1. Introduction
The technology of plastic film mulching has been widely adopted globally, which plays a crucial role in agricultural production by raising soil temperature, reducing soil moisture loss, conserving water, and protecting seedlings. It is generally used to boost crop productivity and thereby increase farmers’ incomes [
1]. Global plastic production has increased over the past decades. In 2020, agricultural applications utilized over 2.1 million tons of plastic mulch [
2]. However, as most agricultural mulch films are produced from low-density polyethylene, their incomplete removal can result in persistent film residues and microplastic particles in soil environments [
1,
3]. When these films are not effectively recovered after use, the yield benefits of mulching may be accompanied by long-term risks to soil quality and agroecosystem health. At present, the main methods for disposing of plastic film residue are landfilling and open burning, which are harmful to agricultural production and environmental safety [
4]. In view of this, effective recycling of residual plastic film is essential to prevent environmental pollution.
To mitigate residual film pollution, China has introduced a series of policy measures encouraging farmers to participate in film recovery and promoting sustainable agriculture, especially in the northwestern production areas [
4]. Specifically, it has established a framework for recycling residual film through financial subsidies, technological promotion, and the development of new facilities. Such policies include the Action Program on Agricultural Film Recycling [
5], the Guidelines on Accelerating the Prevention and Control of Agricultural Film Pollution [
6], and the “Old for New” Program [
4]. Although the recycling policies are being constantly improved and recycling technologies are making progress, recycling outcomes remain unsatisfactory. Residual film recycling remains a major challenge in agricultural environmental pollution. Given the crucial role that farmers play in the process of recycling used plastic films, the primary barrier to increasing recycling efficiency might stem from farmers’ reluctance to engage in recycling activities. Therefore, these improvements should be grounded in the broad participation of farmers.
Enhancing farmer participation requires a clearer explanation of how farmers make decisions about residual film recovery. Farmers’ low enthusiasm for recycling can be primarily attributed to their low environmental awareness and insufficient intrinsic motivation for voluntary residual film recycling [
7]. Thus, stimulating farmers’ willingness to participate through policy guidance and support is crucial for determining the effectiveness of residual film recycling and environmental management. Although a large body of research has applied the Theory of Planned Behavior (TPB) to investigate recycling behavior intention in various contexts worldwide, and some studies have incorporated moral norm and responsibility-related variables into the model to explain pro-environmental behavior [
8,
9], farmers’ participation in agricultural plastic film recycling in China has received comparatively limited empirical examination [
10]. Within agricultural environmental governance [
8], the TPB has often been adopted to explain farmers’ intentions toward environmentally sustainable practices. Some of them integrated and expanded the TPB with other determinants into their research models, such as household characteristics, socioeconomic status, education level, and age. These studies examined the effects of objective conditions on farmers’ behavioral intentions. Nonetheless, the TPB has been frequently criticized for not adequately accounting for additional constructs related to human behavior [
11]. An increasing number of studies suggest that relying on objective factors is inadequate, which has prompted a growing recognition that attention should be focused on subjective factors to improve the model’s explanatory power. Consequently, further research is required to enhance our comprehension of the factors that affect farmers’ willingness to recycle residual plastic film. Specifically, when investigating the influencing factors of farmers’ willingness, both subjective and objective factors should be taken into consideration. These considerations suggest that the original TPB may be insufficient to fully explain recycling intentions in this context.
To respond to this theoretical gap, the present research employs an extended TPB model that integrates moral norm and responsibility attribution. The primary innovation of this research is the connection between farmers’ recycling intentions and participation decisions with village-level social expectations, moral obligations, and perceived responsibility for soil and rural environmental degradation. In this context, farmers’ decisions are influenced by practical evaluations and perceived feasibility, alongside normative expectations and responsibility-related considerations. In particular, residual film recovery differs from general household waste recycling because it is embedded in agricultural production, depends on local recycling infrastructure, and is significantly influenced by collective village governance and government-led environmental policies.
