The evolution of solid waste management policies in China: A text mining approach from 1995 to 2022

Jiawei Shi , Yigang Wei , Xiaolong Liu , Guannan Xu , Xin Liang

Energy, Ecology and Environment ›› : 1 -13.

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Energy, Ecology and Environment ›› :1 -13. DOI: 10.1007/s40974-025-00403-6
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The evolution of solid waste management policies in China: A text mining approach from 1995 to 2022

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Abstract

Effective solid waste management is essential for China’s sustainable development. This study examines the evolution of national solid waste management policies from 1995 to 2022 using text mining and policy content analysis. By analyzing 1043 policy documents, this study traces institutional changes and the evolving characteristics of governance models. The results show that China’s solid waste governance has evolved through four distinct stages: defensive governance (1995–2000), regulatory governance (2001–2010), orientative governance (2011–2022), and an emerging phase of collaborative governance after 2022. Each stage exhibits different policy priorities, but administrative regulation and punishment remain prominent throughout. Second, the hotspot policy topics shifted from problem-oriented measures addressing imported waste and end-of-life vehicles, to technology-supported industrial waste treatment and resource recycling, and then to goal-oriented strategies such as the “zero-waste city” initiative. Third, weak market mechanisms and limited public participation remain persistent challenges. Strengthening market incentives and public engagement will be crucial for promoting integrated governance and accelerating progress toward a “zero-waste society.”

Keywords

Solid waste management / Policy topics / Policy evolution / Governance model transformation / Zero-waste city

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Jiawei Shi, Yigang Wei, Xiaolong Liu, Guannan Xu, Xin Liang. The evolution of solid waste management policies in China: A text mining approach from 1995 to 2022. Energy, Ecology and Environment 1-13 DOI:10.1007/s40974-025-00403-6

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References

[1]

United ations nvironment Programme (UNEP)International Solid aste Association (ISWA). Global waste management outlook 2024: Beyond an age of waste—Turning rubbish into a resource, 2024, Nairobi, United Nations Environment Programme 978-92-807-4129-2

[2]

Batista M, Goyannes Gusmão Caiado R, Gonçalves Quelhas OL, Brito Alves Lima G, Leal Filho W, Rocha Yparraguirre IT. A framework for sustainable and integrated municipal solid waste management: barriers and critical factors to developing countries. J Clean Prod, 2021, 312: 127516

[3]

Bennett C, Howlett M. The lessons of learning: reconciling theories of policy learning and policy change. Policy Sci, 1992, 25: 275-294

[4]

Bhada-Tata P, Hoornweg D. What a waste: A global review of solid waste management, 2012, Washington, DC, World Bank

[5]

Blei D, Ng A, Jordan M. Latent dirichlet allocation. J Mach Learn Res, 2003, 3: 993-1022

[6]

Bundi P, Trein P. Evaluation use and learning in public policy. Policy Sci, 2022, 55: 283-309

[7]

Callaghan M, Banisch L, Doebbeling-Hildebrandt N, Edmondson D, Flachsland C, Lamb WF, Levi S, Müller-Hansen F, Posada E, Vasudevan S, Minx JC. Machine learning map of climate policy literature reveals disparities between scientific attention, policy density, and emissions. Npj Clim Action, 2025, 4: 7

[8]

Cavé J. Who owns urban waste? Appropriation conflicts in emerging countries. Waste Manag Res, 2014, 32: 813-821

[9]

Chen Q, Tang Y, Lu B. Exploring the evolution trends of Port integration policy in China by a text mining approach. Transp Policy, 2024, 153: 159-172

[10]

Cheng J, Shi F, Yi J, Fu H. Analysis of the factors that affect the production of municipal solid waste in China. J Clean Prod, 2020, 259 120808

[11]

Communist Party of China (2012) Report to the eighteenth national congress of the communist party of China. https://www.gov.cn/ldhd/2012-11/17/content_2268826.htm

[12]

Cong W, Li X, Qian Y, Shi L. Polycentric approach of wastewater governance in textile industrial parks: case study of local governance innovation in China. J Environ Manage, 2021, 280 111730

[13]

Deng H. Administration-led carbon markets and China’s green transition: efficiency, fairness and rent-seeking. J Contemp China, 2025, 34: 727-742

[14]

Ding Y, Zhao J, Liu J, Zhou J, Cheng L, Zhao J, Shao Z, Iris Ç, Pan B, Li X, Hu Z. A review of China’s municipal solid waste (MSW) and comparison with international regions: management and technologies in treatment and resource utilization. J Clean Prod, 2021, 293 126144

[15]

Du X, Liu X, Ge Q, Jiang L, Cui L. A preliminary study on the strategy of construction a “no-waste society” by piloting “no-waste city” to promote the resource utilization of solid waste. Strategic Study of CAE, 2017, 19: 119-123

[16]

