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Eco-conscious photocatalytic degradation of organic textile dyes using green synthesized silver nanoparticles: a safe and green approach toward sustainability
Green synthesized nanoparticles from Strobilanthes barbatus leaf extracts are environmentally safe and feasible for enduring wastewater treatment, especially for organic textile dye degradation. The synthesized Strobilanthes barbatusmediated silver/silver-oxide nanoparticles (SB-Ag/AgO NPs) showed maximum absorbance at 428nm. The SB-Ag/AgO NPs were generally spherical with an average diameter of 37.59nm (FESEM and TEM analysis). The importance of functional groups in the production of SB-Ag/AgO NPs was recorded by FTIR investigations. In the degradation and rate of degradation for textile dyes, after 320min, SB-Ag/AgO NPs displayed 96.60% (5.31 10?1 L mg?1min?1) and 87.50% (1.179 10?1 L mg?1min?1) degradation of Reactive Blue 220 (RB-220) and Reactive Blue 222A (RB-222A), respectively. When compared to dye effluents, SB-Ag/AgO NPs-treated dye solutions revealed a considerable decrease in inhibitory efficiency during phytotoxicity evaluation on test organisms, Vigna radiata and Artemia salina. The biosynthesized SB-Ag/AgO NPs could serve as a feasible photocatalyst for the treatment of organic textile dyes in organic substancepolluted water ecosystems. SB-Ag/AgO NPs can serve as efficient, cost-effective and environmentally friendly sources for dye degradation. The current research offers a safe and environmentally friendly strategy for sustaining the environment. The Author(s), under exclusive licence to Springer-Verlag GmbH Germany, part of Springer Nature 2024. -
Eco-Conscious Silver Nanoparticles via Quassia indica: Characterization and Multifaceted Applications
This research work explores the green synthesis of silver nanoparticles using Quassia indica (QI-Ag NPs), a natural plant extract, as a stabilizing and reducing agent. The synthesized QI-Ag NPs were characterized using various analytical techniques, including UV-Visible spectroscopy, X-ray Diffraction (XRD), Scanning Electron Microscopy (SEM), Energy Dispersive X-ray Spectroscopy (EDX), Transmission Electron Microscopy (HR-TEM) and Selected Area Electron Diffraction (SAED). The UV-Visible analysis revealed a characteristic peak at 430 nm, indicating the successful formation of AgNPs. XRD analysis unveiled the crystalline nature of the nanoparticles, with four distinctive peaks corresponding to the silver crystallographic planes. SEM and EDX provided insights into the morphology and chemical composition of the QI-AgNPs. Moreover, TEM and SAED elucidated the structural attributes and crystallinity of the nanoparticles. The Ag NPs exhibited a spherical structure and crystalline nature, as supported by both SAED and XRD findings. The zeta potential of QI-Ag NPs exhibited a value of-24.2 mV. The synthesized QI-Ag NPs were evaluated for their photocatalytic potential, demonstrating a remarkable 97% degradation of Crystal Violet dye. Furthermore, comprehensive studies encompassing antioxidant, antimicrobial and cytotoxicity assessments were conducted, showcasing the multifaceted applications of these nanoparticles. This research underscores the promising potential of Q. indica-mediated silver nanoparticles as environmentally benign and versatile nanomaterials. 2024 World Scientific Publishing Company. -
Eco-friendly AgZnO Nanocomposites Synthesis and Their Role as Photocatalyst for Textile Dye Degradation
Recent research in the field of nanotechnology revealed that plant extract and their derivatives are good stabilizing and reducing agents. Artemisia stelleriana (Dusty Miller) is widely used as an ornamental plant. The current study, explores one-pot method to synthesise A. stelleriana-mediated silver/ zinc oxide nanocomposites (AS-Ag/ZnONCs). Using UV-visible spectrophotometer, scanning electron microscopy, energy-dispersive X-ray, Transmission Electron Microscope, X-ray diffraction, and Fourier transform infrared spectroscopy the characterisation of the synthesised AS-Ag/ZnONCs was examined. The crystalline size of the AS-Ag/ZnONCs was determined to be 45.39nm using the Williamson-hall equation. Irregular-shaped nanocomposites were observed from AS-Ag/ZnONCs, exhibiting an average size of 35.2nm. To check the activity of AS-Ag/ZnONCs as photocatalysts to degrade RY145, RY86, RB222A and RB220 dyes was determined. The order of photocatalytic activity of AS-Ag/ZnONCs was as follows: RY145 > RB220 > RB222A > RY86. Low toxicity was observed when Vigna radiata (Mung bean) and Artemia salina (Brine shrimp) were exposed to treated dye solutions using AS- Ag/ZnONCs when compared with untreated dye solutions. The Author(s), under exclusive licence to Springer Science+Business Media, LLC, part of Springer Nature 2025. -
Eco-friendly innovations in food packaging: A sustainable revolution