Therefore, this study advances prior TPB-based research in the following ways. First, this study provides empirical evidence from Xinjiang, a major plastic-film-mulching region in China where residual film pollution is severe but farmers’ recycling behavior remains insufficiently understood. Second, this study clarifies the mechanism through which external social pressure may be internalized as a moral obligation by exploring the mediating influence of moral norm between subjective norm and behavioral intention. Third, this study examines responsibility attribution as an antecedent of subjective norm, thereby showing how farmers’ perceived responsibility for residual film pollution may strengthen their sensitivity to expectations from family members, neighbors, village committees, and local governments. These contributions distinguish the present study from a simple replication of previous TPB extensions and provide more context-specific insights into farmers’ participation in agricultural plastic film recycling.
3. Research Methodology
This study utilized the ‘Extended Theory of Planned Behavior’ to analyze the relationships among farmers’ ATT, SN, PBC, MN, RA and behavioral intention regarding waste plastic film recycling using structural equation modeling (SEM). SEM is particularly suitable for examining complex relationships among multiple latent variables and for evaluating both measurement quality and hypothesized structural paths. The measurement model delineates how observed indicators reflect latent constructs, while the structural model assesses the proposed relationships among those constructs. The basic equations are of the form:
In Equation (1), denotes the observed variables that measure the exogenous latent variable . The variable is identified as the exogenous latent construct, while represents the matrix of factor loadings associated with the indicator variables. Additionally, signifies the measurement error related to the variable. Conversely, symbolizes the observed variables that assess the endogenous latent variable . Here, refers to the endogenous latent construct, and ε indicates the measurement error applicable to the variable. In Equation (2), embodies the matrix containing path coefficients that link exogenous latent variables to their endogenous counterparts, while denotes the matrix that outlines the path coefficients between the endogenous latent variables. Lastly, refers to the term for the residual error pertaining to the endogenous latent variables.
4. Data Collection and Questionnaire Design
4.1. Data Collection
Xinjiang is a significant agricultural region in the arid northwest of China, where the principal crops include cotton, wheat, and rice. The adoption of plastic film mulching is crucial for conserving soil moisture and enhancing crop yields. Nevertheless, continuous and large-scale use of mulch film has caused residual film to accumulate in farmland soils, thereby threatening soil environmental quality. To address this issue, a series of residual plastic film pollution control policies has been introduced by the Chinese government. During the implementation of these policies, farmers’ insufficient awareness and low participation have remained major barriers to effective pollution control. The primary objective of this study was to thoroughly investigate the various factors affecting the management of plastic film residue pollution specifically in the Xinjiang region. Therefore, Xinjiang was chosen as the case study region.
To improve the transparency of the sampling procedure, this study employed a multistage sampling strategy. First, several counties were sampled from the major cotton-producing counties in southern Xinjiang, where cotton cultivation relies heavily on plastic film mulching and therefore faces a relatively serious residual film pollution problem. Subsequently, four villages were chosen from each county as the survey sites, and 50 respondents were surveyed in each village. Third, with the assistance of local village committees, cotton-farming households were identified as the sampling frame. One adult household member who was directly involved in cotton production and familiar with plastic film use and recycling practices was invited to complete the questionnaire.
The survey in the field took place from 2024 to 2025. Before the survey began, each respondent was told about the study purpose, voluntary participation, and confidentiality of the collected information. Trained investigators conducted face-to-face interviews, which helped respondents, particularly those with limited formal education, understand the questionnaire items accurately. After removing questionnaires with substantial missing data, patterned responses, contradictions in reverse-coded items, or unusually short completion times, 429 valid responses remained, corresponding to a valid response rate of 75.13%.
4.2. Questionnaire Design
A structured questionnaire was employed to collect data for this study. The questionnaire items were developed based on the theoretical structure of the TPB and previous studies on moral norm and responsibility attribution. Indicators for ATT, SN, PBC, and BI were drawn and adapted from validated TPB-related literature, while items related to moral norm and responsibility attribution were modified from prior research on norm activation theory and environmentally responsible behavior [
9,
10,
20]. All items were revised to suit the specific context of agricultural plastic film recycling among cotton farmers in Xinjiang.
