Understanding the Stakeholders’ Involvement in Utilizing Municipal Solid Waste in Agriculture through Composting: A Case Study of Hanoi, Vietnam
Abstract
:1. Introduction
2. Methodology
2.1. Study Site
2.2. Stakeholder Analysis
2.3. Social Network Analysis (SNA)
3. Results
3.1. Overview of Strategies for Recycling Municipal Organic Waste through Composting in Hanoi
3.2. Identification of Stakeholders and Their Characteristics
- -
- Players: those having both significant interest and substantial power. This group consists of Hanoi People’s Committee (HPC), Vietnam Environmental Agency (VEA), Technical Infrastructure Agency (TIA), Department of Natural Resources and Environment (DONRE), Department of Construction (DOC), and Hanoi Urban Environment Company (HURENCO).
- -
- Subjects: those having an interest but little power. This group includes Cau Dien Composting Plant (CDCP); People’s Committee of Districts (PCDs), People’s Committee of Wards (PCWs), academia, local farmers, and local citizens (Figure 5).
- -
- Context-setters: those having power but little interest. This group consists of socialization units (SUs) or private waste service providers, Cultivation Department (CD), Department of Agriculture and Rural Development (DARD), and Hanoi Agricultural Extension Station (AES).
- -
- Crowd: those having both little interest and little power. This group consists of civil society organizations (CSOs), Divisions of Agriculture at Districts (DADs), agricultural cooperatives (ACs), agricultural inputs stores (AISs), and the media (Figure 5).
3.2.1. Governmental Authorities
3.2.2. Enterprises
3.2.3. Academia and Research
3.2.4. Civil Society
3.3. Network Analysis
3.3.1. Degree Centrality
3.3.2. Betweenness Centrality
3.4. Comparing Systems of Municipal Solid Waste Use in Agriculture through Composting in Hanoi and Other Asian Countries
4. Discussions
4.1. About the Case Study of Hanoi, Vietnam
4.2. About the Methodology
4.3. About Policy Recommendation
5. Conclusions
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
References
- Ministry of Natural Resource and Environment (MONRE). Vietnam National Report 2011—Solid Waste; Ministry of Natural Resource and Environment: Hanoi, Vietnam, 2011; (In Vietnamese). Available online: http://vea.gov.vn/vn/hientrangmoitruong/baocaomtquocgia/ (accessed on 1 March 2018).
- Hanoi People Committee (HPC). Planning for Treating Municipal Solid Waste of Hanoi to 2030 and to Vision 2050; Hanoi People Committee: Hanoi, Vietnam, 2014. (In Vietnamese)
- Hoornweg, D.; Thomas, L.; Otten, L. Composting and Its Applicability in Developing Countries; The World Bank: Washington, DC, USA, 1999. [Google Scholar]
- Asian Development Bank (ADB). Toward Sustainable Municipal Organic Waste Management in South Asia: A Guidebook for Policy Makers and Practitioners; Asian Development Bank: Manila, Philippines, 2011; p. 75. ISBN 9789290923954. [Google Scholar]
- Zurbrügg, C.; Drescher, S.; Rytz, I.; Sinha, A.H.M.M.; Enayetullah, I. Decentralised composting in Bangladesh, a win-win situation for all stakeholders. Resour. Conserv. Recycl. 2005, 43, 281–292. [Google Scholar] [CrossRef]
- Thanh, N.P.; Matsui, Y. Compost Potential from Solid Waste: Toward Sustainable Agriculture and Mitigation of Global Warming in the Mekong Delta, Vietnam. In Environmental Change and Agricultural Sustainability in the Mekong Delta; Springer: Dordrecht, The Netherlands, 2011; pp. 335–354. [Google Scholar]
