Vol. 22 No. 4 (2020)
Original articles

Willingness to pay for urban waste disposal (Provincial Municipality of Tambopata, Madre de Dios, Peru)

Julián Colquehuanca Vilca
Universidad Nacional Amazónica, Madre de Dios, Peru
Ángel Colquehuanca Calli
Universidad Nacional Amazónica, Madre de Dios, Peru
Néstor Gallegos Ramos
Universidad Nacional Amazónica, Madre de Dios, Peru
Alfredo Calatayud Mendoza
Universidad Nacional del Altiplano de Puno, Peru

Published 2020-10-01

Keywords

  • Zero waste,
  • Logit,
  • Mixlogit,
  • Landfill,
  • 4R,
  • Ecological consumption
  • ...More
    Less

How to Cite

Colquehuanca Vilca, J. ., Colquehuanca Calli, Ángel, Gallegos Ramos, N., & Calatayud Mendoza, A. (2020). Willingness to pay for urban waste disposal (Provincial Municipality of Tambopata, Madre de Dios, Peru). Revista De Investigaciones Altoandinas - Journal of High Andean Research, 22(4), 329–337. https://doi.org/10.18271/ria.2020.197

Abstract

The management of urban waste in the Provincial Municipality of Tambopata induces the environmental deterioration of the soil, water,and biodiversity along with the proliferation of diseases. The objective was to determine the citizens’ preference in reducing, recycling,reusing, recovering (4R) and their willingness to pay (DAP) for the elimination of urban waste from the classification level. Theinformation was collected through 406 surveys of heads of households by multiple-stage random sampling, complemented by in-depthinterviews; the method of choice experiments (EE) was used to determine the preference of the public user, using thelogitandmixlogitmodel to estimate the probability of the DAP. The results indicate that 68.72% of users do not recycle any waste, but are predisposedto do so. Of these, 28.72% have a preference for RR (waste collection) with the practice of “4R” for segregation purposes; 28.26% forDR (waste disposal) in sanitary landfill instead of open dumps; 26.08% bet on CR (zero waste) with implication of waste reduction; and16.94% choose Status quo of emotional state of the moment as undecided. In sum, 83.06% of citizens have the DAP in exchange foracceptable human health and socio-environmental well-being. It is concluded that the users of Puerto Maldonado have the willingness topay 122 soles per year, in exchange for the elimination of urban waste, being a leading part of sustainability.

