Evaluation and spatial-temporal evolution of negative externalities of rice production in China in the 21st century
Received date: 2023-06-12
Revised date: 2023-12-12
Online published: 2024-05-30
Research on the indirect value of rice production has predominantly focused on ecosystem services, often overlooking the importance of negative externalities. Addressing these externalities is crucial for ecological regulation and the promotion of sustainable agriculture. This study employed market valuation and spatial autocorrelation methods to evaluate the negative externality value of rice production in China, using panel data from 2000 to 2021 across various provinces. The analysis covered greenhouse gas emissions, pollution from fertilizers and pesticides, plastic film residue, water resource consumption, and energy pollution from agricultural machinery. The findings reveal that: (1) The mean annual value of negative externalities in national rice production was approximately 2080.27×108 yuan, with the contributions from greenhouse gas emissions, fertilizers, pesticides, plastic waste, water resource consumption, and agricultural machinery energy pollution being 35.93%, 20.71%, 10.27%, 9.04%, 17.44%, and 6.61%, respectively. (2) The total value of negative externalities showed an initial increase followed by a decrease, with 2012 marking a turning point. This trend reflects the impact of new era of ecological control measures. (3) There was significant spatial heterogeneity in the distribution of negative externalities, mainly concentrated to the east of the Hu Line. The annual mean values in rice-producing regions were as follows: central China (1025.45×108 yuan), south China (426.96×108 yuan), southwest China (329.36×108 yuan), northeast China (221.52×108 yuan), and north China (61.99×108 yuan). There was a positive global correlation between external cost values and geographical space, with local spatial autocorrelation evolving from high-high clustering in the southeast to low-low clustering and insignificance toward the northwest. High-high clusters were predominantly found in central and southern rice-growing areas of China, while low-low clusters were mainly in the northern region of China. This paper presents a novel approach to assessing negative externalities in rice production, offering a comprehensive and dynamic global perspective. It also proposes strategic responses involving government, market, and farmer-led initiatives.
ZHOU Rongji , LUO Lizhuang , WU Sibin . Evaluation and spatial-temporal evolution of negative externalities of rice production in China in the 21st century[J]. Arid Land Geography, 2024 , 47(5) : 830 -840 . DOI: 10.12118/j.issn.1000-6060.2023.279
[1] | 张蔚文, 李学文. 外部性作用下的耕地非农化权配置——“浙江模式” 的可转让土地发展权真的有效率吗?[J]. 管理世界, 2011(6): 47-62. |
[Zhang Weiwen, Li Xuewen. The allocation of non-agricultural rights of cultivated land under the influence of externalities: Is the transferable land development right of Zhejiang model?[J]. Journal of Management World, 2011(6): 47-62. ] | |
[2] | 吕耀, 章予舒. 农业外部性识别、评价及其内部化[J]. 地理科学进展, 2007, 26(1): 123-132. |
