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http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/79555完整後設資料紀錄
| DC 欄位 | 值 | 語言 |
|---|---|---|
| dc.contributor.advisor | 陸怡蕙(Yir-Hueih Luh) | |
| dc.contributor.author | Ting-Ya Yang | en |
| dc.contributor.author | 楊婷雅 | zh_TW |
| dc.date.accessioned | 2022-11-23T09:03:35Z | - |
| dc.date.available | 2021-11-08 | |
| dc.date.available | 2022-11-23T09:03:35Z | - |
| dc.date.copyright | 2021-11-08 | |
| dc.date.issued | 2021 | |
| dc.date.submitted | 2021-09-23 | |
| dc.identifier.citation | 王秀慧(2018)。有機農業促進法簡介。農政與農情,318。 行政院(2018)。對地綠色環境給付計畫-建立農業新典範。臺北市:行政院農業委員會。 行政院農業委員會(2021)。農業統計資料查詢。臺北市:行政院農業委員會。 行政院農業委員會農糧署(2021)。109年12月有機栽培農戶數及種植面積概況。臺北市:行政院農業委員會農糧署。 有機農業生產資訊平臺(2021)。統計圖表。取自https://oapi.i-organic.org.tw/Statistics.aspx 有機農業全球資訊網(2019)。歷年有機農業統計。取自https://info.organic.org.tw/8269/ 有機農業全球資訊網(2021)。有機農場家數。取自https://epv.afa.gov.tw/ 林正木(2016)。影響花宜地區原住民族農友投入有機農業行為意向之研究。台灣原住民族研究學報,6(3),101-133。 林明洲(2001)。輔導有機米產銷經營。農政與農情,108。 林美華、莊岳峰、曾玫菁(2013)。休耕農地活化-農地活起來,農業有未來。農政與農情,247。 胡立諄、賴進貴(2006)。臺灣女性癌症的空間分析。台灣地理資訊學刊,4,39-55。 劉君雅、鄧志松、唐代彪(2009)。臺灣低生育率之空間分析。人口學刊,39,119-155。 賴進貴、葉高華、張智昌(2007)。投票行為之空間觀點與空間分析-以臺灣2004年總統選舉為例。選舉研究,14(1),33-60。 Akram, M. W., Akram, N., Hongshu, W., Mehmood, A. (2019). An assessment of economic viability of organic farming in Pakistan. Custos e Agronegocio, 15(1), 141-169. Anselin, L. (1988). Spatial econometrics: Methods and Model. Baden-Württemberg, Germany: Springer, Dordrecht. Anselin, L. (2001). Spatial econometrics. In B. H. Baltagi (Ed.), A companion to theoretical econometrics (pp.310-330). Oxford, England: Blackwell Publishing Ltd. Belson, W. A. (1959). Matching and prediction on the principle of biological classification. Journal of the Royal Statistical Society, 8(2), 65-75. Beltrán-Esteve, M., Reig-Martínez, E. (2014). Comparing conventional and organic citrus grower efficiency in Spain. Agricultural Systems, 129, 115-123. Bjørkhaug, H., Blekesaune, A. (2013). Development of organic farming in Norway: A statistical analysis of neighbourhood effects. Geoforum, 45, 201-210. Bliss, C. I. (1935). The calculation of the dosage-mortality curve. Annals of Applied Biology, 22(1), 124-167. Bolwig, S., Gibbon, P., Jones, S. (2009). The economics of smallholder organic contract farming in Tropical Africa. World Development, 37(6), 1094-1104. Boncinelli, F., Bartolini, F., Brunori, G., Casini, L. (2016). Spatial analysis of the participation in agri-environment measures for organic farming. Renewable Agriculture and Food Systems, 31(4), 375-386. Bouttes, M., Bize, N., Maréchal, G., Michel, G., Cristobal, M. S., Martin, G. (2019). Conversion to organic farming decreases the vulnerability of dairy farms. Agronomy for Sustainable Development, 39(2), 19. Bravo-Monroy, L., Potts, S. G., Tzanopoulos, J. (2016). Drivers influencing farmer decisions for adopting organic or conventional coffee management practices. Food Policy, 58, 49-61. Burton, M., Rigby, D., Young, T. (1999). Analysis of the determinants of adoption of organic horticultural techniques in the UK. Journal of Agricultural