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Risk perception and production risk in seaweed aquaculture

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  • Ahsan, D. A., & Roth, E. (2010). Farmers’ perceived risks and risk management strategies in an emerging mussel aquaculture industry in Denmark. Marine Resource Economics, 25(3), 309–323. https://doi.org/10.5950/0738-1360-25.3.309
  • Alam, M. A., Guttormsen, A. G., & Roll, K. H. (2019). Production risk and technical efficiency of tilapia aquaculture in Bangladesh. Marine Resource Economics, 34(2), 123–141. https://doi.org/10.1086/704129
  • Alemañ, A. E., Robledo, D., & Hayashi, L. (2019). Development of seaweed cultivation in Latin America: Current trends and future prospects. Phycologia, 58(5), 462–471. https://doi.org/10.1080/00318884.2019.1640996
  • Anderson, J. L., Asche, F., Garlock, T., & Chu, J. (2017). Aquaculture: Its role in the future of food. Frontiers of Economics and Globalization, 17, 159–173.
  • Arthur, J. R., Bondad-Reantaso, M. G., Campbell, M. L., Hewitt, C. L., Phillips, M. J., & Subasinghe, R. P. (2009). Understanding and applying risk analysis in aquaculture: a manual for decision-makers. FAO. http://www.fao.org/3/i1136e/i1136e.pdf
  • Asche, F., Anderson, J. L., Botta, R., Kumar, G., Abrahamsen, E. B., Nguyen, L. T., & Valderrama, D. (2021). The economics of shrimp disease. Journal of Invertebrate Pathology, 186, 107397. https://doi.org/10.1016/j.jip.2020.107397
  • Asche, F., Eggert, H., Oglend, A., Roheim, C. A., & Smith, M. D. (2022). Aquaculture: Externalities and policy options. Review of Environmental Economics and Policy, 16(2), 282–305. https://doi.org/10.1086/721055
  • Asche, F., Misund, B., & Oglend, A. (2016). The spot-forward relationship in the Atlantic Salmon market. Aquaculture Economics & Management, 20(2), 222–234. https://doi.org/10.1080/13657305.2016.1156192
  • Asche, F., & Tveterås, R. (1999). Modelling production risk with a two-step procedure. Journal of Agricultural and Resource Economics, 24, 424–439.
  • Avila, M., Aroca, G., Rodríguez, D., Riquelme, R., Piel, M. I., Ramírez, M. E., & De Zarate, C. (2019). Manual de Buenas Prácticas para el cultivo del Pelillo (Agarophyton chilensis ex Gracilaria chilensis). Universidad Arturo Prat, ICYT.
  • Bergfjord, O. J. (2009). Risk perception and risk management in Norwegian aquaculture. Journal of Risk Research, 12(1), 91–104. https://doi.org/10.1080/13669870802488941
  • Bondad-Reantaso, M. G., Arthur, J. R., and Subasinghe, R. P. (Eds.). (2008). Understanding and applying risk analysis in aquaculture. Food and Agriculture Organization of the United Nations.
  • Bryden, C., & Coleman, S. (2023). Maine seaweed benchmarking report. Maine aquaculture Association. The University of Maine.