References

  1. Abarca Fernández, D. y Escobar-Mamani, F. (2018). Manejo de residuos sanitarios: un programa educativo del conocimiento a la práctica. Revista de Investigaciones Altoandinas, 20(3), 315–324. https://doi.org/10.18271/ria.2018.395.
  2. Abdel-Shafy, H. I. y Mansour, M. S. M. (2018). Solid waste issue: Sources, composition, disposal, recycling, and valorization. Egyptian Journal of Petroleum, 27(4), 1275–1290. https://doi.org/10.1016/j.ejpe.2018.07.003.
  3. Abramo, L., Cecchini, S. y Morales, B. (2019). Programas sociales, superación de la pobreza e inclusión laboral: aprendizajes desde América Latina y el Caribe. Chile. https://repositorio.cepal.org/handle/11362/44602.
  4. Afroz, R., Hanaki, K. y Hasegawa-Kurisu, K. (2009). Willingness to pay for waste management improvement in Dhaka city, Bangladesh. Journal of Environmental Management, 90(1), 492–503. https://doi.org/10.1016/j.jenvman.2007.12.012.
  5. Afroz, R. y Masud, M. M. (2011). Using a contingent valuation approach for improved solid waste management facility: Evidence from Kuala Lumpur, Malaysia. Waste Management, 31(4), 800–808. https://doi.org/10.1016/j.wasman.2010.10.028.
  6. Akhtar, S., Ahmad, A., Qureshi, M. y Shahraz, S. (2017). Households willingness to pay for improved solid waste management. Global Journal of Environmental Science Management, 3(2), 143–152. https://doi.org/10.22034/gjesm.2017.03.02.003.
  7. Alcon, F., Tapsuwan, S., Brouwer, R. y de Miguel, M. D. (2014). Adoption of irrigation water policies to guarantee water supply: A choice experiment. Environmental Science and Policy, 44, 226–236. https://doi.org/10.1016/j.envsci.2014.
  8. 012.
  9. Almazán-Casali, S., Alfaro, J. F. y Sikra, S. (2019). Exploring household willingness to participate in solid waste collection services in Liberia. Habitat International, 84, 57–94. https://doi.org/10.1016/j.habitatint.2019.01.001.
  10. Anderson, C. M., Asner, G. P. y Lambin, E. F. (2019). Lack of association between deforestation and either sustainability commitments or fines in private concessions in the Peruvian Amazon. Forest Policy and Economics, 104(March), 1–8. https://doi.org/10.1016/j.forpol.2019.03.010.
  11. Archer, K. J., Lemeshow, S. y Hosmer, D. W. (2007). Goodness- of-fit tests for logistic regression models when data are collected using a complex sampling design. Computational Statistics and Data Analysis, 51(9), 4450–4464. https://doi. org/10.1016/j.csda.2006.07.006.
  12. Brouwer, R., Bliem, M., Getzner, M., Kerekes, S., Milton, S., Palarie, T. y Wagtendonk, A. (2016). Valuation and transferability of the non-market benefits of river restoration in the Danube river basin using a choice experiment. Ecological Engineering, 87, 20–29. https://doi.org/10.1016/ j.ecoleng.2015.11.018.
  13. Caldas, P., Ferreira, D., Dollery, B. y Marques, R. (2019). Are there scale economies in urban waste and wastewater municipal services? A non-radial input-oriented model applied to the Portuguese local government. Journal of Cleaner Production, 219, 531–539. https://doi.org/10.1016/ j.jclepro.2019.02.076.
  14. Chung, W. y Yeung, I. M. H. (2019). Analysis of residents’ choice of waste charge methods and willingness to pay amount for solid waste management in Hong Kong. Waste Management, 96, 136–148. https://doi.org/10.1016/j.wasman.2019.07.
  15. Cole, C., Osmani, M., Quddus, M., Wheatley, A. y Kay, K. (2014). Resources , Conservation and Recycling Towards a Zero Waste Strategy for an English Local Authority. Resources, Conservation Recycling, 89, 64–75. https://doi.org/10.1016/j.resconrec.2014.05.005.
  16. De Gisi, S., Notarnicola, M., Casella, P., Sabia, G., Farina, R., Landolfo, P. y De Feo, G. (2017). Assessing the public perception of islanders regarding the implementation of new technologies to optimize the municipal solid waste management system: A Mediterranean case study. Journal of Cleaner Production, 164(July), 1586–1601. https://doi. org/10.1016/j.jclepro.2017.07.090.
  17. Dong, J., Chi, Y., Zou, D., Fu, C., Huang, Q. y Ni, M. (2014).