Economics, 50(1), 47-63. Burton, M., Rigby, D., Young, T. (2003). Modelling the adoption of organic horticultural technology in the UK using duration analysis. The Australian Journal of Agricultural and Resource Economics, 47(1), 29-54. Caputo, P., Zagarella, F., Cusenza, M. A., Mistretta, M., Cellura, M. (2020). Energy-environmental assessment of the UIA-OpenAgri case study as urban regeneration project through agriculture. Science of The Total Environment, 729, 138819. Cliff, A. Ord., J. K. (1973). Spatial Autocorrelation. London, England: Pion. Darnhofer, I., Schneeberger, W., Freyer, B. (2005). Converting or not converting to organic farming in Austria: Farming types and their rationale. Agriculture and Human Values, 22(1), 39-52. Das, S., Chatterjee, A., Pal, T. K. (2020). Organic farming in India: A vision towards a healthy nation. Food Quality and Safety, 4(2), 69-76. Dhar, A. R., Uddin, M. T., Roy, M. K. (2020). Assessment of organic shrimp farming sustainability from economic and environmental viewpoints in Bangladesh. Environmental Research, 180, 108879. Edwards, A. W. F., Cavalli-Sforza, L. L. (1965). A method for cluster analysis. Biometrics, 21(2), 362-375. Everitt, B., Landau, S., Leese, M., Stahl, D. (2011). Cluster analysis. New Jersey, NJ: Wiley. Froehlich, A. G., Melo, A. S. S. A., Sampaio, B. (2018). Comparing the profitability of organic and conventional production in family farming: Empirical evidence from Brazil. Ecological Economics, 150, 307-314. Gillespie, J., Nehring, R. (2013). Comparing economic performance of organic and conventional U.S. beef farms using matching samples. Agricultural and Resource Economics, 57(2), 178-192. Halder, S., Urey, I. (2003). Patterns and trends in food consumption in poor urban and rural households in Bangladesh: Cluster analysis of household survey data. Dhaka, Bangladesh: BRAC Research and Evaluation Division. Henneron, L., Bernard, L., Hedde, M., Pelosi, C., Villenave, C., Chenu, C., Bertrand, M., Girardin, C., Blanchart, E. (2015). Fourteen years of evidence for positive effects of conservation agriculture and organic farming on soil life. Agronomy for Sustainable Development, 35, 169-181. Home, R., Indermuehle, A., Tschanz, A., Ries, E., Stolze, M. (2019). Factors in the decision by Swiss farmers to convert to organic farming. Renewable Agriculture and Food Systems, 34, 571-581. Kallas, Z., Serra, T., Gil, J. M. (2010). Farmers’ objectives as determinants of organic farming adoption: The case of Catalonian vineyard production. Agricultural Economics, 41(5), 409-423. Kamau, J. W., Stellmacher, T., Biber-Freudenberger, L., Borgemeister, C. (2018). Organic and conventional agriculture in Kenya: A typology of smallholder farms in Kajiado and Murang'a counties. Journal of Rural Studies, 57, 171-185. Karki, L., Schleenbecker, R., Hamm, U. (2011). Factors influencing a conversion to organic farming in Nepalese tea farms. Journal of Agriculture and Rural Development in the Tropics and Subtropics, 112(2), 113-123. Kaufman, L., Rousseeuw, P. J. (2009). Finding groups in data: An introduction to cluster analysis. New