Blockchain Technology to Enhance Integrated Blue Economy: A Case Study in Strengthening Sustainable Tourism on Smart Islands
Abstract
:1. Introduction
2. Literature Review
2.1. Smart City, Smart Tourism, and Smart Islands
2.2. Blockchain Technology in Tourism Industry
2.3. Sustainable and Integrated Blue Economy
2.4. The Importance of Digital Literacy to Support Smart Destination
2.5. Previous Research on Smart Destination and Blockchain Technology
3. Material and Methods
3.1. Research Area
3.2. Variables Operationalization and Research Paradigm
4. Results
4.1. Qualitative Mapping by Utilizing VOSviewer
4.2. Structure Equation Modeling in the Development of Smart Islands
5. Discussion
6. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Scholars | Concept | Similarity | Difference |
---|---|---|---|
Smartness | |||
[3] | Smart tourism as important part and practical attempt of the smart city strategy that benefits from ICT as digital dimensions of smart living, smart mobility, smart governance, smart people, smart environment, and smart economy; thus, these dimensions can also be applied directly in tourism destinations. | Dimension of smart destination that refer to smart city | Concept exploration and empirical study |
[5] | Smart tourism as a complex amalgamation of all technological tools (soft and hard smartness) that bridges digital and physical element of tourism destination and creates a dynamic network tourism ecosystem in order to co-create value and experience for tourists and local people. | See smartness in destination of tourist interest | Qualitative to mixed-methods research |
[6] | Smart sustainable island has the same meaning as the term “smart sustainable city”, but it is applied to the entire region of an island, and that the entire island follows all the good practices to preserve the sustainable development and the protection of the environment, natural and urban, including the culture heritage, in a holistic and integrated manner. | Dimension of smart islands is smart economy, smart resources use, smart society, smart quality of life, and smart infrastructure | Case study to empirical study |
[15] | Smart city is a city related with technology, people, and technology | Dimensions used | Island as research object |
[20] | Smart tourism destinations are applying different ICTs in developing tourism processes, interconnecting all stakeholders, co-creating experiences and personalized services with customers, and supporting local people participatory and information governance for data openness and privacy. | BT application in smart destinations | Conceptual paper to empirical research |
[24] | Smart islands are the insular territory that are implementing smart and integrated solutions to the management of infrastructures, natural resources, and the environment as a whole, supported by the use of ICT to promote innovative and socially inclusive governance in order to create sustainable local economic development and a high quality of local people’s lives. | Empirical research on islands destination | Focus on identifying islands readiness to develop smart islands model |
[33] | Smartness in smart city or smart tourism destination is the combination of hard and soft components. The hard smartness component is advanced technological info/infrastructure, while soft smartness is ICT, leadership, innovation, and social capital. | Considering smart city concept could be applied to any type of tourism destination | Empirical research on island, while Boes et al. analyzed case-study mapping on smart cities in EU |
[36] | Smart tourism destination is the management of destination through interconnecting multi-stakeholders in a dynamic platform mediated by ICT to support a prompt information platform. | Exploring smart destination | Conceptual paper to empirical study to create smart islands’ model |
Blockchain Technology | |||
[4] | BT is a distributed‚ replicated‚ and immutable digital ledger allowing different parties to conduct business in a more trustful and transparent manner without the need for a central node of control. |
|
|
[11] | Blockchain as digital, decentralized, and distributed ledger in which transactions are logged and added in chronological order, with the goal of creating permanent and tamperproof records. | Blockchain for smart city development | Systematic literature review to empirical research for BT-based smart island model |
[19] | BT is a new way of organizing‚ recording‚ and processing information in blocks, which are provable‚ reliable, and long-lasting. | BT adoption case study in | BT adoption case study to BT-based smart islands model development |