  • Buschmann, A. H., Stead, R. A., Hernández-González, M. C., Pereda, S. V., Paredes, J. E., & Maldonado, M. A. (2013). Un análisis crítico sobre el uso de macroalgas como base para una acuicultura sustentable. Revista Chilena de Historia Natural, 86(3), 251–264. https://doi.org/10.4067/S0716-078X2013000300003
  • Buschmann, A. H., Camus, C., Infante, J., Neori, A., Israel, Á., Hernández-González, M. C., Pereda, S. V., Gomez-Pinchetti, J. L., Golberg, A., Tadmor-Shalev, N., & Critchley, A. T. (2017). Seaweed production: overview of the global state of exploitation, farming and emerging research activity. European Journal of Phycology, 52(4), 391–406. https://doi.org/10.1080/09670262.2017.1365175
  • Camus, C., Hernández-González, M. D. C., & Buschmann, A. H. (2019). The seaweed resources of Chile over the period 2006–2016: Moving from gatherers to cultivators. Botanica Marina, 62(3), 237–247. https://doi.org/10.1515/bot-2018-0030
  • Cleaver, C., Johnson, T. R., Hanes, S. P., & Pianka, K. (2018). From fishers to farmers: Assessing aquaculture adoption in a training program for commercial fishers. Bulletin of Marine Science, 94(3), 1215–1222. https://doi.org/10.5343/bms.2017.1107
  • Crost, B., Shankar, B., Bennett, R., & Morse, S. (2007). Bias from farmer self‐selection in genetically modified crop productivity estimates: Evidence from Indian data. Journal of Agricultural Economics, 58(1), 24–36. https://doi.org/10.1111/j.1477-9552.2007.00076.x
  • Dan, Y. A. N. G., Zhang, H. W., Liu, Z. M., & Qiao, Z. E. N. G. (2021). Do cooperatives participation and technology adoption improve farmers’ welfare in China? A joint analysis accounting for selection bias. Journal of Integrative Agriculture, 20(6), 1716–1726. https://doi.org/10.1016/S2095-3119(20)63325-1
  • Devilliers, E., Möhring, N., & Finger, R. (2024). Estimation and comparison of the performance of low-input and conventional agricultural production systems. Q Open, 4(1), qoad032. https://doi.org/10.1093/qopen/qoad032
  • Díaz-Tapia, P. A., Álvarez, G., Varela, D., Pérez-Santos, I., Díaz, M., Molinet, C., Seguel, M., Aguilera-Belmonte, A., Guzmán, L., Uribe, E., Rengel, J., Hernández, C., Segura, C., & Figueroa, R. I. (2019). Impacts of harmful algal blooms on the aquaculture industry: Chile as a case study. Perspectives in Phycology, 6(1-2), 39–50. https://doi.org/10.1127/pip/2019/0081
  • Eeckhoudt, L., Gollier, C., & Schlesinger, H. (1996). Changes in background risk and risk taking behavior. Econometrica, 64(3), 683–689. https://doi.org/10.2307/2171866
  • FAO (Food and Agriculture Organization). (2018). The state of world fisheries and aquaculture 2018 – Meeting the sustainable development goals. FAO.
  • FAO (Food and Agriculture Organization). (2021a). FAO yearbook: Fishery and aquaculture statistics 2018. FAO.
  • FAO (Food and Agriculture Organization). (2021b). Procedimientos para la instalación y operación de un cultivo de pelillo (Agarophyton chilense). FAO.
  • Ferrer, R. A., & Klein, W. M. (2015). Risk perceptions and health behavior. Current Opinion in Psychology, 5, 85–89. https://doi.org/10.1016/j.copsyc.2015.03.012
  • Gallardo Fernández, G. L., Saunders, F., Ávila, M., Isakson, A., Greco, I., Moscoso, P., & Rodríguez, D. (2018). Granjeras del mar: Luchas y sueños en Coliumo. Historia del Área de Manejo del Sindicato N°2. Andros Impresores.
  • Gallardo Lagno, A. (2017). Evento FAN 2016. SERNAPESCA. Ministerio de Economía, Fomento y Turismo.
  • Greene, W. H. (2018). Econometric analysis. (8th ed.). Pearson.
  • Hanna, R., Mullainathan, S., & Schwartzstein, J. (2014). Learning through noticing: Theory and evidence from a field experiment. The Quarterly Journal of Economics, 129(3), 1311–1353. https://doi.org/10.1093/qje/qju015
  • Harrison, G. W., List, J. A., & Towe, C. (2007). Naturally occurring preferences and exogenous laboratory experiments: A case study of risk aversion. Econometrica, 75(2), 433–458. https://doi.org/10.1111/j.1468-0262.2006.00753.x
  • Heckman, J. J. (1979). Sample selection bias as a specification error. Econometrica, 47(1), 153–161. https://doi.org/10.2307/1912352
  • IFOP (Instituto de Fomento Pesquero). (2017). Manual Sistema de cultivo para acuicultores de pequeña escala. Instituto de Fomento Pesquero.