Jersey, NJ: Wiley. Khaledi, M., Weseen, S., Sawyer, E., Ferguson, S., Gray, R. (2010). Factors influencing partial and complete adoption of organic farming practices in Saskatchewan, Canada. Canadian Journal of Agricultural Economics, 58(1), 37-56. Kmenta, J. (1997). Elements of econometrics: Second edition. Michigan, MI: University of Michigan Press. Koesling, M., Flaten, O, Lien, G. (2008). Factors influencing the conversion to organic farming in Norway. International Journal of Agricultural Resources, Governance and Ecology, 7(1-2), 78-95. Kuswardhani, N., Soni, P., Shivakoti, G. P. (2014). Cluster analysis for classification of farm households based on socio-economic characteristics for technology adoption in agriculture: A case study of West Java province, Indonesia. Journal of Food, Agriculture Environment, 12(1), 238-247. Kumara, N., Farooquee, N. A., Sasidhar, P. V. K. (2016). Dairy farming and organic farming for bio-resource conversation and livelihood development in Tumkur district Karnataka State-India. In S., Nautiyal, R., Schaldach, K. V., Raju, H., Kaechele, B., Pritchard, K. S., Rao (Eds.), Climate change challenge (3C) and social-economic-ecological interface-building (pp.401-406). New York, NY: Springer. Kummer, S., Aigelsperger, L., Milestad, R., Chowdhury, A. H., Vogl, C. R. (2010). Knowledge systems, innovations and social learning in organic farming. 9th European IFSA Symposium, 4-7 July 2010, Vienna, Austria. Latruffe, L., Nauges, C. (2014). Technical efficiency and conversion to organic farming: The case of France. European Review of Agricultural Economics, 41(2), 227-253. Lapple, D., Kelley, H. (2015). Spatial dependence in the adoption of organic drystock farming in Ireland. European Review of Agricultural Economics, 42(2), 315-337. Lee, K. S., Choe, Y. C., Park, S. H. (2015). Measuring the environmental effects of organic farming: A meta-analysis of structural variables in empirical research. Journal of Environmental Management, 162, 263-274. Luh, Y. H., Chang, Y. C. (2021). Effect of climate change on staple food production: Empirical evidence from a structural Ricardian analysis. Agronomy, 11, 369. Mala, Z., Maly, M. (2013). The determinants of adopting organic farming practices: a case study in the Czech Republic. Agricultural Economics, 59(1), 19-28. Marriott, F. H. C., Kendall, M. G. (1990). A dictionary of statistical terms. London, England: Longman Scientific Technical. Mayen, C. D., Balagtas, J. V., Alexander, C. E. (2010). Technology adoption and technical efficiency: Organic and conventional dairy farms in the United States. American Journal of Agricultural Economics, 92(1), 181-195. Meng, G., Cheng, D. Z., Shukai, C. (2021). An analysis of the 'direct effect' and 'indirect effect' of urban housing prices on the upgrading of industrial structure—Based on data of 285 cities. Journal of Physics: Conference Series, 1792, 012017. Moumouni, I., Baco, M. N., Tovignan, S., Gbèdo, F., Nouatin, G. S., Vodouhê, S. D., Liebe, U. (2013). What happens between technico-institutional support and adoption of organic farming? A case