Packaging is crucial in ensuring the quality and safety of food, protecting it from various contaminants, and extending its shelf life. Materials used for packaging food must be economical, durable, and possess good barrier properties. One of the major challenges faced by the food industry is developing an eco-friendly, economical, and sustainable packaging system. The conventional materials, which majorly depend on petroleum-derived polymers, are associated with several significant problems, such as environmental pollution, depletion of resources, generation of single-use wastes, leakage of chemicals into food products, limited recycling, and so on. As the food sector focuses on reducing its environmental impact, by encouraging revolutionary changes for an effective sustainable food packaging approach. The core objective of industrial packaging was to innovate a biodegradable material, especially derived from renewable biomass resources as eco-friendly alternatives in the food industry. One of the significant trends involves production of bioplastics, which are derived from renewable polymers such as corn starch, sugarcane, or algae. These materials offer a viable alternative to traditional petroleum-based plastics, as they are often compostable or biodegradable. The development of advanced bioplastics with improved barrier properties and durability is gaining traction, addressing environmental and health concerns and functionalizing a packaging material. The present review discusses the limitations of conventional packaging materials used in the food industry and focuses on the various polymers derived from natural sources, their physio-chemical properties, and their potential application as a sustainable material that reduce carbon emission, and enhance preservation of food and ensure food safety. 2024 Elsevier B.V. -
Eco-friendly operations in Reality: Analysis of key factors of sustainability performance in manufacturing companies
Sustainable product design (SPD) focuses on eco-friendly products. The energy efficiency (EE) optimizes energy use in buildings, transportation, and industry. The policies that reduce the consumption at the macro-level rebound effects are debated. The evidence leans toward waste management (WM) needing strategies like recycling and source reduction in developing countries. This study examines the sustainable product design, energy efficiency, and waste management on overall sustainability performance in manufacturing companies. The study used correlation analysis, descriptive statistics, and multiple linear regression to quantify the significance of these factors. Results show that all three variables significantly contribute to sustainability performance and support the hypotheses. SPD, EE, and WM positively impact overall sustainability performance, and evidence leans toward strong relationships among variables, but multicollinearity could complicate findings. 2026 selection and editorial matter, Jossy George, Kamal Upreti, Ramesh Chandra Poonia, Ankit Gautam, and Danish Nadeem; individual chapters, the contributors. -
Eco-friendly packaging in fashion and retail: Aligning style with sustainability
The chapter identifies gaps in current research, particularly in developing countries, and calls for further studies on consumer perceptions, economic feasibility, and innovations in packaging materials and technologies. Future research directions are proposed, focusing on consumer trust in sustainability claims, cost-benefit analyses of eco-friendly packaging, and the development of new biodegradable alternatives. Overall, the chapter serves as a critical resource for understanding the challenges and opportunities in advancing sustainable packaging practices in the fashion and retail sectors, emphasizing the necessity of collaborative efforts to foster environmental stewardship and encourage environmentally friendly consumption habits. 2025, IGI Global Scientific Publishing. All rights reserved. -
Eco-friendly synthesis of NiO and Ag/NiO nanoparticles: Applications in photocatalytic and antibacterial activities
Herein, NiO and Ag/NiO NPs were produced via the solution combustion method using nickel nitrate and silver nitrate as oxidizers and Cocos nucifera water as a fuel at 450C. The study also explores their applications in photocatalytic dye degradation, H 2 production and antibacterial properties. The primary advantage of using C. nucifera water as a green fuel in the solution combustion method is that it serves a dual purpose - both as a fuel and as a solvent. This eliminates the need for additional water to create a homogeneous redox mixture of fuel and oxidant in the experimental procedure. X-ray diffraction confirmed the existence of Ag in the bunsenite form of rhombohedral structure with a simple cubic system, with particles sized at 31-44 nm. Energy-dispersive X-ray spectroscopy revealed Ni, O and Ag weight percentages of 48.2, 44.5 and 7.3%, respectively. X-ray photoelectron spectroscopy confirmed the formation of Ag in NiO nanostructure. UV-visible spectrometry showed reduced band gap energy of Ag/NiO NPs (3.03-2.87 eV) compared to the bare NiO NPs (3.21 eV), red shift of the optical response towards the visible region after doping Ag into the NiO. The 0.3 wt% Ag/NiO NPs showed the highest quantum efficiency (0.781) among the other synthesized NPs. Fourier-transform infrared spectroscopy revealed absorption bands in the range of 