Innovations, Investments, and Sustainable Development of Ecological Technologies
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Keywords

Digital ecosystem
Ecological technologies
Innovations
Investments
Sustainable development
Challenges
Government intervention
Collaboration
Economic benefits

DOI

10.26689/erd.v6i3.6640

Submitted : 2024-02-28
Accepted : 2024-03-14
Published : 2024-03-29

Abstract

Anthropogenic impact leads to a significant deterioration of the Earth’s ecology, negatively affecting demographic potential and public health. Hence, innovative ecological technologies are necessary to improve this situation. The article explores the development of such technologies in digital ecosystems, highlighting the challenges of their implementation and the problems associated with environmental issues. The author emphasizes the importance of government intervention, creating a favorable environment for investments, and the necessity of collaboration among various stakeholders. This article examined the prospects of integrating environmentally friendly technologies into digital ecosystems and proposed practical approaches to address environmental issues. The scholarly contribution lies in analyzing the connections between digital technologies and ecological sustainability, as well as providing practical recommendations to overcome challenges in this field.

References

Petit O, Velasco C, Spence C, 2019, Digital Sensory Marketing: Integrating New Technologies into Multisensory Online Experience. Journal of Interactive Marketing, 45(3): 42–61.

Chen J, Gao M, Ma K, et al., 2020, Different Effects of Technological Progress on China’s Carbon Emissions Based on Sustainable Development. Business Strategy and the Environment, 29(2): 481–492.

Breidbach CF, et al., 2016, Technology-Enabled Value Co-Creation: An Empirical Analysis of Actors, Resources, and Practices. Industrial Marketing Management, 56: 73–85.

Danish, Baloc MA, Mahmood N, Wu JZ, 2019, Effect of Natural Resources, Renewable Energy, and Economic Development on CO2 Emissions in BRICS Countries. Sci Total Environ, 678: 632–638.

Brodie R, Fehrer J, Jaakkola E, et al., 2019, Actor Engagement in Networks: Defining the Conceptual Domain. Journal of Service Research, 22(2): 173–188.

Ganda F, 2019, The Impact of Innovation and Technology Investments on Carbon Emissions in Selected Organizations for Economic Co-Operation and Development Countries. Journal of Cleaner Production. 217: 469–483.

Alur A, Shrivastav P, Jumde A, 2014, Haptic Technology: A Comprehensive Review of Its Applications and Future Prospects. International Journal of Computer Science and Information Technologies, 5(5): 6039–6043.

Sreelakshmi M, Subash TD, 2017, Haptic Technology: A Comprehensive Review on its Application and Future Prospects. Materials Today Proceedings, 4(2): 4182–4187.

Jiang Z, Wang Z, Zeng Y, 2019, Can Voluntary Environmental Regulation Promote Corporate Technological Innovation? 29(2): 390–406.

Belk RW, 2013, Extended Self in a Digital World. Journal of Consumer Research, 40(3): 477–500.

Barney J, 1991, Firm Resources and Sustained Competitive Advantage. J Manag, 17(1): 99–120.

Pekovic S, Bouziri A, 2021, Overcoming Obstacles to Innovation: Can Environmental Management Practices Help? Knowledge Management Research and Practice, 21(2): 345–360.

Abdelkareem MA, Haj Assad MEL, Sayed ET, et al., 2018, Recent Progress in The Use of Renewable Energy Sources to Power Water Desalination Plants. Desalination, (435): 97–113.

Jordaan SM, Romo-Rabago E, Romaine M, et al., 2017, The Role of Energy Technology Innovation in Reducing Greenhouse Gas Emissions: A Case Study of Canada. Renewable and Sustainable Energy Reviews, 78: 1397–1409.