study from Benin. Organic Agriculture, 3(1), 1-8. Myles, A. J., Feudale, R. N., Liu, Y., Woody, N. A., Brown, S. D. (2004). An introduction to decision tree modeling. Journal of Chemometrics, 18, 275-285. Nguyen, V. H., Nguyen, T. P. L. (2020). Intention to accept organic agricultural production of Vietnamese farmers: An investigation using the theory of planned behavior. Journal of Asian Finance, Economics and Business, 7(10), 949-957. Nunthasen, K., Nunthasen, W. (2019). Organic farming policy effects in northern of Thailand: Spatial lag analysis. Advances in Intelligent Systems and Computing, 769, 297-305. Ríos, I. de I., Rivera, M., García, C. (2016). Redefining rural prosperity through social learning in the cooperative sector: 25 years of experience from organic agriculture in Spain. Land Use Policy, 54, 85-94. Sacco, D., Moretti, B., Manaco, S., Grignani, C. (2015). Six-year transition from conventional to organic farming: effects on crop production and soil quality. European Journal of Agronomy, 69, 10-20. Serdjuk, M., Bodmer, U., Hülsbergen, K. J. (2018). Integration of biogas production into organic arable farming systems: crop yield response and economic effects. Organic Agriculture, 8(4), 301-314. Serebrennikov, D., Thorne, F., Kallas, Z., McCarthy, S. N. (2020). Factors influencing adoption of sustainable farming practices in Europe: A systemic review of empirical literature. Sustainability, 12, 9719. Sodjinou, E., Glin, L. C., Nicolay, G., Tovignan, S., Hinvi, J. (2015). Socioeconomic determinants of organic cotton adoption in Benin, West Africa. Agricultural and Food Economics, 3(1), 12. Tauer, L. W. (2009). Estimation of treatment effects of recombinant bovine somatotropin using matching samples. Review of Agricultural Economics, 31, 411-423. Tiffin, R., Balcombe, K. (2011). The determinants of technology adoption by UK farmers using Bayesian model averaging: The cases of organic production and computer usage. The Australian Journal of Agricultural and Resource Economics, 55(4), 579-598. Tuck, S. L., Winqvist, C., Mota, F., Ahnstrom, J., Turnbull, L. A., Bengtsson, J. (2014). Land‐use intensity and the effects of organic farming on biodiversity: A hierarchical meta‐analysis. Journal of Applied Ecology, 51, 746-755. Uematsu, H., Mishra, A. K. (2012). Organic farmers or conventional farmers: Where's the money? Ecological Economics, 78, 55-62. Ullah, A., Shah, S. N. M., Ali, A., Naz, R., Mahar, A., Kalhoro, S. A. (2015). Factors affecting the adoption of organic farming in Peshawar-Pakistan. Agricultural Sciences, 6, 587-593. Vian, J. F., Peigne, J., Chaussod, R., Roger-Estrade, J. (2009). Effects of four tillage systems on soil structure and soil microbial biomass in organic farming. Soil Use and Management, 25(1), 1-10. Vroege, W., Meraner, M., Polman, N., Storm, H., Heijman, W., Finger, R. (2020). Beyond the single farm – A spatial econometric analysis of spill-overs in farm diversification in the Netherlands. Land Use Policy, 99, 105019. Winqvist, C., Ahnstrom, J., Bengtsson, J. (2012). Effects of organic farming on biodiversity and ecosystem