460-900 cm -1 stretching vibrations of Ni-O and Ag-O. Photoluminescence spectroscopy indicated that a doping concentration of 0.3 wt% Ag effectively introduces donor levels, defect levels and surface trap states within the NiO nanocrystalline structure, enhancing charge carrier separation and reducing recombination. Scanning electron microscopy revealed a voluminous, porous surface morphology characterized by numerous voids, resulting from the release of various combustible gases during the combustion process. Transmission electron microscopy images showed that most particles were spherical, irregular in size and well-distributed, with minimal aggregation with an average particle size of 25.8 nm. BET analysis of both NiO and 0.3 wt% Ag/NiO NPs exhibited type IV adsorption isotherms, indicating mesoporous structures and a clear monolayer-multilayer adsorption process, 0.3 wt% Ag/NiO NPs showed the highest surface area (170 m2 g-1) compared to the NiO (130 m2 g-1) NPs. Ag/NiO NPs has demonstrated a promising H2 evolution rate of 1212 ?mol g-1 under visible light illumination in a water/ethanol system. The trypan blue dye degradation reaches up to 98% and has moderate stability for the reusable photocatalysis process. The synthesized NPs exhibited significantly enhanced antibacterial activity against a range of bacterial strains. 2025 The Authors. -
Eco-friendly synthesized nanoparticles as antimicrobial agents: an updated review
Green synthesis of NPs has gained extensive acceptance as they are reliable, eco-friendly, sustainable, and stable. Chemically synthesized NPs cause lung inflammation, heart problems, liver dysfunction, immune suppression, organ accumulation, and altered metabolism, leading to organ-specific toxicity. NPs synthesized from plants and microbes are biologically safe and cost-effective. These microbes and plant sources can consume and accumulate inorganic metal ions from their adjacent niches, thus synthesizing extracellular and intracellular NPs. These inherent characteristics of biological cells to process and modify inorganic metal ions into NPs have helped explore an area of biochemical analysis. Biological entities or their extracts used in NPs include algae, bacteria, fungi, actinomycetes, viruses, yeasts, and plants, with varying capabilities through the bioreduction of metallic NPs. These biosynthesized NPs have a wide range of pharmaceutical applications, such as tissue engineering, detection of pathogens or proteins, antimicrobial agents, anticancer mediators, vehicles for drug delivery, formulations for functional foods, and identification of pathogens, which can contribute to translational research in medical applications. NPs have various applications in the food and drug packaging industry, agriculture, and environmental remediation. Copyright 2023 Borehalli Mayegowda, Roy, N. G., Pandit, Alghamdi, Almehmadi, Allahyani, Awwad and Sharma. -
Eco-friendly valorization of fruit peels: Physicochemical and functional characterization for feed industry applications
The fruit processing industry generates large amounts of fruit peels as waste. These peels, however, are rich in bioactive compounds like flavonoids and phenolics, with excellent antioxidant properties. Utilizing them as feed ingredients provides an eco-friendly waste management solution and adds value to the processing chain. This study aimed to characterize the physicochemical (e.g., pH, ash, moisture content, crude lipid, crude fibre, carbohydrates content) and functional properties (e.g., bulk density, tap density, flowability, porosity, water and oil absorption capacities, foaming capacity, stability, and least gelation concentration) of selected fruit peels such as Carica papaya, Ananas comosus, Musa acuminata, and Punica granatum. The findings highlight the potential of the selected fruit peels as valuable feed ingredients. The low bulk density and tap density in M. acuminata peels (0.29 0.01 g. cm-3 and 0.31 0.01 g. cm-3, respectively) helps in enhanced palatability. M. acuminata peels also showed excellent water and oil absorption (5.30 0.10 mL. g-1 and 1.570.05 mL. g-1) and porosity (71.15 2.22), indicating their role as effective food hydrocolloids, improving digestibility and binding properties. Notably, P. granatum, C. papaya and A. comosus peels also demonstrated strong performance across all selected parameters, suggesting their utility in the feed industry. While the ash content was notably high in M. acuminata peels, all fruit peels exhibited high fibre content, which is beneficial for digestive health and gut functionality in livestock. These properties contribute to better feed stability, energy retention, and eco-friendly production, promoting sustainable waste valorization practices. 2025 University of Food Technologies Plovdiv. All rights reserved. -
Eco-market dynamics: deciphering Indias agricultural pricing in the context of carbon emissions and inflation