[Lü Yao, Zhang Yushu. Identification, evaluation and internalization of externalities of agricultural[J]. Progress in Geography, 2007, 26(1): 123-132. ] | |
[3] | Costanza R, D’Arge, Groot R D, et al. The value of the world’s ecosystem services and natural capital[J]. Nature, 1997, 387(15): 253-260. |
[4] | Millennium Ecosystem Assessment. Ecosystems and human well-being: A framework for assessment[M]. Washington, DC: Island Press, 2003. |
[5] | 陈东军, 钟林生. 生态系统服务价值评估与实现机制研究综述[J]. 中国农业资源与区划, 2023, 44(1): 84-94. |
[Chen Dongjun, Zhong Linsheng. Review of the value evaluation and realization mechanism of ecosystem service[J]. Chinese Journal of Agricultural Resources and Regional Planning, 2023, 44 (1): 84-94. ] | |
[6] | 谢高地, 张彩霞, 张昌顺, 等. 中国生态系统服务的价值[J]. 资源科学, 2015, 37(9): 1740-1746. |
[Xie Gaodi, Zhang Caixia, Zhang Changshun, et al. The value of ecosystem services in China[J]. Resources Science, 2015, 37(9): 1740-1746. ] | |
[7] | Tang H Y, Huang G. A review of research on agroecosystem services based on bibliometric analysis[J]. Research in Ecology, 2021, 3(2): 46-52. |
[8] | 景晓栋, 田贵良, 班晴晴, 等. 基于文献计量的21世纪以来我国生态系统服务研究现状及发展趋势[J]. 生态学报, 2023, 43(17): 7341-7351. |
[Jing Xiaodong, Tian Guiliang, Ban Qingqing, et al. Research status and development trend of ecosystem services in China since the 21st century based on bibliometrics[J]. Acta Ecologica Sinica, 2023, 43(17): 7341-7351. ] | |
[9] | Whitby M, Hanley N. Problems of agricultural externalities: A conceptual model with implications for research[J]. Journal of Agricultural Economics, 1986, 37(1): 1-11. |
[10] | Osseni A F, Bareille F, Dupraz P. Decoupling values of agricultural externalities according to scale: A spatial hedonic approach in Brittany[J]. Working Papers, 2019, 70(5): 655-693. |
[11] | Machá J, Trantinová M, Zaňková L. Externalities in agriculture: How to include their monetary value in decision-making?[J]. International Journal of Environmental Science and Technology, 2021, 18(1): 1-18. |
[12] | 周镕基, 吴思斌, 皮修平. 农业生产正外部性环境价值评估及其提升研究——以湖南省为例[J]. 农业现代化研究, 2017, 38(3): 383-388. |
[Zhou Rongji, Wu Sibin, Pi Xiuping. The environmental valuation and promotion of agricultural positive externalities: A case study of Hunan Province[J]. Research of Agricultural Modernization, 2017, 38(3): 383-388. ] | |
[13] | 梁丽娜, 赵亚慧, 吴佳俊, 等. 基于Citespace的国内外农业面源污染研究进展与前沿分析[J]. 中国农业资源与区划, 2023, 44(4): 99-112. |
[Liang Lina, Zhao Yahui, Wu Jiajun, et al. Research progress and frontier analysis of agricultural non-point source pollution at home and abroad based on Citespace[J]. Chinese Journal of Agricultural Resources and Regional Planning, 2023, 44(4): 99-112. ] | |
[14] | 向平安. 湖南洞庭湖区水稻生产的环境成本研究[J]. 应用生态学报, 2005, 16(11): 2187-2193. |
[Xiang Pingan. Environmental cost of rice production in Dongting Lake area of Hunan Province[J]. Chinese Journal of Applied Ecology, 2005, 16(11): 2187-2193. ] | |
[15] | Zou L L, Liu Y S, Yong S, et al. Assessment and analysis of agricultural non-point source pollution loads in China: 1978—2017[J]. Journal of Environmental Management, 2020, 263(6): 110400, doi: 10.1016/j.jenvman.2020.110400. |