- Chen, Y.-T. A Cost analysis of food waste composting in taiwan. Sustainability 2016, 8, 1210. [Google Scholar] [CrossRef]
- Wei, Y.; Li, J.; Shi, D.; Liu, G.; Zhao, Y.; Shimaoka, T. Environmental challenges impeding the composting of biodegradable municipal solid waste: A critical review. Resour. Conserv. Recycl. 2017, 122, 51–65. [Google Scholar] [CrossRef]
- Oliveira, L.S.; Oliveira, D.S.; Bezerra, B.S.; Pereira, B.S.; Battistelle, R.A.G. Environmental analysis of organic waste treatment focusing on composting scenarios. J. Clean. Prod. 2017, 155, 229–237. [Google Scholar] [CrossRef]
- Thi, N.B.D.; Kumar, G.; Lin, C.-Y. An overview of food waste management in developing countries: current status and future perspective. J. Environ. Manag. 2015, 157, 220–229. [Google Scholar] [CrossRef] [PubMed]
- Heckman, J.R. Soil fertility management a century ago in farmers of forty centuries. Sustainability 2013, 5, 2796–2801. [Google Scholar] [CrossRef]
- Hargreaves, J.; Adl, M.; Warman, P. A review of the use of composted municipal solid waste in agriculture. Agric. Ecosyst. Environ. 2008, 123, 1–14. [Google Scholar] [CrossRef]
- Baud, I.; Post, J.; Furedy, C. Solid Waste Management and Recycling: Actors, Partnerships and Policies in Hyderabad, India and Nairobi, Kenya; Springer: Dordrecht, The Netherlands, 2006; Volume 76, ISBN 1402025297. [Google Scholar]
- Caniato, M.; Vaccari, M.; Visvanathan, C.; Zurbrügg, C. Using social network and stakeholder analysis to help evaluate infectious waste management: A step towards a holistic assessment. Waste Manag. 2014, 34, 938–951. [Google Scholar] [CrossRef] [PubMed]
- Van de Klundert, A.; Anschütz, J. Integrated Sustainable Waste Management—The Concept; WASTE: Gouda, The Netherlands, 2001; ISBN 9076639027. [Google Scholar]
- Guerrero, L.A.; Maas, G.; Hogland, W. Solid waste management challenges for cities in developing countries. Waste Manag. 2013, 33, 220–232. [Google Scholar] [CrossRef] [PubMed]
- Read, A.D. Making waste work: making UK national solid waste strategy work at the local scale. Resour. Conserv. Recycl. 1999, 26, 259–285. [Google Scholar] [CrossRef]
- Barr, S.; Guilbert, S.; Metcalfe, A.; Riley, M.; Robinson, G.M.; Tudor, T.L. Beyond recycling: An integrated approach for understanding municipal waste management. Appl. Geogr. 2013, 39, 67–77. [Google Scholar] [CrossRef]
- Chung, S.S.; Lo, C.W. Local waste management constraints and waste administrators in China. Waste Manag. 2008, 28, 272–281. [Google Scholar] [CrossRef] [PubMed]
- Ali, A. Wasting time on solid waste in developing countries. Waste Manag. 2010, 30, 1437–1438. [Google Scholar] [CrossRef] [PubMed]
- Troschinetz, A.M.; Mihelcic, J.R. Sustainable recycling of municipal solid waste in developing countries. Waste Manag. 2009, 29, 915–923. [Google Scholar] [CrossRef] [PubMed]
- Hofmann, P. Wasted waste—Disappearing reuse at the peri-urban interface. Environ. Sci. Policy 2013, 31, 13–22. [Google Scholar] [CrossRef]
- Brown, K. Integrating conservation and development: A case of institutional misfit. Front. Ecol. Environ. 2003, 1, 479–487. [Google Scholar] [CrossRef]