[20] | Blockchain is a new disruptive technology with an improved ability to verify and record the exchange of assets among an interconnected set of users while all digital events are performed and shared among all participating members. | Demonstrating blockchain process | Focus on BT processes while other focus on BT acceptance in blue economy industry |
[69] | Blockchain is a distributed digital transaction and data management system in which all users of the system have a common consensus. | The potential implementation of BT in Indonesia | Readiness and acceptance of BT implementation to empirical BT model in smart islands |
[70] | Blockchain is a decentralized and immutable database storage that gives the peers in chain network equal roles and provides a decentralized communication and transaction in its chain networks. | Discussed decentralization dimension of blockchain. | Conceptual paper on BT decentralization methods to empirical model development in smart islands |
Variable | Dimension | Indicator |
---|---|---|
Smart Islands | Smart economy |
|
Smart society |
| |
Smart governance |
| |
Smart environment |
| |
Smart mobility |
| |
Smart living |
| |
Blockchain technology adoption | Trust business | Data transparency for stakeholders Self-governed ecosystem Trustworthy digital network platform
|
Efficiency | Disintermediation in blue economy activities Speed transaction processing among geographically dispersed entity Lowest cost transaction | |
Creative loyalty program | Traceability over loyalty reward points Reliable online review Able to exchange points/rewards in digital business ecosystem Enhanced analytics (algorithm) | |
Decentralization | Trustworthy network that integrates all parties in the business ecosystem Traceability supply chain system Transparent transaction infrastructure to ensure meeting law enforcement (due diligence) Compliance collaborative traceability | |
Blue economy preservation | Marine resources’ preservation | Responsible fisheries Sustainable marine tourism practices Non-polluted aquaculture Environmentally friendly sea transportation Renewable energy usage |
Marine circular economy | Laws to encourage bio-based materials Packaging regulation to ban petroleum plastic Circular-economy-based waste management practice Economic incentive for circular economy practice | |
Marine ecosystem health recovery | Sustainable fishing culture Regular fishing for litter Awareness campaign Responsible utilization of ocean resources | |
Digital Literacy | Basic ICT literacy | Operate basic computer skill (Microsoft Office) Ability to manage email Ability to use Internet browser |
Network literacy | Ability to utilize social media for business Ability to utilize marketplace platform for business transactions Ability to create e-community to enhance business | |
Information literacy | Ability to access information effectively Ability to evaluate information effectively Ability to use information | |
Media literacy | Understanding the purpose for which media messages are constructed Ability to filter messages from social media (interpret messages) Fundamental understanding of the ethical issues on the use of media to create messages |
Goodness-of-Fit Index | Fit Index Criteria (Cut of Value) | Result | Remark |
---|---|---|---|
NFI NNFI CFI | ≥0.90 | 0.91 | Good Fit |
≥0.90 | 0.94 | Good Fit | |
≥0.90 | 0.95 | Good Fit | |
IFI RFI | ≥0.90 | 0.95 | Good Fit |
≥0.90 | 0.90 | Good Fit | |
GFI AGFI | ≥0.90 | 0.83 | Marginal Fit |
0–1 | 0.76 | Marginal Fit |
Hypothesis | Significancy Value | Standardize Solution |
---|---|---|
H1 = BT → SI | 2.28 | 0.19 |
H2 = BE → BT | 3.58 | 0.34 |
H3 = BE → SI | 4.85 | 0.50 |
H4 = DL → BT | 2.49 | 0.23 |
H5 = DL → SI | 2.50 | 0.20 |
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Pranita, D.; Sarjana, S.; Musthofa, B.M.; Kusumastuti, H.; Rasul, M.S. Blockchain Technology to Enhance Integrated Blue Economy: A Case Study in Strengthening Sustainable Tourism on Smart Islands. Sustainability 2023, 15, 5342. https://doi.org/10.3390/su15065342
Pranita D, Sarjana S, Musthofa BM, Kusumastuti H, Rasul MS. Blockchain Technology to Enhance Integrated Blue Economy: A Case Study in Strengthening Sustainable Tourism on Smart Islands. Sustainability. 2023; 15(6):5342. https://doi.org/10.3390/su15065342
Chicago/Turabian StylePranita, Diaz, Sri Sarjana, Budiman Mahmud Musthofa, Hadining Kusumastuti, and Mohamad Sattar Rasul. 2023. "Blockchain Technology to Enhance Integrated Blue Economy: A Case Study in Strengthening Sustainable Tourism on Smart Islands" Sustainability 15, no. 6: 5342. https://doi.org/10.3390/su15065342
APA StylePranita, D., Sarjana, S., Musthofa, B. M., Kusumastuti, H., & Rasul, M. S. (2023). Blockchain Technology to Enhance Integrated Blue Economy: A Case Study in Strengthening Sustainable Tourism on Smart Islands. Sustainability, 15(6), 5342. https://doi.org/10.3390/su15065342