Du X, Qian Y, Chen Y, Ling J, Liu X, Yang B, Jiang L, Ge Q, Huhetaoli, Liu X, Sun X. A study on the classification and resource utilization of solid waste in China. Strategic Study CAE, 2017, 19: 27-32

[17]

Guo S, Chen L. Why is China struggling with waste classification? A stakeholder theory perspective. Resour Conserv Recycl, 2022, 183 106312

[18]

Guo W, Xi B, Huang C, Li J, Tang Z, Li W, Ma C, Wu W. Solid waste management in China: policy and driving factors in 2004–2019. Resour Conserv Recycl, 2021, 173 105727

[19]

Guo W, Xia W, Kong W, Pan Y. Policy, innovation, market or behavior driven effects: energy green transition and environmental management in Chinese heterogeneous cities. J Environ Manage, 2024, 370 122634

[20]

He Z, Chu Z, Zhao M, Zhuang J, Liu F. Policy-making coordination of municipal solid waste policies in China: a content analysis. J Mater Cycles Waste Manag, 2018, 20: 1073-1084

[21]

Hoang A, Varbanov P, Nižetić S, Sirohi R, Pandey A, Luque R, Ng K, Pham V. Perspective review on municipal solid waste-to-energy route: characteristics, management strategy, and role in circular economy. J Clean Prod, 2022, 359 131897

[22]

Horbach J, Rammer C, Rennings K. Determinants of eco-innovations by type of environmental impact—the role of regulatory push/pull, technology push and market pull. Ecol Econ, 2012, 78: 112-122

[23]

Hu J (2012) Report to the 18th national congress of the communist party of China. https://www.gov.cn/ldhd/2012-11/17/content_2268826.htm

[24]

Huang B, Wang X, Kua H, Geng Y, Bleischwitz R, Ren J. Construction and demolition waste management in China through the 3R principle. Resour Conserv Recycling, 2018, 129: 36-44

[25]

Huang Q, Chen G, Wang Y, Xu L, Chen W. Identifying the socioeconomic drivers of solid waste recycling in China for the period 2005–2017. Sci Total Environ, 2020, 725 138137

[26]

Joseph K. Stakeholder participation for sustainable waste management. Habitat Int, 2006, 30: 863-871

[27]

Kanwal Q, Zeng X, Li J. Drivers-pressures-state-impact-response framework of hazardous waste management in China. Crit Rev Environ Sci Technol, 2021, 52: 2930-2961

[28]

Leite C, Lócco L. Actors, epistemic communities and policy change: analysis of the solid waste policy in Guarulhos (SP). Ambiente & Sociedade, 2020, 23 e00242

[29]

Li L, Yang X, Liu S, Deng F. AI big model and text mining-driven framework for urban greening policy analysis. Sci Rep, 2025, 15: 29587

[30]

Liu T, Guan X, Wei Y, Xue S, Xu L. Impact of economic policy uncertainty on the volatility of China’s emission trading scheme pilots. Energy Econ, 2023, 121 106626

[31]

Ma W, de Jong M, Zisopoulos F, Hoppe T. Introducing a classification framework to urban waste policy: analysis of sixteen zero-waste cities in China. Waste Manag, 2023, 165: 94-107

[32]

Ministry of Ecology and Environment (2025) 2024 China ecological environment status bulletin, Beijing. https://www.mee.gov.cn/hjzl/sthjzk/zghjzkgb/202506/P020250604527010717462.pdf

[33]

Muheirwe F, Kombe W, Kihila J. The paradox of solid waste management: a regulatory discourse from Sub-Saharan Africa. Habitat Int, 2022, 119 102491

[34]

Qin Q, Wen Z, Huang C, Hu W, Fan B. A double-level analytical framework for understanding waste management policy evolution in China. Environ Dev Sustain, 2024

[35]

Rogge K, Reichardt K. Policy mixes for sustainability transitions: an extended concept and framework for analysis. Res Policy, 2016, 45: 1620-1635

[36]

Salvia G, Zimmermann N, Willan C, Hale J, Gitau H, Muindi K, Gichana E, Davies M. The wicked problem of waste management: an attention-based analysis of stakeholder behaviours. J Clean Prod, 2021, 326 129200

[37]

Shen M, Pow C, Neo H. Environmental governance with ‘Chinese characteristics’ and citizenship participation in Nanjing. Habitat Int, 2019, 84: 15-23

[38]

Sun Y, Liu H, Li P. Policy changes of China’s environmental information disclosure: path and logical explanation. Chin J Popul Resour Environ, 2018, 28: 168-176

[39]

Sun B, Schnoor J, Zeng E. Decadal journey of e-waste recycling: what has it achieved?. Environ Sci Technol, 2022, 56: 12785-12792

[40]

Tan Z, Ren Y, Han J, Chen S. Evolving pattern and improvement path of China’s solid waste management policies. Chin J Popul Resour Environ, 2021, 19: 358-368