- Dietz, T.; Ostrom, E.; Stern, P.C. The struggle to govern the commons. Science 2003, 302, 1907–1912. [Google Scholar] [CrossRef] [PubMed]
- Huppé, G.A.; Creech, H.; Knoblauch, D. The Frontiers of Networked Governance; International Institute for Sustainable Development: Winnipeg, MB, Canada, 2012. [Google Scholar]
- Francesch-Huidobro, M. Climate change and energy policies in Shanghai: A multilevel governance perspective. Appl. Energy 2016, 164, 45–56. [Google Scholar] [CrossRef]
- Lienert, J.; Schnetzer, F.; Ingold, K. Stakeholder analysis combined with social network analysis provides fine-grained insights into water infrastructure planning processes. J. Environ. Manag. 2013, 125, 134–148. [Google Scholar] [CrossRef] [PubMed]
- Dos Muchangos, L.S.; Tokai, A.; Hanashima, A. Stakeholder analysis and social network analysis to evaluate the stakeholders of a MSWM system–A pilot study of Maputo City. Environ. Dev. 2017, 24, 124–135. [Google Scholar] [CrossRef]
- Chen, W.-C.; Chen, W.-C.; Geng, D.-S. The strategy and bioenergy potential for kitchen waste recycling in Taiwan. J. Environ. Eng. Manag. 2008, 18, 281–287. [Google Scholar]
- Ravetz, J. Integrated assessment for sustainability appraisal in cities and regions. Environ. Impact Assess. Rev. 2000, 20, 31–64. [Google Scholar] [CrossRef]
- Ghisellini, P.; Cialani, C.; Ulgiati, S. A review on circular economy: the expected transition to a balanced interplay of environmental and economic systems. J. Clean. Prod. 2016, 114, 11–32. [Google Scholar] [CrossRef]
- Reed, M.S.; Graves, A.; Dandy, N.; Posthumus, H.; Hubacek, K.; Morris, J.; Prell, C.; Quinn, C.H.; Stringer, L.C. Who’s in and why? A typology of stakeholder analysis methods for natural resource management. J. Environ. Manag. 2009, 90, 1933–1949. [Google Scholar] [CrossRef] [PubMed]
- Xu, W.; Zhou, C.; Cao, A.; Luo, M. Understanding the mechanism of food waste management by using stakeholder analysis and social network model: An industrial ecology perspective. Ecol. Modell. 2016, 337, 63–72. [Google Scholar] [CrossRef] [Green Version]
- Grimble, R. Stakeholder Methodologies in Natural Resource Management; Natural Resources Institute: Gillingham, UK, 1998; ISBN 0859544966. [Google Scholar]
- Crosby, B. Stakeholder Analysis: A Vital Tool for Strategic Managers; USAID’s Implementing Policy Change Project: Washington, DC, USA, 1992. [Google Scholar]
- Suškevičs, M.; Tillemann, K.; Külvik, M. Assessing the relevance of stakeholder analysis for national ecological network governance: The case of the Green Network in Estonia. J. Nat. Conserv. 2013, 21, 206–213. [Google Scholar] [CrossRef]
- Snel, M.; Ali, M. Stakeholder Analysis in Local Solid Waste Management Schemes; Water and Environment Health at London and Loughborough: London, UK; Loughborough, UK, 1999. [Google Scholar]
- Rheinländer, T.; Thanh Xuan, L.T.; Ngoc Hoat, L.; Dalsgaard, A.; Konradsen, F. Hygiene and sanitation promotion strategies among ethnic minority communities in Northern Vietnam: A stakeholder analysis. Health Policy Plan. 2012, 27, 600–612. [Google Scholar] [CrossRef] [PubMed]
- Zurbrügg, C. Assessment Methods for Waste Management Decision-Support in Developing Countries. Ph.D. Thesis, Università Degli Studi di Brescia, Brescia, Italy, 2013. [Google Scholar]
