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Research Article

Appropriate carbon emission from large-scale breeding based on a binary analysis framework of external environmental costs and resource losses

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Article: 2275719 | Received 03 Dec 2022, Accepted 23 Oct 2023, Published online: 29 Nov 2023

References

  • Ban, R., Wang, J., Feng, K., & Wu, T, (2017). Study on temporal and spatial difference of carbon emission from livestock and poultry breeding in Anshun City. Regional Research and Development, 2, 151–155.
  • BCG (Boston Consulting Company), Jifei Technology Company. (2022). The road to carbon neutrality in agriculture. Climate & Sustainability, 7(20), 20.3–2010.
  • Chen, R., Deng, Y., & Jiang, Z. (2017). Research on comprehensive carbon effect analysis and accounting of agricultural production projects – based on household survey data in Ansai, Shaanxi. Journal of Huazhong Agricultural University (Social Science Edition), 3(129), 23–32.
  • Chen, S., Yang, X., Ren, L., & Zhang, Q. Q. (2011). Performance progress of life cycle assessment in greenhouse gas emission. Environmental Science and Technology, 34(6), 164–170.
  • Chen, X., Wei, X., & Luo, J. (2019). Comparative analysis on pig breeding production efficiency: based on cost accounting of resource value flow. Statistics and Decision Making, 16, 40–44.
  • Cheng, M., McCarl, B., & Fei, C. (2022). Climate change and livestock production: A literature review. Atmosphere, 13(1), 140. https://doi.org/10.3390/atmos13010140
  • Cheng, X. J. (2022). Analysis of agricultural greenhouse gas emissions and carbon reduction and fixation measures. Zhongnan Agricultural Technology, 5, 84–90.
  • Crippa, M., Guizzardi, D., Banja, M., Solazzo, E., Muntean, M., Schaaf, E., Pagani, F., Monforti- Ferraria, F., Olivier, J. G. J., Quadarelli, R., Risquez Martin, A., Taghavi-Moharamli, P., Grassi, G., Rossi, S., Oom, D., Branco, A., San-Miguel, J., & Vignati, E. (2022). CO2 emissions of all world countries, JRC Science for Policy Report. European Commission, JRC/IEA/PBL 2022 Report.3-26.
  • Dong, H. M., Li, Y. E., Tao, X. P., Peng, X. P., Li, N., & Zhu, Z. P. (2008). Technical countermeasures for greenhouse gas emission and emission reduction from agricultural sources in China. Journal of Agricultural Engineering, 24(10), 269–273.
  • Du, X. W., Ding, Y. H., Zhou, D. D., & Zhai P. M. (2021). Carbon peak, carbon Zhonghe 100Q, People's Daily Press, 2021, 5–30.
  • Fu, S. (2019). Econometric study on the relationship between carbon emission, economic growth and industrial structure in Heilongjiang Province, Northeast Forestry University, 2019: 20–55.
  • Guo, H. P., Fan, B. Q., & Pan, C. L. (2021). Study on mechanisms underlying changes in agricultural carbon emissions: A case in Jilin Province, China, 1998—2018. International Journal of Environmental Research Public Health, 18(3), 919/1–17.
  • Guo, X., (2012) Study on subsidy policies for large-scale livestock and poultry breeding industry to control external environmental costs. Southwest University.
  • He, Z. (2020). Sustainable development of livestock and poultry scale-breeding based on integration control of resource losses and external environmental costs. Environmental Progress & Sustainable Energy, 39(6), e13528. https://doi.org/10.1002/ep.13528
  • Huang, Y., Zhang, W., Zheng, X., Wang, S., Zhao, L., Wu, X., Zhang, W., & Huang, X. (2006). Estimation of methane emission from rice fields in China based on model and technology. Journal of Ecology, 26(4), 980–989.
  • Jing, Q. N., Hou, H. M., Bai, H. T., & Xu, H. (2019). Top down estimation method of carbon emission from urban energy consumption. China Environmental Science, 1, 420–427.
  • Lan, H. T. (2022). Focusing on green development in agriculture, helping to achieve the “double carbon” goal - review of “research on China's agricultural carbon reduction path”. Agricultural Economic Issues, 9, 144–144.
  • Li, B., Zhang, J., & Li, H. (2011). Temporal and spatial characteristics of China's agricultural carbon emissions and decomposition of influencing factors. China's population. Environment and Resources, 21(8), 80–86.
  • Li, G., & Li, Z. (2010). Empirical analysis on decomposition of carbon emission factors of agricultural energy consumption in China: Based on LM Di model. Agricultural Technology and Economy, 10, 66–72.
  • Li, J., & Wang, J. (2005). Control mechanism and measurement of internalization of external environmental cost. Economist, 3, 26–27.
  • Li, J. J. (2012). Research on characteristics and driving factors of agricultural land carbon emission in provinces of minorities in China. China Population Resources and Environment, 22(9), 42–47.
  • Li, Y. J. (2022). Exploration of pollution treatment and resource utilization of livestock and poultry manure. Henan Animal Husbandry and Veterinary Medicine (Comprehensive Edition), 43(2), 7–8.
  • Li, Z. G., & Wang, J. (2021). The spatial emission reduction effect of carbon emissions trading in China: Quasi natural experiments and policy spillovers. China Population, Resources and Environment, 31(1), 26–36.
  • Liao, X. (1999). Theory, method and application of stability. Huazhong University of Technology Press, 45.
  • Lin, B., Xu, M., & Wang, X. (2022). Mitigation of greenhouse gas emissions in China’s agricultural sector: Current status and future perspectives. Chinese Journal of Eco-Agriculture, 4, 500–515.