[41]

The State Council (2018b) Work plan for the zero-waste city construction pilot program. State Council of the People’s Republic of China, Beijing. https://www.gov.cn/zhengce/content/2019-01/21/content_5359620.htm

[42]

The State Council. Opinions of the central committee of the communist party of china and the state council on implementing the rural revitalization strategy, 2018, Beijing, State Council of the People’s Republic of China

[43]

Tian C, Sui H, Chen Y, Wang W, Deng H. Estimating carbon emission reductions from China’s “zero-waste city” construction pilot program. Resour Conserv Recycl, 2025, 212 107975

[44]

Varjani S, Shahbeig H, Popat K, Patel Z, Vyas S, Shah A, Barceló D, Ngo H, Sonne C, Lam S, Aghbashlo M, Tabatabaei M. Sustainable management of municipal solid waste through waste-to-energy technologies. Bioresour Technol, 2022, 355 127247

[45]

Wang W, Wang Y. The evolution of domestic waste classification policies and their outcome analysis: the case of Shanghai municipality and Beijing municipality. SHS Web Conf, 2023, 178: 01014

[46]

Wang Y, Shi Y, Zhou J, Zhao J, Maraseni T, Qian G. Implementation effect of municipal solid waste mandatory sorting policy in Shanghai. J Environ Manage, 2021, 298 113512

[47]

Wang L, Long Y, Li C. Research on the impact mechanism of heterogeneous environmental regulation on enterprise green technology innovation. J Environ Manage, 2022, 322 116127

[48]

Wang Z, Duan Y, Huo J. The impact of government intervention measures on recycling of waste electrical and electronic equipment in China considering consumer decision. Energy Policy, 2022, 160: 112697

[49]

Wang X, Tang Y, Li J. China’s urban waste resource management systems: a case of the Yangtze river basin. J Urban Technol, 2024, 31: 21-43

[50]

Wang Y, Li D, Wei Y, Wang W. Promoting continuous emissions monitoring systems to curb rent-seeking: evolutionary game insights. Energy Econ, 2025, 148 108639

[51]

Wei Y, Liang X, Xu L, Kou G, Chevallier J. Trading, storage, or penalty? Uncovering firms’ decision-making behavior in the Shanghai emissions trading scheme: insights from agent-based modeling. Energy Econ, 2023, 117 106463

[52]

Wei Y, Gao E, Guo J, Jia Y, Zhang Z, Wojewódzki M. Strategic Patenting and technological evolution in energy utilization and recovery. IEEE Trans Eng Manag, 2025

[53]

Wei Y, Zhang J, Li Y, Wojewodzki M, Mou Z, Guo M. Impact of emissions trading schemes on enterprise technological innovation: a scientometric review and future directions. Sustain Futures, 2025

[54]

Wu Y, Wang C, Ji R, Li Y, Yang J, Wang Y, Li R, Wu M, Chen J, Yang J. Metricizing policy texts: comprehensive dataset on China’s agri-policy intensity spanning 1982–2023. Sci Data, 2024, 11: 528

[55]

Xiao S, Dong H, Geng Y, Brander M. An overview of China’s recyclable waste recycling and recommendations for integrated solutions. Resour Conserv Recycl, 2018, 134: 112-120

[56]

Yang G, Zhang Q, Zhao Z, Zhou C. How does the zero-waste City strategy contribute to carbon footprint reduction in China?. Waste Manag, 2023, 156: 227-235

[57]

Yao H, Zhang C. A bibliometric study of China’s resource recycling industry policies: 1978–2016. Resour Conserv Recycl, 2018, 134: 80-90

[58]

Yu D, Fang A, Xu Z. Topic research in fuzzy domain: based on LDA topic modelling. Inf Sci, 2023, 648 119600

[59]

Zaman A. A comprehensive review of the development of zero waste management: lessons learned and guidelines. J Clean Prod, 2015, 91: 12-25

[60]

Zhu J, Fan C, Shi H, Shi L. Efforts for a circular economy in China: a comprehensive review of policies. J Ind Ecol, 2019, 23: 110-118

[61]

Zhu R, Wei Y, Tan L. Low-carbon technology adoption and diffusion with heterogeneity in the emissions trading scheme. Appl Energy, 2024, 369 123537

[62]

Zou H, Zhang Y. Does environmental regulatory system drive the green development of China’s pollution-intensive industries?. J Clean Prod, 2022, 330 129832

Funding

National Natural Science Foundation of China(72174020, 72474017, 71904009)

Natural Science Foundation of Beijing Municipality(9232014)

National Social Science Fund of China(22AZD125)

Beijing Municipal Social Science Foundation(22GLA012)

RIGHTS & PERMISSIONS

The Author(s), under exclusive licence to the International Society of Energy and Environmental Science

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