[16] | Sims J T, Goggin N, Mcdermott J. Nutrient management for water quality protection: Integrating research into environmental policy[J]. Water Science & Technology, 1999, 39(12): 291-298. |
[17] | Uri N D. Envrionmental considerations in the fertilizer use decision[J]. Environmental Geology, 1998, 34(2-3): 103-110. |
[18] | Folkens L, Wiedemer V, Schneider P. Monetary valuation and internalization of externalities in German agriculture using the example of nitrate pollution: A case-study[J]. Sustainability, 2020, 12(16): 1-19. |
[19] | Deknock A, Troyer N D, Houbraken M, et al. Distribution of agricultural pesticides in the freshwater environment of the Guayas River Basin (Ecuador)[J]. Science of the Total Environment, 2019, 646: 996-1008. |
[20] | Pajewski T, Malak-Rawlikowska A, Go??biewska B. Measuring regional diversification of environmental externalities in agriculture and the effectiveness of their reduction by EU agri-environmental programs in Poland[J]. Journal of Cleaner Production, 2020, 276(12): 1-10. |
[21] | 郗伟东, 武晓艺, 韩洁平. 农业有机废弃物能源化对化学农业负外部性纠正研究[J]. 生态经济, 2021, 37(4): 110-117. |
[Xi Weidong, Wu Xiaoyi, Han Jieping. Study on the correction of negative externalities of chemical agriculture by the energy utilization of agricultural organic waste[J]. Ecological Economy, 2021, 37(4): 110-117. ] | |
[22] | 刘雪, 傅泽田. 我国农业生产的污染外部性及对策[J]. 中国农业大学学报(社会科学版), 2000(3): 42-45. |
[Liu Xue, Fu Zetian. Externality of pollution in China’s agricultural production and countermeasures[J]. Journal of China Agricultural University (Social Science Edition), 2000(3): 42-45. ] | |
[23] | 马丽娜, 张飞云, 翟玉鑫, 等. 1980—2020年新疆土地利用变化下生态系统服务价值时空演变分析[J]. 干旱区地理, 2023, 46(2): 253-263. |
[Ma Lina, Zhang Feiyun, Zhai Yuxin, et al. Temporal and spatial evolution of ecosystem service value under land use change in Xinjiang from 1980 to 2020[J]. Arid Land Geography, 2023, 46(2): 253-263. ] | |
[24] | 王志强, 唐海鹰, 闻熠, 等. 长江中游地区稻田生态系统服务功能价值评估研究进展[J]. 华中农业大学学报, 2022, 41(6): 89-100. |
[Wang Zhiqiang, Tang Haiying, Wen Yi, et al. Research progress on value evaluation of paddy fields ecosystem services in middle reaches of the Yangtze River[J]. Journal of Huazhong Agricultural University, 2022, 41(6): 89-100. ] | |
[25] | 张妮, 周忠学. 城市化进程区农业生态系统正负服务测算——以长安区为例[J]. 干旱区地理, 2018, 41(2): 409-419. |
[Zhang Ni, Zhou Zhongxue. Positive and negative agro-ecosystem services evaluation in urbanizing area: A case study of Chang’an District[J]. Arid Land Geography, 2018, 41(2): 409-419. ] | |
[26] | 胡晓燕, 于法稳, 徐湘博, 等. 农田生态系统服务价值核算:指标体系构建及应用研究[J]. 生态经济, 2023, 39(4): 111-121. |
[Hu Xiaoyan, Yu Fawen, Xu Xiangbo, et al. Accounting of cropland ecosystem services: Indicator system construction and its application[J]. Ecological Economy, 2023, 39(4): 111-121. ] | |
[27] | 刘洋洋, 任涵玉, 周荣磊, 等. 中国草地生态系统服务价值估算及其动态分析[J]. 草地学报, 2021, 29(7): 1522-1532. |
[Liu Yangyang, Ren Hanyu, Zhou Ronglei, et al. Estimation and dynamic analysis of service value of grassland ecosystem in China[J]. Acta Agrestia Sinica, 2021, 29(7): 1522-1532. ] | |