  • Just, R. E., & Pope, R. D. (1978). Stochastic specification of production functions and economic implications. Journal of Econometrics, 7(1), 67–86. https://doi.org/10.1016/0304-4076(78)90006-4
  • Just, R. E., & Pope, R. D. (1979). Production function estimation and related risk considerations. American Journal of Agricultural Economics, 61(2), 276–284. https://doi.org/10.2307/1239732
  • Keil, M., Wallace, L., Turk, D., Dixon-Randall, G., & Nulden, U. (2000). An investigation of risk perception and risk propensity on the decision to continue a software development project. Journal of Systems and Software, 53(2), 145–157. https://doi.org/10.1016/S0164-1212(00)00010-8
  • Khan, A., Guttormsen, A., & Roll, K. H. (2018). Production risk of pangas (Pangasius hypophthalmus) fish farming. Aquaculture Economics & Management, 22(2), 192–208. https://doi.org/10.1080/13657305.2017.1284941
  • Khan, M. A., Begum, R., Nielsen, R., & Hoff, A. (2021). Production risk, technical efficiency, and input use nexus: Lessons from Bangladesh aquaculture. Journal of the World Aquaculture Society, 52(1), 57–72. https://doi.org/10.1111/jwas.12767
  • Kleemann, L., & Riekhof, M. C. (2023). Background risk and risk-taking – evidence from the field. Environment and Development Economics, 28(3), 265–284. https://doi.org/10.1017/S1355770X22000274
  • Koundouri, P., & Nauges, C. (2005). On production function estimation with selectivity and risk considerations. Journal of Agricultural and Resource Economics, 30, 597–608.
  • Kumar, G., Engle, C., & Tucker, C. (2018). Factors driving aquaculture technology adoption. Journal of the World Aquaculture Society, 49(3), 447–476. https://doi.org/10.1111/jwas.12514
  • Kumbhakar, S. C. (1993). Production risk, technical efficiency, and panel data. Economics Letters, 41(1), 11–16. https://doi.org/10.1016/0165-1765(93)90103-J
  • Kumbhakar, S. C. (2002). Specification and estimation of production risk, risk preferences and technical efficiency. American Journal of Agricultural Economics, 84(1), 8–22. https://doi.org/10.1111/1467-8276.00239
  • Kumbhakar, S. C., & Tveterås, R. (2003). Risk preferences, production risk and firm heterogeneity. The Scandinavian Journal of Economics, 105(2), 275–293. https://doi.org/10.1111/1467-9442.t01-1-00009
  • Llanquihue, E. (2016). Seremi prohibe extraer mariscos ante la presencia de Marea Roja en Chiloé. El Llanquihue. https://www.ellanquihue.cl/impresa/2016/03/04/papel/
  • Losinger, W. C. (2006). Factors influencing the variance in expected yield on catfish farms in the United States. Aquaculture International, 14(5), 415–419. https://doi.org/10.1007/s10499-006-9044-3
  • Miyata, S. (2003). Household’s risk attitudes in Indonesian villages. Applied Economics, 35(5), 573–583. https://doi.org/10.1080/0003684022000020823
  • Moncayo, J., Salazar, L., & Avendaño-Herrera, R. (2024). What drives stocking density decisions in the Chilean salmon industry? A retrospective analysis of stocking regulations. Aquaculture Economics & Management, 1–17. https://doi.org/10.1080/13657305.2023.2300486
  • Moor, J., Ropicki, A., Anderson, J. L., & Asche, F. (2022a). Stochastic modeling and financial viability of mollusk aquaculture. Aquaculture, 552, 737963. https://doi.org/10.1016/j.aquaculture.2022.737963
  • Moor, J., Ropicki, A., & Garlock, T. (2022b). Clam aquaculture profitability under changing environmental risks. Aquaculture Economics & Management, 26(3), 283–300. https://doi.org/10.1080/13657305.2022.2058113
  • Mulyati, H., & Geldermann, J. (2017). Managing risks in the Indonesian seaweed supply chain. Clean Technologies and Environmental Policy, 19(1), 175–189. https://doi.org/10.1007/s10098-016-1219-7
  • Naylor, R. L., Hardy, R. W., Buschmann, A. H., Bush, S. R., Cao, L., Klinger, D. H., Little, D. C., Lubchenco, J., Shumway, S. E., & Troell, M. (2021). A 20-year retrospective review of global aquaculture. Nature, 591(7851), 551–563. https://doi.org/10.1038/s41586-021-03308-6
  • Nnaji, A. (2022). Determinants of the risk perception of farmer–herder conflicts: Evidence from rural Nigeria. International Journal of Social Economics, 49(8), 1172–1194. https://doi.org/10.1108/IJSE-10-2021-0578
  • Ogundari, K., & Akinbogun, O. O. (2010). Modeling technical efficiency with production risk: A study of fish farms in Nigeria. Marine Resource Economics, 25(3), 295–308. https://doi.org/10.5950/0738-1360-25.3.295
  • Olaoye, O. J., Ezeri, G. O., Akegbejo-Samsons, Y., Awotunde, J. M., & Ojebiyi, W. G. (2016). Dynamics of the adoption of improved aquaculture technologies among fish farmers in Lagos State, Nigeria. Croatian Journal of Fisheries, 74(2), 56–70. https://doi.org/10.1515/cjf-2016-0012
  • Onumah, E. E., Onumah, J. A., & Onumah, G. E. (2018). Production risk and technical efficiency of fish farms in Ghana. Aquaculture, 495, 55–61. https://doi.org/10.1016/j.aquaculture.2018.05.033
  • Pillay, T. V. R. (1994). Aquaculture development: progress and prospects. Fishing News Books Ltd.