- Wasserman, S.; Faust, K. Social Network Analysis: Methods and Applications; Cambridge University Press: Cambridge, UK, 1994; Volume 8, ISBN 0521387078. [Google Scholar]
- Ramalingam, B. Tools for Knowledge and Learning: A Guide for Development and Humanitarian Organizations; Overseas Development Institute: London, UK, 2006; ISBN 0850038138. [Google Scholar]
- Borgatti, S.P.; Mehra, A.; Brass, D.J.; Labianca, G. Network analysis in the social sciences. Science 2009, 323, 892–895. [Google Scholar] [CrossRef] [PubMed]
- Salpeteur, M.; Calvet-Mir, L.; Diaz-Reviriego, I.; Reyes-García, V. Networking the environment: Social network analysis in environmental management and local ecological knowledge studies. Ecol. Soc. 2017, 22, 41. [Google Scholar] [CrossRef]
- Prell, C.; Hubacek, K.; Reed, M. Stakeholder analysis and social network analysis in natural resource management. Soc. Nat. Resour. 2009, 22, 501–518. [Google Scholar] [CrossRef]
- Bodin, Ö.; Crona, B.I. The role of social networks in natural resource governance: What relational patterns make a difference? Glob. Environ. Chang. 2009, 19, 366–374. [Google Scholar] [CrossRef]
- Stein, C.; Ernstson, H.; Barron, J. A social network approach to analyzing water governance: The case of the Mkindo catchment, Tanzania. Phys. Chem. Earth Parts A/B/C 2011, 36, 1085–1092. [Google Scholar] [CrossRef]
- Cohen, P.J.; Evans, L.S.; Mills, M. Social networks supporting governance of coastal ecosystems in Solomon Islands. Conserv. Lett. 2012, 5, 376–386. [Google Scholar] [CrossRef] [Green Version]
- Hauck, J.; Schmidt, J.; Werner, A. Using social network analysis to identify key stakeholders in agricultural biodiversity governance and related land-use decisions at regional and local level. Ecol. Soc. 2016, 21, 49. [Google Scholar] [CrossRef]
- Driscoll, D.L.; Appiah-Yeboah, A.; Salib, P.; Rupert, D.J. Merging qualitative and quantitative data in mixed methods research: How to and why not. Ecol. Environ. Anthropol. 2007, 3, 19–28. [Google Scholar]
- Molina-Azorín, J.F.; López-Gamero, M.D. Mixed methods studies in environmental management research: prevalence, purposes and designs. Bus. Strateg. Environ. 2016, 25, 134–148. [Google Scholar] [CrossRef]
- Crona, B.; Bodin, Ö. What you know is who you know? Communication patterns among resource users as a prerequisite for co-management. Ecol. Soc. 2006, 11, 7. [Google Scholar] [CrossRef]
- Hanoi Statistical Office (HSO). Hanoi Statistical Yearbook 2015; Hanoi Statistical Office: Hanoi, Vietnam, 2016. (In Vietnamese)
- Taniguchi, Y.; Yoshida, M. Public involvement and mobilization for promoting 3R initiative in Hanoi City: Lessons from 3R initiative project in Hanoi City 2006–2009. In Proceedings of the 8th Expert Meeting on Solid Waste Management in Asia and Pacific Islands (SWAPI), Tokyo, Japan, 21–23 February 2011; p. 23. [Google Scholar]
- Anh, M.T.P.; Ali, M.; Anh, H.L.; Ha, T.T.T. Urban and Peri-Urban Agriculture in Hanoi: Opportunities and Constraints for Safe and Sustainable Food Production; AVRDC—The World Vegetable Center: Shanhua, Taiwan, 2004; Volume 32, ISBN 92-9058-137-9. [Google Scholar]
- Bryson, J.M.; Patton, M.Q.; Bowman, R.A. Working with evaluation stakeholders: A rationale, step-wise approach and toolkit. Eval. Progr. Plan. 2011, 34, 1–12. [Google Scholar] [CrossRef] [PubMed]