  • Liu, Q., & Xiao, H. F. (2022). Dynamic response relationship between different types of income of rural residents in China and carbon emissions from livestock and poultry farming: Analysis based on Tapio decoupling and SVAR model. Journal of Ecology and Rural Environment, 4, 453–465.
  • Liu, Y., Sun, Y., & Liu, F. (2008). Empirical study on environmental governance model under the condition of China's industrialization. China's Population, Resources and Environment, 4, 195–200.
  • Luo, J. C., Huo, H. M., & Zhao, G. H. (2022). Accelerate the promotion of pollution reduction and carbon reduction in China's livestock and poultry breeding industry. World Environment, 4, 53–54.
  • Luo, X., & Xiao, X. (2011). Quantitative analysis of enterprise resource loss based on Low carbon development and its application, China's population. Resources and Environment, 2, 36–40.
  • Ni, J. J., Wang, H., Hu, W. P., & Zhang, B. H. 2020. Investigation and analysis on fecal sewage treatment of large-scale livestock and poultry farms in Xuchang City, Henan Animal Husbandry and Veterinary: Comprehensive Edition, 2020, 7: 20–22.
  • Olesen, J. E., Schelde, K., Weiske, A., Weisbjerg, M. R., Asman, W. A. H., & Djurhuus, J. (2006). Modelling greenhouse gas emissions from European conventional and organic dairy farms. Agriculture Ecosystems & Environment, 112(2), 207–220. https://doi.org/10.1016/j.agee.2005.08.022
  • Sheng, T. (2023). Deepening the integration of pollution reduction and carbon reduction to enhance collaborative efficiency. China Environmental News, March 28, 2023.5.26.
  • Smith, L. G., & Lampkin, N. H. (2019). Greener farming: Managing carbon and nitrogen cycles to reduce greenhouse gas emissions from agriculture, managing global warming: An interface of technology and human issues. Academic Press: 553–577.
  • Strobel, M., & Redmann, C. (2002). Flow cost accounting, an accounting approach based on the actual flows of materials. Environmental Management Accounting, 12, 345–356.
  • Su, X. F., Yang, X. D., & Ran, Q. Y. (2022). Analysis of green growth in China's livestock industry from the perspective of carbon emissions. Ecological Economy, 38(4), 101–107.
  • Sun, L., Cao, X., Alharthi, M., Zhang, J., Taghizadeh-Hesary, F., & Mohsin, M. (2020). Carbon emission transfer strategies in supply chain with lag time of emission reduction technologies and low-carbon preference of consumers. Journal of Cleaner Production, 264(10), 121664. https://doi.org/10.1016/j.jclepro.2020.121664
  • Tang, X. G., Gu, Q., Ma, M. G., & Han, X. J. (2019). An estimation method of respiratory carbon emissions from alpine meadow ecosystem based on remote sensing. Patent No. cn201910469705.0.
  • Tsai, W. H. (2019). Modeling and simulation of carbon emission-related issues. Energies, 12(13), 1-8. https://doi.org/10.3390/en12132531
  • Wang, H., Sun, H., Xiao, H. Y., & Xin, L. (2022). Synergistic efficiency and pathway of reducing pollution and carbon under carbon peak constraints. China Population, Resources and Environment, 11, 96–108.
  • Wei, X., & Gu, Y. (2018). Comparative study on resource value flow accounting of pig breeding in China. Economic Geography, 5, 152–160.
  • Xia, D. (2016). Design of environmental governance mechanism in the process of China's industrialization. Northern Economy., 4, 63–65.
  • Xiao, X., Li, C., & Zeng, H. (2016). Resource value flow analysis of waste incineration power generation – Taking power plant as an example. Systems Engineering, 2, 53–61.
  • Xiao, X., Zhou, Z., & Li, X. (2008). On the innovation of environmental cost – Based on the integration of internal resource flow cost and external damage cost. Accounting and Economic Research, 5, 39–47.
  • Yang, J. (2012). Analysis on regional differences and influencing factors of agricultural carbon emissions in China. Journal of Henan Agricultural University, 46(3), 336–342.
  • Yao, C. S., Qian, S. S., Li, Z. T., & Lang L. W. (2017). Carbon emission measurement and temporal and spatial evolution mechanism of inter provincial animal husbandry in China. Resource Science, 4, 698–712.
  • Ye, Z. (2012). Input-output data updating method and its application in carbon emission analysis. Statistics and Information Forum, 9, 1–44.
  • Zeng, W. J. (2022, November 8). The urgency and necessity of resource utilization of livestock and poultry manure. International Energy Network. https://newenergy.in-en.com/html/newenergy-2416145.shtml
  • Zhang, L. (2011). Study on the relationship between industrial structure, energy structure and carbon emission in China. Resources and Environment in Arid Areas, 25(5), 1–7.
  • Zhao, L. (2010). Research on carbon emission status and low carbon economy development strategy in Hunan Province. Logistics Engineering and Management, 32(9), 13–15.
  • Zhao, Q., & Qian, H. (2009). Thoughts on Low carbon economy and agricultural development. Journal of Ecological Environment, 18(5), 1609–1614.
  • Zhao, S. N., Cui, S. H., Gui, T., Li, X. H., & Zhang, Y. J. (2010). Study on carbon emission reduction potential of resource utilization of organic Waste in Fujian Province. China Population, Resources and Environment, 20(9), 30–35.
  • Zhu, Y., Liu, X., & Wang, Z. (2010). Analysis on the emission reduction effect of carbon tax policy and its impact on China's economy. China Soft Science, 4, 76–87.