  • Quiroga, M., Jaime, M., Salazar, C., Figueroa, Y., & Gonzalez, N. (2018). Determinación del beneficio potencial de la implementación de la ley de bonificación de algas en el sector acuicultor de las regiones del Biobío y Los Lagos Final Report, Fondos de Investigación Pesquera y Acuícola (FIPA).
  • Ramírez, E., & Ruben, R. (2015). Gender systems and women’s labor force participation in the salmon industry in Chiloé, Chile. World Development, 73, 96–104. https://doi.org/10.1016/j.worlddev.2014.11.003
  • Roll, K. H. (2019). Moral hazard: The effect of insurance on risk and efficiency. Agricultural Economics, 50(3), 367–375. https://doi.org/10.1111/agec.12490
  • Salazar, C., Jaime, M., & Quiroga, M. (2021). Transition patterns of fishermen and land farmers into small-scale seaweed aquaculture: The role of risk and time preferences. Marine Resource Economics, 36(3), 269–288. https://doi.org/10.1086/714417
  • Salazar, C., Jaime, M., Retamal, R. C., & Baquedano, M. (2023). Women engagement, psychological traits, and gender gaps in the small‐scale seaweed aquaculture in Chile. Reviews in Aquaculture, 15(4), 1540–1553. https://doi.org/10.1111/raq.12793
  • Sarker, M. A. A., Arshad, F. M., Alam, M. F., Mohamed, Z. A., & Khan, M. A. (2016). Stochastic modeling of production risk and technical efficiency of Thai koi (Anabas testudineus) farming in Northern Bangladesh. Aquaculture Economics & Management, 20(2), 165–184. https://doi.org/10.1080/13657305.2016.1156189
  • Silva, H., & Soto, R. (2022). Externalidades y Regulación de la Industria del Salmón en Chile y el resto del mundo. Pontificia Universidad Católica de Chile. https://www.consejodelsalmon.cl/wp-content/uploads/2022/07/Estudio-PUC-Informe-Final-Julio-2022.pdf
  • Slater, M. J., Mgaya, Y. D., Mill, A. C., Rushton, S. P., & Stead, S. M. (2013). Effect of social and economic drivers on choosing aquaculture as a coastal livelihood. Ocean & Coastal Management, 73, 22–30. https://doi.org/10.1016/j.ocecoaman.2012.12.002
  • SUBPESCA. (2015). Reglamento de concesiones de acuicultura. Ministerio de Economía, Fomento y Reconstrucción del Gobierno de Chile. Subsecretaria de Pesca y Acuicultura.
  • Simon, J. W., Guajardo-Soto, G., & Ceballos Sáez, C. (2023). La promoción estatal de la acuicultura sustentable: Controversias sobre el desarrollo en el centro-sur de Chile. Política y Sociedad, 60(2), e75239. https://doi.org/10.5209/poso.75239
  • Skewes, J. C., Álvarez, R., & Navarro, M. (2012). Usos consuetudinarios, conflictos actuales y conservacion en el borde costero de Chiloé insular. Magallania, 40(1), 109–125. https://doi.org/10.4067/S0718-22442012000100006
  • Soto, D., León‐Muñoz, J., Dresdner, J., Luengo, C., Tapia, F. J., & Garreaud, R. (2019). Salmon farming vulnerability to climate change in southern Chile: Understanding the biophysical, socioeconomic and governance links. Reviews in Aquaculture, 11(2), 354–374. https://doi.org/10.1111/raq.12336
  • Suyo, J. G. B., Le Masson, V., Shaxson, L., Luhan, M. R. J., & Hurtado, A. Q. (2021). Navigating risks and uncertainties: Risk perceptions and risk management strategies in the Philippine seaweed industry. Marine Policy, 126, 104408. https://doi.org/10.1016/j.marpol.2021.104408
  • Tango-Lowy, T., & Robertson, R. A. (2002). Predisposition toward adoption of open ocean aquaculture by northern New England’s inshore, commercial fishermen. Human Organization, 61(3), 240–251. https://doi.org/10.17730/humo.61.3.8upxa5gugtt0r3re
  • Tiedemann, T., & Latacz‐Lohmann, U. (2013). Production risk and technical efficiency in organic and conventional agriculture–the case of arable farms in Germany. Journal of Agricultural Economics, 64(1), 73–96. https://doi.org/10.1111/j.1477-9552.2012.00364.x
  • Tveterås, R. (1999). Production risk and productivity growth: Some findings for Norwegian salmon aquaculture. Journal of Productivity Analysis, 12(2), 161–179.