- Dougill, A.; Fraser, E.; Holden, J.; Hubacek, K.; Prell, C.; Reed, M.; Stagl, S.; Stringer, L. Learning from doing participatory rural research: lessons from the Peak District National Park. J. Agric. Econom. 2006, 57, 259–275. [Google Scholar] [CrossRef]
- Eden, C.; Ackermann, F. Making Strategy: The Journey of Strategic Management; Sage: London, UK, 1998; ISBN 0761952241. [Google Scholar]
- Freeman, R.E. Strategic Management: A Stakeholder Approach; Pitman Publishing: Boston, MA, USA, 1984; ISBN 0273019139. [Google Scholar]
- Savage, G.T.; Nix, T.W.; Whitehead, C.J.; Blair, J.D. Strategies for assessing and managing organizational stakeholders. Executive 1991, 5, 61–75. [Google Scholar] [CrossRef]
- Hanneman, R.A.; Riddle, M. Introduction to Social Network Methods; University of California Riverside: Riverside, CA, USA, 2005. [Google Scholar]
- Freeman, L.C.; Roeder, D.; Mulholland, R.R. Centrality in social networks: II. Experimental results. Soc. Netw. 1979, 2, 119–141. [Google Scholar] [CrossRef]
- Borgatti, S.P.; Everett, M.G.; Freeman, L.C. Ucinet for Windows: Software for social network analysis. Conections 1992, XV, 1–2. [Google Scholar]
- Nguyen, T.T.P.; Zhu, D.; Le, N.P. Factors influencing waste separation intention of residential households in a developing country: Evidence from Hanoi, Vietnam. Habitat Int. 2015, 48, 169–176. [Google Scholar] [CrossRef]
- Nguyen, T.T.P. Utilizing Urban Solid Waste in Urban Agriculture: Willingness to Separate Waste, Willingness to Pay for Compost and Involvement of Stakeholders—A Case Study of Hanoi, Vietnam. Ph.D. Thesis, Tongji University, Shanghai, China, 2016. [Google Scholar]
- Aleluia, J.; Ferrão, P. Characterization of urban waste management practices in developing Asian countries: A new analytical framework based on waste characteristics and urban dimension. Waste Manag. 2016, 58, 415–429. [Google Scholar] [CrossRef] [PubMed]
- Yadav, P.; Samadder, S. A critical review of the life cycle assessment studies on solid waste management in Asian countries. J. Clean. Prod. 2018, 185, 492–515. [Google Scholar] [CrossRef]
- Pandyaswargo, A.H.; Premakumara, D.G.J. Financial sustainability of modern composting: the economically optimal scale for municipal waste composting plant in developing Asia. Int. J. Recycl. Organ. Waste Agric. 2014, 3, 4. [Google Scholar] [CrossRef]
- Pariatamby, A.; Fauziah, S. Sustainable 3R practice in the Asia and Pacific Regions: the challenges and issues. In Municipal Solid Waste Management in Asia and the Pacific Islands; Springer: Singapore, 2014; pp. 15–40. [Google Scholar]
- Houng, H.; Shen, S.-H.; Ma, H.-K. Municipal Solid Waste Management in Taiwan: From Solid Waste to Sustainable Material Management. In Municipal Solid Waste Management in Asia and the Pacific Islands; Springer: Singapore, 2014; pp. 317–336. [Google Scholar]
- Manomaivibool, P. Municipal Solid Waste Management in Bangkok: The Cases of the Promotion of Source Reduction and Source Separation in Bangkok and in Roong Aroon School. Master’s Theses, Lund University, Lund, Sweden, 2005. [Google Scholar]
- Sharp, A.; Sang-Arun, J. A Guide for Sustainable Urban Organic Waste Management in Thailand: Combining Food, Energy and Climate Co-Benefits. 2012. Available online: https://www.apn-gcr.org/resources/files/original/a38dd72155088c9924789b2aa10b780b.pdf (accessed on 3 July 2018).