  18. Energy – environment – economy assessment of waste management systems from a life cycle perspective: Model development and case study. Applied Energy, 114, 400–408. https://doi.org/10.1016/j.apenergy.2013.09.037.
  19. Duff, P. M. y Downs, T. J. (2019). Frontline narratives on sustainable development challenges/opportunities in the ‘illegal’ gold mining region of Madre de Dios, Peru: Informing an integrative collaborative response. Extractive Industries and Society, 6(2), 552–561. https://doi.org/10. 1016/j.exis.2019.01.005.
  20. Gebreeyosus, M. A. y Berhanu, W. (2019). Households’ preferences for improved solid waste management options in Aksum city, North Ethiopia: An application of choice modelling. Cogent Environmental Science, 5(1), 1–12. https:
  21. //doi.org/10.1080/23311843.2019.1579456.
  22. Girón, A. (2016). Objetivos del desarrollo sostenible y la Agenda 2030: Frente a las políticas públicas y los cambios de gobierno en América Latina. Problemas del Desarrollo, 47(186), 3–8. https://doi.org/10.1016/j.rpd.2016.08.001.
  23. Graubard, B. I., Korn, E. L. y Midthune, D. (1997). Testing goodness-of-fit for logistic regression with survey data. En Proceedings of the Section on Survey Research Methods. American Statistical Association, 170–174.
  24. Hensher, D. A., Rose, J. M.y Greene, W. H. (2005). Applied Choice Analysis: a Primer. Cambridge University Press.
  25. Hubert, J., Liu, X. F.y Collin, F. (2016). Computers and Geotechnics Numerical modeling of the long term behavior of Municipal Solid Waste in a bioreactor landfill. Computers and Geotechnics, 72, 152–170. https://doi.org/10.1016/j.compgeo.2015.10.007.
  26. Kallas, Z., Escobar, C.y Gil, J. M. (2012). Assessing the impact of a Christmas advertisement campaign on Catalan wine preference using Choice Experiments. Appetite, 58(1), 285–298. https://doi.org/10.1016/j.appet.2011.09.017.
  27. Kaushal, A.y Sharma, M. P. (2016). Methane Emission from Panki Open Dump Site of Kanpur, India. Procedia Environmental Sciences, 35, 337–347. https://doi.org/10.1016/j.proenv. 2016.07.014.
  28. Khai, H. V.y Yabe, M. (2015). Consumer preferences for agricultural products considering the value of biodiversity conservation in the Mekong Delta, Vietnam. Journal for Nature Conservation, 25, 62–71. https://doi.org/10.1016/ j.jnc.2015.02.004.
  29. Koistinen, L., Pouta, E., Heikkilä, J., Forsman-Hugg, S., Kotro, J., Mäkelä, J.y Niva, M. (2013). The impact of fat content, production methods and carbon footprint information on consumer preferences for minced meat. Food Quality and Preference, 29(2), 126–136. https://doi.org/10.1016/j. foodqual.2013.03.007.
  30. Li, Jianfei, Ren, L.y Sun, M. (2020). Is there a spatial heterogeneous effect of willingness to pay for ecological consumption? An environmental cognitive perspective. Journal of Cleaner Production, 245, 118259. https://doi.org/10.1016/j.jclepro.2019.118259.
  31. Li, Jingru, Zuo, J., Wang, G., He, G.y Tam, V. W. Y. (2020). Stakeholders’ willingness to pay for the new construction and demolition waste landfill charge scheme in Shenzhen: A contingent valuation approach. Sustainable Cities and Society, 52(May 2019), 101663. https://doi.org/10.1016/j. scs.2019.101663.
  32. Lim, S. Y., Lim, K. M.y Yoo, S. H. (2014). External benefits of waste-to-energy in Korea: A choice experiment study. Renewable and Sustainable Energy Reviews, 34, 588–595. https://doi.org/10.1016/j.rser.2014.03.045.
  33. Liu, X.y Liu, X. (2016). Mixed-effects multinomial logit model for nominal outcomes. Methods and Applications of Longitudinal Data Analysis. Higher Education Press. https://doi.org/10.1016/B978-0-12-801342-7.00011-3.
  34. Mcfadden, D. (1974). Conditional logit analysis of qualitative choice behavior. En P. Zarembka (Ed.). Frontiers in Econometrics. Academic Press.
  35. Nembrini, S., Ceretti, E., Gelatti, U., Castaldi, S., Schulz, P. J., Levaggi, R., Covolo, L. (2020). Willingness to pay for risky lifestyles: results from the Pay for Others (PAY4O) study, Italy. Public Health, 182, 179–184. https://doi.org/10.1016/j.puhe.2020.01.022.
