woven filters, renowned for their effective particle collection capability from intake air. Experiments were conducted using a Box–Behnken design with three variables – oil concentration, areal density and dust quantity – each at three different levels to establish correlations with the filter’s dust holding capacity (DHC) and pressure drop.

Findings

The findings indicate that immersing particles in oil-coated medium significantly enhances the filter’s DHC. Notably, castor oil as a coating demonstrates remarkable results, with a 97.53% increase in DHC and a high particulate matter filtration efficiency of 94.12%.

Originality/value

This study contributes to the originality of research by emphasizing the importance of oil density in determining the filter’s DHC and filtration efficiency. Furthermore, it highlights the superiority of castor oil over coconut oil-coated filter media, advancing air intake and/or filter systems for automotive engines.

Details

International Journal of Clothing Science and Technology, vol. 36 no. 6
Type: Research Article
ISSN: 0955-6222

Keywords

Article
Publication date: 16 October 2023

Nonsikelelo Sheron Mpofu, Josphat Igadwa Mwasiagi, Cleophas Achisa Mecha and Eric Oyondi Nganyi

This study aims to investigate the potential use of potato peel extracts as antibacterial finishes for cotton fabrics against Staphylococcus aureus and Escherichia coli. Potato…

Abstract

Purpose

This study aims to investigate the potential use of potato peel extracts as antibacterial finishes for cotton fabrics against Staphylococcus aureus and Escherichia coli. Potato peels are abundant as waste and provide a natural, cheaper and sustainable alternative means of preventing the spread of bacterial infections on cotton fabric.

Design/methodology/approach

This research included the characterization of potato peel extracts, application of the extract onto cotton fabric and efficacy testing of the treated cotton fabric against bacteria. Phytochemical screening, agar well diffusion antibacterial test, minimum inhibitory concentration and Fourier transform infrared (FTIR) tests were used to characterize the extract. Antibacterial efficacy of the treated fabric was determined qualitatively using the disc diffusion assay and quantitatively using the bacteria reduction test.

Findings

Phytochemical screening confirmed the presence of several secondary metabolites including phenols and flavonoids. Antibacterial tests revealed a positive response in Escherichia coli and Staphylococcus aureus with a zone of inhibition of 6.50 mm and 5.60 mm, respectively. Additional peaks on the FTIR spectroscopy confirmed the presence of potato peel extract on the treated cotton fabric. The treated cotton fabrics showed efficacy against Staphylococcus aureus and Escherichia coli up to 20 washes.

Originality/value

This study introduced the application of potato peel extracts onto cotton fabrics and assessment of the antibacterial properties before and after washing. Results of this study suggest that potato peel extracts can be used as an organic eco-friendly antibacterial finish for cotton fabrics.

Details

Research Journal of Textile and Apparel, vol. 29 no. 1
Type: Research Article
ISSN: 1560-6074

Keywords

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