  • Tveterås, R., & Wan, G. (2000). Flexible panel data models for risky production technologies with an application to salmon aquaculture. Econometric Reviews, 19(3), 367–389. https://doi.org/10.1080/07474930008800477
  • Ugarte, A., Romero, J., Farías, L., Sapiains, R., Aparicio-Rizzo, P., Ramajo, L., Aguirre, C., Masotti, I., Jacques, M., Aldunce, P., Alonso, C., Azócar, G., Bada, R., Barrera, F., Billi, M., Boisier, J., Carbonell, P., De la Maza, L., De la Torre, M., … Williamson, C. (2022). Marea roja y cambio global: elementos para la construcción de una gobernanza integrada de las Floraciones de Algas Nocivas (FAN). Centro de Ciencia del Clima y la Resiliencia (CR)2, (ANID/FONDAP/15110009), 84 pp. www.cr2.cl/fan
  • Valderrama, D., Cai, J., Hishamunda, N., Ridler, N., Neish, I. C., Hurtado, A. Q., Msuya, F. E., Krishnan, M., Narayanakumar, R., Kronen, M., Robledo, D., Gasca-Leyva, E., & Fraga, J. (2015). The economics of Kappaphycus Seaweed cultivation in developing countries: A comparative analysis of farming systems. Aquaculture Economics & Management, 19(2), 251–277. https://doi.org/10.1080/13657305.2015.1024348
  • Valenzuela-Valenzuela, A., Rivera-Corvalán, B., & Cartes-Velásquez, R. (2022). Empoderamiento productivo de las algueras de Coliumo posterior al terremoto 27F. RIVAR, 9(27), 153–169. https://doi.org/10.35588/rivar.v9i27.5670
  • Van der Linden, S. (2015). The social-psychological determinants of climate change risk perceptions: Towards a comprehensive model. Journal of Environmental Psychology, 41, 112–124. https://doi.org/10.1016/j.jenvp.2014.11.012
  • Vergara, J., & Vásquez, C. (2021). Manual de procedimientos para la instalación y operación de un cultivo de pelillo [Proyecto Fortalecimiento de la capacidad de adaptación en el sector pesquero y acuícola chileno al cambio climático (GCP/CHI/039/GFF)]. FAO.
  • Villano, R. A., O'Donnell, C. J., & Battese, G. E. (2005). An investigation of production risk, risk preferences and technical efficiency: Evidence from rainfed lowland rice farms in the Philippines. Working papers series in agricultural and resources economics, University of New England.
  • Vrachioli, M., Stefanou, S. E., & Tzouvelekas, V. (2021). Impact evaluation of alternative irrigation technology in Crete: Correcting for selectivity bias. Environmental and Resource Economics, 79(3), 551–574. https://doi.org/10.1007/s10640-021-00572-y
  • Wandji, D. N., Pouomogne, V., Binam, J. N., & Nouaga, R. Y. (2012). Farmer’s perception and adoption of new aquaculture technologies in the western highlands of Cameroon. Tropicultura, 30(3), 180–185.
  • Wooldridge, J. M. (2015). Control function methods in applied econometrics. Journal of Human Resources, 50(2), 420–445. https://doi.org/10.3368/jhr.50.2.420
  • Zhou, X., Ma, W., Li, G., & Qiu, H. (2020). Farm machinery use and maize yields in China: an analysis accounting for selection bias and heterogeneity. Australian Journal of Agricultural and Resource Economics, 64(4), 1282–1307. https://doi.org/10.1111/1467-8489.12395

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