This study explores the intricate relationship between carbon emissions, agricultural commodity prices, and inflation in India. Using monthly data from January 2014 to March 2022 and structural vector auto regression (SVAR) modelling, the analysis reveals diverse dynamics among key; commodities. An inverse relationship is found between wheat prices and inflation, suggesting consumer benefits. Turmeric shows a strong negative correlation, indicating unique market behaviour, while refined soybean oil and cotton prices exhibit minimal negative impacts. In contrast, crude palm oil prices positively influence inflation. A noteworthy finding is the negative correlation between carbon emissions and inflation, highlighting the environmental-economic linkage. These insights enhance understanding of how specific agricultural prices interact with inflation, and how environmental variables play a role. The findings can guide evidence-based policies for agricultural stability, environmental sustainability, and economic growth in India. The implications extend globally, offering valuable insights for developing economies facing similar challenges. Copyright 2025 Inderscience Enterprises Ltd. -
EcoFlow choices: factors influencing sustainable menstrual hygiene product decisions
This study examines how knowledge and emotional response (affect) influence consumer buying behaviour toward eco-friendly menstrual hygiene products, with a particular focus on the mediating role of affect. A cross-sectional design was employed, and data were collected via an online survey of 356 urban Indian women using purposive sampling. Data were analysed using Structural Equation Modelling (SEM) with SPSS (v25) and AMOS (v24). The results reveal that both knowledge and affect significantly shape purchasing decisions. However, affect exerts a stronger influence than knowledge alone. Importantly, affect also mediates the relationship between knowledge and buying behaviour, underscoring the critical role of emotional engagement in promoting sustainable consumer choices. These findings suggest that marketing strategies should not only aim to inform consumers but also foster positive emotional connections with eco-friendly products. The study offers meaningful contributions to the field of green consumer behaviour and carries important implications for sustainability-driven marketing practices. It supports the goals of the United Nations Sustainable Development Agenda, particularly SDG 3 (Good Health and Well-being) and SDG 12 (Responsible Consumption and Production), by highlighting how promoting eco-friendly menstrual hygiene products can reduce environmental impact and support womens health. This research provides insightful implications for policymakers, marketers, and sustainability advocates to guide sustainable consumption behaviour among people. 2026 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. -
Ecofriendly Approaches for Ameliorating the Adverse Effects of Cadmium in Plants by Regulating Physiological and Defense Responses: An Overview
Mitigating cadmium stress in agricultural plants becomes extremely critical in order to assure food sufficiency in the scenario of a rapidly growing population. An extensive review of environmentally friendly methods for reducing cadmium toxicity in plants is provided in this chapter, with special attention to a variety of tactics like phytohormones, polyamines, melatonin, mineral ions, nanoparticles, and transgenic techniques. Nanoparticles are capable of changing the distribution of cadmium, activating antioxidant defense mechanisms, and boosting physiological processes that are crucial for plant resilience and growth. Microorganisms greatly increase plant resistance to cadmium stress by modifying phytohormones and regulating defense-related proteins. Phytohormones can increase a plants adaptability to cadmium stress through a number of mechanisms, such as the regulation of gene expression and physiological processes. Melatonin and polyamines provide protection against oxidative stress and heavy metal toxicity, while mineral ions such as silicon, calcium, zinc, iron, and selenium increase plant resistance to cadmium, minimizing pollution-related harm. Transgenic plants that are tolerant to cadmium exhibit enhanced detoxification processes and reduced metal accumulation. These findings provide important insights for long-term plant cadmium mitigation and highlight the significance of interdisciplinary approaches in managing heavy metal stress in agricultural systems. The Author(s), under exclusive license to Springer Nature Switzerland AG 2024. -
Ecological and Socioeconomic Triggers of Forest Fires in Uttara Kannada, India, and Their Impact on Biodiversity Conservation
This study studies the complex cause and consequence aspects of forest fire in the western ghats district of Uttara Kannada, Karnataka, India-a region particularly known for biodiversity. It singles out key factors influencing fire dynamics: natural or anthropogenic elements, such as lightning, droughts, and anthropogenic changes induced by socioeconomic change. Through field information and satellite image analysis, research shows how such climate change and increased human activities continue to fuel rising fire frequency and intensity, posing a threat to the ecological and biodiversity balance within the region. The study conclusion calls for collaborative forest management mechanisms that integrate grassroots practices with wider global conservation visions. This study puts forth actionable recommendations that improve the technique of fire management and prevention. These efforts seek to minimize ecological and economic damage brought about by forest fires. These efforts lead to better comprehension of the concept of ecosystem integrity and bring forward the relevance of preserving biodiversity against climatic and human challenges. 2025 The Author(s). -