- Chen, Y.-T.; Chang, D.-S. Diffusion effect and learning effect: An examination on MSW recycling. J. Clean. Prod. 2010, 18, 496–503. [Google Scholar] [CrossRef]
- Lu, L.-T.; Hsiao, T.-Y.; Shang, N.-C.; Yu, Y.-H.; Ma, H.-W. MSW management for waste minimization in Taiwan: The last two decades. Waste Manag. 2006, 26, 661–667. [Google Scholar] [CrossRef] [PubMed]
- Um, M.H.; Lee, Y. Quality Control for Commercial Compost in Korea; ASPAC Food and Fertilizer Technology Center: Taipei, Taiwan, 2001. [Google Scholar]
- Min, D.-K.; Rhee, S.-W. Management of Municipal Solid Waste in Korea. In Municipal Solid Waste Management in Asia and the Pacific Islands; Springer: Singapore, 2014; pp. 173–194. [Google Scholar]
- Lee, S.; Paik, H.S. Korean household waste management and recycling behavior. Build. Environ. 2011, 46, 1159–1166. [Google Scholar] [CrossRef]
- Sukholthaman, P.; Chanvarasuth, P.; Sharp, A. Analysis of waste generation variables and people’s attitudes towards waste management system: A case of Bangkok, Thailand. J. Mater. Cycles Waste Manag. 2017, 19, 645–656. [Google Scholar] [CrossRef]
- Siriratpiriya, O. Municipal solid waste management in Thailand: challenges and strategic solution. In Municipal Solid Waste Management in Asia and the Pacific Islands; Springer: Singapore, 2014; pp. 337–354. [Google Scholar]
- Vassanadumrongdee, S.; Kittipongvises, S. Factors influencing source separation intention and willingness to pay for improving waste management in Bangkok, Thailand. Sustain. Environ. Res. 2018, 28, 90–99. [Google Scholar] [CrossRef]
- Kirama, A.; Mayo, A.W. Challenges and prospects of private sector participation in solid waste management in Dar es Salaam City, Tanzania. Habitat Int. 2016, 53, 195–205. [Google Scholar] [CrossRef]
- Scammell, M.K. Qualitative environmental health research: An analysis of the literature, 1991–2008. Environ. Health Perspect. 2010, 118, 1146–1154. [Google Scholar] [CrossRef] [PubMed]
- Vartiainen, P. The substance of stakeholder evaluation: Methodological discussion. Int. J. Public Adm. 2003, 26, 1–18. [Google Scholar] [CrossRef]
- Grimble, R.; Wellard, K. Stakeholder methodologies in natural resource management: A review of principles, contexts, experiences and opportunities. Agric. Syst. 1997, 55, 173–193. [Google Scholar] [CrossRef]
- Kanbar, N.N. Analyzing Individual Behavior in Commons Dilemmas: A Study of Collective Action in Source Separation of Wastes. Ph.D. Thesis, George Mason University, Fairfax, VA, USA, 2005. [Google Scholar]
- Yau, Y. Domestic waste recycling, collective action and economic incentive: The case in Hong Kong. Waste Manag. 2010, 30, 2440–2447. [Google Scholar] [CrossRef] [PubMed]
- Loan, L.T.T. Analysis of Households’ Behavior and Preference toward Sustainable Municipal Organic Waste Management in Hoi An, Vietnam. Ph.D. Thesis, Kyushu University, Fukuoka, Japan, 2017. [Google Scholar]
- Price, J.C.; Leviston, Z. Predicting pro-environmental agricultural practices: The social, psychological and contextual influences on land management. J. Rural Stud. 2014, 34, 65–78. [Google Scholar] [CrossRef]
- Ouédraogo, E.; Mando, A.; Zombré, N. Use of compost to improve soil properties and crop productivity under low input agricultural system in West Africa. Agric. Ecosyst. Environ. 2001, 84, 259–266. [Google Scholar] [CrossRef]