[28] | 周镕基, 皮修平, 吴思斌, 等. 供给侧视角下农业生产外部性环境价值评估——基于藏粮于田的湖南实证[J]. 江苏农业科学, 2018, 46(11): 306-310. |
[Zhou Rongji, Pi Xiuping, Wu Sibin, et al. Environmental valuation of agricultural externalities from perspective of supply side: Based on empirical study on storing grain in fields in Hunan Province[J]. Jiangsu Agricultural Sciences, 2018, 46(11): 306-310. ] | |
[29] | 刘利花, 尹昌斌, 钱小平. 稻田生态系统服务价值测算方法与应用——以苏州市域为例[J]. 地理科学进展, 2015, 34(1): 92-99. |
[Liu Lihua, Yin Changbin, Qian Xiaoping. Calculation methods of paddy ecosystem service value and application: A case study of Suzhou City[J]. Progress in Geography, 2015, 34(1): 92-99. ] | |
[30] | 杨友, 杨宁, 邹冬生. 张家界市农田生态系统服务功能价值损益特征分析[J]. 农业现代化研究, 2015, 36(1): 132-136. |
[Yang You, Yang Ning, Zou Dongsheng. Farmland ecosystem function service values in Zhangjiajie City[J]. Research of Agricultural Modernization, 2015, 36(1): 132-136. ] | |
[31] | 邹建文, 黄耀, 宗良纲, 等. 稻田CO2、CH4和N2O排放及其影响因素[J]. 环境科学学报, 2003, 23(6): 758-764. |
[Zou Jianwen, Huang Yao, Zong Lianggang, et al. A field study on CO2, CH4 and N2O emissions from rice paddy and impact factors[J]. Acta Scientiae Circumstantiae, 2003, 23(6): 758-764. ] | |
[32] | 陈同斌, 曾希柏, 胡清秀. 中国化肥利用率的区域分异[J]. 地理学报, 2002, 57(5): 531-538. |
[Chen Tongbin, Zeng Xibai, Hu Qingxiu. Utilization efficiency of chemical fertilizers among different counties of China[J]. Acta Geographica Sinica, 2002, 57(5): 531-538. ] | |
[33] | 元媛, 刘金铜, 靳占忠. 栾城县农田生态系统服务功能正负效应综合评价[J]. 生态学杂志, 2011, 30(12): 2809-2814. |
[Yuan Yuan, Liu Jintong, Jin Zhanzhong. An integrated assessment of positive and negative effects of high-yielding cropland ecosystem services in Luancheng County, Hebei Province of north China[J]. Chinese Journal of Ecology, 2011, 30(12): 2809-2814. ] | |
[34] | 祁兴芬. 区域农田生态系统正、负服务价值时空变化及影响因素分析——以山东省为例[J]. 农业现代化研究, 2013, 34(5): 622-626. |
[Qi Xingfen. Spatial and temporal change positive and negative services value and its impact factors in regional farmland ecosystem: A case study in Shandong Province[J]. Research of Agricultural Modernization, 2013, 34(5): 622-626. ] | |
[35] | 杨万江, 陈文佳. 中国水稻生产空间布局变迁及影响因素分析[J]. 经济地理, 2011, 31(12): 2086-2093. |
[Yang Wanjiang, Chen Wenjia. Studies on the distribution changing of China’s rice production and its influencing factors[J]. Economic Geography, 2011, 31(12): 2086-2093. ] | |
[36] | 杨腾, 孙艳华. 中国稻田生态系统服务净价值评估[J]. 中国农业大学学报, 2020, 25(3): 159-172. |
[Yang Teng, Sun Yanhua. Evaluation of the net value of paddy ecosystem services in China[J]. Journal of China Agricultural University, 2020, 25(3): 159-172. ] | |
[37] | 方福平. 我国稻田生态服务价值的影响因素与生态补偿机制研究[D]. 武汉: 华中农业大学, 2016. |
[Fang Fuping. Influencing factors of ecosystem service value of paddy field in China and the ecosystem compensation mechanism for rice production[D]. Wuhan: Huazhong Agricultural University, 2016. ] | |
[38] | 蒋琳莉, 黄好钦, 何苏榕, 等. 广西稻田生态系统服务价值评估及其时空演变特征[J]. 西南农业学报, 2022, 35(11): 2633-2640. |
[Jiang Linli, Huang Haoqin, He Surong, et al. Service value evaluation and spatial-temporal evolution characteristics of paddy field ecosystem in Guangxi[J]. Southwest China Journal of Agricultural Sciences, 2022, 35(11): 2633-2640. ] |
/
〈 | 〉 |