Ecological contexts to environmental challenges: An overview of foundations and applications
Ecological contexts provide a critical framework for understanding the intricate relationships between living organisms and their environments. This encompasses a variety of foundational principles, from biodiversity and ecosystems to the dynamics of biogeochemical cycles. Understanding these contexts is essential to address pressing environmental challenges such as climate change, habitat loss, and pollution. By applying ecological concepts, researchers can analyze how species interactions, energy flow, and nutrient cycling contribute to ecosystem health and resilience. Moreover, ecological contexts offer valuable insights into sustainable practices and conservation strategies. Integrated approaches combining ecological knowledge with technological advancements can mitigate the effects of anthropogenic pressures. Therefore, an understanding of ecological contexts is vital for addressing contemporary environmental issues, fostering a balanced relationship between human activities and natural systems. 2025, IGI Global Scientific Publishing. All rights reserved. -
Econometric investigation of sectoral contributions to remittance inflows in Kerala using the VECM framework
The sustained outmigration from Kerala has significantly contributed to the surge in remittance inflows, which have become a critical driver of the states economic advancement. As India maintains its position as the worlds largest recipient of remittances, Kerala remains one of the most prominent subnational beneficiaries. Although remittances have historically played a pivotal role in shaping Keralas developmental trajectory, there is a growing imperative to channel these financial inflows into productive investments across various sectors of the economy. Within this context, an undisturbed system analysis identifies agriculture, industry, and services as key sectors potentially influenced by remittance flows. The present study utilises the Vector Error Correction Model (VECM) framework to investigate the sector-specific contributions to Keralas remittance-induced economic growth. This econometric approach facilitates an examination of both the long-term equilibrium relationships and short-term adjustments among the variables. The empirical findings highlight the differentiated impact of each sector, with particular emphasis on the significant role played by the agricultural and industrial sectors in attracting and sustaining remittance flows. The Author(s) 2026. -
Economic Analysis, Environmental Impact, Future Prospects and Mechanistic Understandings of Nanosensors and Nanocatalysis
It is crucial to understand the economic importance of sensors and catalysis. Economy always plays a major role in the field of nanotechnology. The ever-growing industrial revolution raises many concerns to understand the phenomena and to develop inexpensive devices for sensing applications. However, manufacturing such devices have caused a severe impact on environment. Thus, it is a requirement to understand the mechanistic aspects and also future prospects of nanosensors and catalysis to achieve sustainable technologies for the future. 2023 selection and editorial matter, Anitha Varghese and Gurumurthy Hegde; individual chapters, the contributors. -
Economic and sustainable management of wastes from rice industry: combating the potential threats
Rice is one of the imperative staple foods, particularly in the developing countries. The exponential boom in human population has resulted in the continuous expansion in the rice industry in order to meet the food demands. The various stages of paddy processing release huge quantity of solid wastes, mainly rice husk, rice husk ash and liquid wastes in the form of rice industry wastewater. The discharge of the rice industry wastewater imparts a substantial threat to the aquatic bodies and the nearby surrounding and, thus, consequently demands eco-benign treatment plan. As a result, different strategies are needed to enhance the effluent quality and minimize the operational cost of the treatment process. Therefore, efficient technological approach targeting the minimization of pollution as well as assuring the economic prosperity should be implemented. In this review article, several aspects related to the rice industry discussing the significant challenges involved in the generation of both solid and liquid wastes, mitigation experiments and future prospects have been meticulously elaborated. Furthermore, the article also focuses on the various processes utilized for reducing the pollution load and promoting the practice of reuse and recycle of waste rather than the discharge action for the sake of sustainability and the emergence of novel techniques for the generation of energy and value-added products. 2017, Springer-Verlag GmbH Germany. -