Area | 2010 | 2020 | 2030 | 2050 |
---|---|---|---|---|
Total volume of MSW generated per day (tonnes/day) | 5371 | 8440 | 11,305 | 15,855 |
Urban area | 3200 | 6374 | 9161 | 12,809 |
Peri-urban and rural areas | 2171 | 2066 | 2144 | 3046 |
Composition | Rate (%) |
---|---|
Organic matter | 60.00 |
Paper | 5.40 |
Plastic | 11.00 |
Metal | 0.87 |
Glass | 1.64 |
Leather, rubber, and timber | 2.66 |
Textile fabric | 5.82 |
Rock and soil, ash, sand, etc. | 12.61 |
Total | 100.00 |
Category | Stakeholders | Number of Respondents |
---|---|---|
Governmental authority | I. National level | |
1.Vietnam Environment Agency (VEA) | 1 | |
2.Technical Infrastructure Agency (TIA) | 1 | |
3. Cultivation Department (CD) | 1 | |
II. Municipal level | ||
4. Hanoi People Committee (HPC) | 1 | |
5. Department of Construction (DOC) | 1 | |
6. Department of Natural Resource and Environment (DONRE) | 1 | |
7. Department of Agriculture and Rural Development (DARD) | 1 | |
8. Hanoi Agricultural Extension Station (AES) | 1 | |
III. District and ward level | ||
9. People’s Committee of District (PCDs) | 3 | |
10.People’s Committee of Ward (PCWs) | 3 | |
11. Divisions of Agriculture at districts (DADs) | 3 | |
Enterprise | 12.Hanoi Urban Environment Company (HURENCO) | 1 |
13.Cau Dien Composting Plant (CDCP) | 1 | |
14.Socialization Units (SUs)—Private entreprise | 3 | |
15.Agricultural Cooperatives (ACs) | 3 | |
16.Agricultural Inputs Stores (AISs) | 3 | |
Academia | 17. Academia and research institutions | 3 |
Civil Society | 18.Civil Society Organizations (CSOs) | 3 |
19. Media | 1 | |
20. Local community (residents) | 3 | |
21. Hanoi farmers | 3 | |
Total | 41 |
Topics | Value Scale and Scoring |
---|---|
Knowledge—the level of understanding about the current utilizing of municipal organic waste through composting | Low knowledge (1–2.9) Medium (3–6.9) High (7–10) |
Interest—the interest the stakeholder has in utilizing urban waste in urban agriculture through composting | No or minimum interest (1–1.9) Limited interest (2–3.9) General interest (4–5.9) High interest (6–7.9) Primary interest (8–10) |
Attitude—Stakeholder’s opinion about the system | Very negative (1–1.9) Negative (2–3.9) Neutral (4–5.9) Positive (6–7.9) Very positive (8–10) |
Power—the ability of stakeholders to provide sufficient resources or their ability to acquire resources in case they do not have enough | Low (1–2.9) Medium (3–6.9) High (7–10) |
Coordination—the level of coordination between the stakeholder and others | Weak (1–3.9) Medium (4–6.9) Close (7–10) |
Interaction—Regularity of contacts between the stakeholder and others in the system | Rare interaction Quite frequent interaction Frequent interaction |
Stakeholders | Degree Centrality | ||
---|---|---|---|
Name of Stakeholders | Abbreviations | Value | Rank |
Department of Construction | DOC | 9.000 | 1 |
Department of Natural Resource and Environment | DONRE | 9.000 | 2 |
Hanoi People Committee | HPC | 7.000 | 3 |
Hanoi Urban Environment Company | HURENCO | 7.000 | 4 |
Department of Agriculture and Rural Development | DARD | 7.000 | 5 |
People’s Committee of District | PCDs | 6.000 | 6 |
Divisions of Agriculture at districts | DADs | 6.000 | 7 |