services: taking landscape complexity into account. Annals of the New York Academy of Sciences, 1249(1), 191-203. Wollni, M., Andersson, C. (2014). Spatial patterns of organic agriculture adoption: Evidence from Honduras. Ecological Economics, 97, 120-128. Wuepper, D., Wimmer, S. Sauer, J. (2020). Is small family farming more environmentally sustainable? Evidence from a T spatial regression discontinuity design in Germany. Land Use Policy, 90, 104360. Zhou, X., Feng, C. (2017). The impact of environmental regulation on fossil energy consumption in China: Direct and indirect effects. Journal of Cleaner Production, 142(4), 3174-3183. | |
| dc.identifier.uri | http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/79555 | - |
| dc.description.abstract | 稻米產業從過往至今在臺灣農業發展過程中,佔有極為重要之地位,許多農業政策亦是以稻米為目標作物,而隨著環境友善及永續發展觀念興起,近年來臺灣有機農業呈現蓬勃發展,其中又以有機稻米的種植面積在各類作物中佔據首位。因此,本研究以有機農業中之稻作為例,檢視稻作農家採用有機農法的影響因子,並進行有機農法採用強度(adoption intensity)之空間計量分析,以探討臺灣各鄉鎮有機稻作之空間聚集情形,及影響稻作農家投入有機農法耕地占比的重要因素。 本研究使用2015年農林漁牧業普查資料,除利用非線性機率模型分析稻作農家採用有機農法的影響因素,並進一步應用全域型及區域型空間自相關之兩種空間聚集分析方法,檢視全臺灣323個鄉鎮在有機稻米種植比例是否呈現空間聚集。此外,本研究亦使用傳統迴歸模型、空間落遲模型及空間誤差模型進行空間迴歸分析,探討影響稻作農家有機農法採用強度之因素,及其空間外溢效果。 本研究之結果顯示,經營管理者之教育程度為高中以上及其農牧業工作日數、戶內成員之年齡、教育程度、從事之工作及農場特徵等,皆為稻作農家有機農法採用之重要影響因素。此外,有機稻米的生產有形成空間聚集之情形,尤其是在北北基地區,及部分宜花地區呈現顯著的空間聚集。再就有機農法採用強度而言,結果顯示,主要經營者及戶內15歲以上人口之社會經濟特性對稻作農家之有機農法採用強度會有不同的影響,而從空間落遲模型之結果則可發現,稻作農家戶內15歲以上人口之中高教育程度比例及男性比例,對於其他鄰近地區會產生外溢效果。 本研究結果有助於日後制定有機農業相關政策,政策內容可由具有空間聚集之鄉鎮著手,不僅使原本之鄉鎮持續發展有機農業,更能影響其他鄰近地區亦投入有機農業,進而提升實行此政策之效益。 | zh_TW |
| dc.description.provenance | Made available in DSpace on 2022-11-23T09:03:35Z (GMT). No. of bitstreams: 1 U0001-2109202119362800.pdf: 2517490 bytes, checksum: 74b54c0cb86dcffa77cc3249f20dbf85 (MD5) Previous issue date: 2021 | en |
| dc.description.tableofcontents | 謝辭 i 摘要 ii Abstract iii 目錄 v 圖目錄 vi 表目錄 vii 第一章 緒論 1 第一節 動機與目的 1 第二節 研究流程 4 第二章 文獻回顧 6 第一節 影響有機農法採用之因素 6 第二節 採用有機農法之影響 12 第三節 研究方法 15 第三章 資料來源及實證模型 20 第一節 資料來源 20 第二節 敘述統計 24 第三節 空間自相關分析 37 第四節 研究方法 40 第四章 實證結果與討論 44 第一節 有機農法採用影響因素 44 第二節 空間自相關分析 47 第三節 空間迴歸分析 50 第五章 結論與建議 62 第一節 研究結論 62 第二節 政策與後續研究建議 63 參考文獻 66 | |
| dc.language.iso | zh-TW | |
| dc.title | 稻作農家有機農法採用之空間計量分析:農業普查資料之實證研究 | zh_TW |
| dc.title | Spatial Econometrics Analysis of Rice Households’ Adoption of Organic Farming: Empirical Evidence from the Agriculture Census Data | en |
| dc.date.schoolyear | 109-2 | |
| dc.description.degree | 碩士 | |
| dc.contributor.oralexamcommittee | 詹滿色(Hsin-Tsai Liu),謝銘逢(Chih-Yang Tseng) | |
| dc.subject.keyword | 有機農業,農業普查資料,稻作農家,有機農法採用,有機農法採用強度,稻作空間聚集,空間自相關,空間迴歸分析, | zh_TW |
| dc.subject.keyword | organic farming,agriculture census data,rice farm households,organic farming adoption,organic farming adoption intensity,rice spatial agglomeration,spatial autocorrelation,spatial regression analysis, | en |
| dc.relation.page | 72 | |
| dc.identifier.doi | 10.6342/NTU202103269 | |
| dc.rights.note | 同意授權(全球公開) | |
| dc.date.accepted | 2021-09-24 | |
| dc.contributor.author-college | 生物資源暨農學院 | zh_TW |
| dc.contributor.author-dept | 農業經濟學研究所 | zh_TW |
| 顯示於系所單位: | 農業經濟學系 | |
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