  36. Pek, C.y Jamal, O. (2011). A choice experiment analysis for solid waste disposal option: A case study in Malaysia. Journal of Environmental Management, 92(11), 2993–3001. https://doi.org/10.1016/j.jenvman.2011.07.013.
  37. Peltola, T., Aarikka-Stenroos, L., Viana, E.y Mäkinen, S. (2016). Value capture in business ecosystems for municipal solid waste management: Comparison between two local envi- ronments. Journal of Cleaner Production, 137, 1270–1279. https://doi.org/10.1016/j.jclepro.2016.07.168.
  38. Pettigrew, S. M., Pan, W. K., Berky, A., Harrington, J., Bobb, J. F.y Feingold, B. J. (2019). In urban, but not rural, areas of Madre de Dios, Peru, adoption of a Western diet is inversely associated with selenium intake. Science of the Total Environment, 687, 1046–1054. https:// doi. org/ 10 . 1016/j.scitotenv.2019.05.484.
  39. Quispe, R. F. (2017). Evaluación de la concentración de metales pesados (cromo, cadmio y plomo) en los sedimentos superficiales en el rio Coata, 2017 [Tesis de pregrado, Universidad Nacional del Altiplano de Puno]. http://repositorio.unap.edu.pe/handle/UNAP/4787.
  40. Rai, R. K., Bhattarai, D.y Neupane, S. (2019). Designing solid waste collection strategy in small municipalities of developing countries using choice experiment. Journal of Urban Management, 83, 386–395. https://doi.org/10.1016/j.jum.2018.12.008.
  41. Sáez, A.y Urdaneta, J. A. (2014). Manejo de residuos sólidos en América Latina y el Caribe. Omnia Año, 20(3), 121–135.
  42. Song, Q., Li, J.y Zeng, X. (2014). Minimizing the increasing solid waste through zero waste strategy. Journal of Cleaner Production, 104, 199–210. https://doi.org/10.1016/j.jclepro.2014.08.027.
  43. Tas¸kın, A.y Demir, N. (2020). Life cycle environmental and energy impact assessment of sustainable urban municipal solid waste collection and transportation strategies. Sustainable Cities and Society, 61(February). https://doi.org/10.1016/j.scs.2020.102339.
  44. Tayeh, R. A., Alsayed, M. F.y Saleh, Y. A. (2021). The potential of sustainable municipal solid waste-to-energy management in the Palestinian Territories. Journal of Cleaner Production, 279, 123753. https://doi.org/10.1016/j.jclepro.2020.123753.
  45. Thomas, C.y Sharp, V. (2013). Understanding the normalisation of recycling behaviour and its implications for other pro- environmental behaviours: A review of social norms and recycling. Resources, Conservation and Recycling, 79, 11–20. https://doi.org/10.1016/j.resconrec.2013.04.010.
  46. Tianyu, J.y Meng, L. (2020). Does Education Increase Pro- Environmental Willingness to Pay? Evidence from Chinese Household Survey. Journal of Cleaner Production, 275. 122713. https://doi.org/10.1016/j.jclepro.2020.122713.
  47. Train, K. E. (2003). Discrete Choice Methods with Simulation. Cambridge University Press. Cambridge. https://doi.org/10.1017/CBO9780511753930.
  48. Tumi, J. y Escobar-Mamani, F. (2018). Incidencia de factores sociales y políticos en la inversión ambiental del Gobierno Regional de Puno - Perú. Revista de Investigaciones Altoandinas, 20(2), 235–250. http://dx.doi.org/10.18271/ria.
  49. 367.
  50. Valladares, C.y Boelens, R. (2019). Mining for Mother Earth. Governmentalities, sacred waters and nature’s rights in Ecuador. Geoforum, 100(January), 68–79. https://doi.org/ 10.1016/j.geoforum.2019.02.009.
  51. Wang, W.y You, X. (2021). Benefits analysis of classification of municipal solid waste based on system dynamics. Journal of Cleaner Production, 279. 123686. https://doi.org/10.1016/j. jclepro.2020.123686.
  52. Wilson, C. D. H.y Williams, I. D. (2007). Kerbside collection: A case study from the north-west of England. Resources, Conservation and Recycling, 52(2), 381–394. https://doi. org/10.1016/j.resconrec.2007.02.006.
  53. Zotos, G., Karagiannidis, A., Zampetoglou, S., Malamakis, A., Antonopoulos, I. S., Kontogianni, S.y Tchobanoglous, G. (2009). Developing a holistic strategy for integrated waste management within municipal planning: Challenges, policies, solutions and perspectives for Hellenic municipalities in the zero-waste, low-cost direction. Waste Management, 29(5), 1686–1692. https://doi.org/10.1016/j.wasman.2008.11.016.