People’s Committee of Ward | PCWs | 5.000 | 8 |
Agricultural Cooperatives | ACs | 5.000 | 9 |
Hanoi Agricultural Extension Station | AES | 5.000 | 10 |
Farmers | 5.000 | 11 | |
Vietnam Environment Agency | VEA | 4.000 | 12 |
Cau Dien Composting Plant | CDCP | 4.000 | 13 |
Civil Society Organizations | CSOs | 4.000 | 14 |
Socialization Units | SUs | 4.000 | 15 |
Media | 4.000 | 16 | |
Cultivation Department | CD | 3.000 | 17 |
Technical Infrastructure Agency | TIA | 3.000 | 18 |
Agricultural Inputs Stores | AISs | 3.000 | 19 |
Academia | 2.000 | 20 | |
Local community (residents) | 2.000 | 21 |
Stakeholders | Betweeness Centrality | ||
---|---|---|---|
Name of Stakeholders | Abbreviations | Value | Rank |
Department of Agriculture and Rural Development | DARD | 58.977 | 1 |
Department of Natural Resource and Environment | DONRE | 33.937 | 2 |
People’s Committee of Ward | PCWs | 25.018 | 3 |
Divisions of Agriculture at districts | DADs | 19.617 | 4 |
Civil Society Organizations | CSOs | 18.411 | 5 |
Department of Construction | DOC | 17.792 | 6 |
Hanoi People Committee | HPC | 17.190 | 7 |
Hanoi Urban Environment Company | HURENCO | 13.821 | 8 |
Vietnam Environment Agency | VEA | 10.708 | 9 |
Hanoi Agricultural Extension Station | AES | 10.375 | 10 |
Cultivation Department | CD | 8.792 | 11 |
Agricultural Cooperatives | ACs | 8.544 | 12 |
People’s Committee of District | PCDs | 7.341 | 13 |
Farmers | 7.011 | 14 | |
Cau Dien Composting Plant | CDCP | 4.254 | 15 |
Socialization Units | SUs | 3.712 | 16 |
Academia | 2.500 | 17 | |
Technical Infrastructure Agency | TIA | 0.000 | 18 |
Local community(residents) | 0.000 | 19 | |
Media | 0.000 | 20 | |
Agricultural Inputs Stores | AISs | 0.000 | 21 |
Country/City | Performance and Results | Stakeholders’ Involvement | Source |
---|---|---|---|
Taiwan, China |
| Local residents:
| Chen [7]; Chen et al. [29]; Houng et al. [69]; Chen and Chang [72]; Lu et al. [73]. |
South Korea |
|
| Um and Lee [74] Min and Rhee [75]; Lee and Paik [76] |
Bangkok, Thailand |
|
| Sukholthaman, et al. [77]; Sharp and Sang-Arun [71]; Siriratpiriya [78]; Manomaivibool [70]; Vassanadumrongdee and Kittipongvises [79] |
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Le, N.P.; Nguyen, T.T.P.; Zhu, D. Understanding the Stakeholders’ Involvement in Utilizing Municipal Solid Waste in Agriculture through Composting: A Case Study of Hanoi, Vietnam. Sustainability 2018, 10, 2314. https://doi.org/10.3390/su10072314
Le NP, Nguyen TTP, Zhu D. Understanding the Stakeholders’ Involvement in Utilizing Municipal Solid Waste in Agriculture through Composting: A Case Study of Hanoi, Vietnam. Sustainability. 2018; 10(7):2314. https://doi.org/10.3390/su10072314
Chicago/Turabian StyleLe, Nam Phong, Thi Thu Phuong Nguyen, and Dajian Zhu. 2018. "Understanding the Stakeholders’ Involvement in Utilizing Municipal Solid Waste in Agriculture through Composting: A Case Study of Hanoi, Vietnam" Sustainability 10, no. 7: 2314. https://doi.org/10.3390/su10072314
APA StyleLe, N. P., Nguyen, T. T. P., & Zhu, D. (2018). Understanding the Stakeholders’ Involvement in Utilizing Municipal Solid Waste in Agriculture through Composting: A Case Study of Hanoi, Vietnam. Sustainability, 10(7), 2314. https://doi.org/10.3390/su10072314