Economic and Urban Dynamics: Investigating Socioeconomic Status and Urban Density as Moderators of Mobile Wallet Adoption in Smart Cities
This research paper examines the complex correlation between socioeconomic factors, urban density, and the acceptance of mobile wallet technology in smart cities. The study investigates how socioeconomic status and urban density influence the adoption of mobile wallets. Smart cities have experienced a significant increase in the adoption of mobile payment solutions such as Apple Pay, and Google Pay, noted for their technological innovation and ability to enhance living standards. These digital payment platforms provide ease, security, and efficiency, revolutionizing how individuals engage in financial transactions and navigate urban environments. The study examines the many aspects that impact this phenomenon, focusing on the significance of comprehending how socioeconomic status and urban density influence the acceptance of mobile wallets. The study utilizes a meticulous research technique, which involves evaluating the reliability and validity of constructs, analyzing Heterotrait-Monotrait (HTMT) ratios, conducting tests for discriminant validity, and doing variance inflation factor (VIF) analysis. These measures are taken to ensure the strength and reliability of the report's conclusions. The research's importance is further supported by model fit statistics and hypothesis testing conducted through bootstrapping. The results emphasize that the inclusion of mobile wallet functions, the legal framework, and the development of smart city infrastructure have a substantial influence on the acceptance of mobile wallets. However, the impact of urban density on mobile wallet adoption is more intricate and multifaceted. This study provides significant insights into the dynamic field of technology uptake in urban regions, with implications for politicians, entrepreneurs, and urban planners seeking to promote financial inclusion and technological integration in smart cities. 2024 IEEE. -
Economic aspects of marine biopolymers
The usage of synthetic polymers such as plastic is a much-debated topic across the globe for a reason; it is not recyclable and harms the environment. However, todays consumers have shifted their preferences to eco-friendly products over harmful products. The biopolymers market globally accounted for about $13.7 billion in 2021, and by 2030, its projected to reach over $35.2 billion, growing at 11.07% [compound annual growth rate (CAGR)]. By 2026, the marine biotechnology sector will be worth $5 billion worldwide. Despite the manufacturing cost of marine biopolymers being higher than that of standard polymers, the market is growing faster because of its benefits across various industries and mainly for stakeholders. The biopolymer industry has evolved due to the depletion of petroleum reservoirs. Key players from countries such as the United States, Brazil, Germany, Netherlands, Italy, United Kingdom, Japan, Germany, and Australia are in the biopolymers market. Different classes of marine biopolymers and their industrial applications prove the precious value of ocean resources to society. 2025 Elsevier Ltd. All rights reserved. -
Economic globalization and unemployment: Evidence from high-, middle- and low-income countries
This study intends to empirically evaluate the effects of economic globalization and its components (i.e. trade and financial openness) on unemployment in high-, middle- and low-income countries from 1991 to 2020. Further, it considers real GDP per capita (sectoral divisions of income, i.e. agriculture, industry and service sector) and urbanization as control variables in the unemployment function. On the empirical front, this study employs the Panel Dynamic Simulated ARDL model and the Kernel-Based Regularized Least Squares for long-run influence estimations. The emanating outcome of these analyses states that economic globalization destroys employment opportunities for low-income countries as it enhances unemployment in the long run. However, in high- and middle-income countries, economic globalization creates employment, which implies reducing unemployment in the long run. The result also indicates that trade and financial openness destroy employment opportunities in low-income countries. Although trade openness in middle-income countries shows the same effect, financial openness does not mimic the same. For high-income countries, trade openness reduces unemployment, but financial openness fosters it. Therefore, these findings indicate that to keep unemployment at a low level, policies related to the opening up of the economy in terms of factor mobility, offshoring, outsourcing and international trade need to be implemented in low-income countries. Moreover, a similar consideration is needed for high and middle-income countries to avoid faraway repercussions on unemployment due to becoming a peripheral country. 2024 John Wiley & Sons Ltd.