Experts in agricultural environmental management and rural sustainability reviewed the initial questionnaire to evaluate its content validity and contextual relevance. Based on their suggestions, several items were reworded to improve clarity and consistency with farmers’ actual production practices. A pilot survey was then conducted with 93 cotton farmers prior to the formal investigation. The pilot results indicated that the respondents could understand the meaning of the items clearly. Several questions were slightly revised according to feedback obtained during the pilot survey. Therefore, the finalized questionnaire was considered suitable for the formal survey.
The finalized questionnaire contained two sections. The first part was a measurement scale for the willingness of farmers to recycle plastic film residues, and the second part collected socio-economic characteristics. To be more specific, the first part consisted of 18 items to measure the key psychological factors (e.g., ATT, SN, PBC, RA, MN, BI) that influence farmers’ recycling intentions. Among them, items PBC1, MN3, and BI1 were reverse-scored. These items were recoded before analysis to ensure consistency across items. The questionnaire employed a five-point Likert scale that varied from 1 (strongly disagree) to 5 (strongly agree). Farmers were asked to select the response that best reflected their actual situation from the five options. All items are presented in
Table 1.
4.3. Data Analysis
The analysis of data utilized SPSS 27, AMOS 28, and SmartPLS 4. Descriptive statistics and reliability tests were first conducted, followed by confirmatory factor analysis and structural equation modeling. Prior to conducting SEM, the normality of the observed variables was assessed using skewness and kurtosis. The normality assessment followed the commonly accepted criteria that the absolute value of skewness should be less than 2 and the absolute value of kurtosis should be less than 7 [
31]. The results indicated that the data did not seriously deviate from normality. Specifically, the absolute values for skewness varied between 0.699 and 1.391, while the absolute values for kurtosis ranged from 0.048 to 2.420. Therefore, the normality assumption was considered acceptable for subsequent SEM analysis. During data preprocessing, a small number of missing values were identified in the dataset. As the proportion of missing values was low, missing value imputation was applied to ensure data completeness and the validity of subsequent statistical analyses. Since all constructs were measured with five-point Likert items, the indicators were treated as approximately continuous variables for SEM estimation, which is commonly applied in SEM when the scale has five or more response categories and the data do not show serious non-normality. Indirect effects were evaluated through 5000 bootstrap resamples; mediation was considered significant when the 90% bias-corrected confidence interval excluded zero [
32].
4.4. Sample Characteristics
The respondents’ socio-demographic profile is summarized in
Figure 2. Most respondents were male, accounting for 63.64%, while females accounted for 36.36%. This may be because men are often regarded as the household heads in rural families, and thus they are more likely to respond on behalf of the family when interviewed. Regarding age distribution, over half of the respondents (62.94%) were aged 40 years or above. This trend can be attributed to the aging rural population, as many young individuals typically migrate to urban areas for education or work, resulting in a workforce predominantly composed of middle-aged and older adults involved in agricultural activities. In terms of education level, 82.5% of respondents had completed high school or less, while 17.5% had some college education or more. One possible explanation is that the current group of middle-aged and elderly farmers grew up in an era when educational resources were relatively scarce, and educational conditions in rural areas were limited, resulting in a generally low educational attainment. As for family composition, the average household size within the sample was four members, with an average of two adult laborers per household. During the agricultural off-season, a portion of rural laborers went out to work. This resulted in over 92% of households having three or fewer non-agricultural workers. Most respondents indicated that their yearly household income was in the range of RMB 10,000 to 100,000 (73.4%), with the remainder reporting incomes above RMB 100,000. Overall, the respondents were primarily male, and middle-aged or older, and had relatively low levels of formal education. This composition is partly consistent with the structure of agricultural decision-makers in rural cotton-producing areas of southern Xinjiang, where male household heads and older farmers are more likely to be directly involved in farming decisions and to respond to household-level agricultural surveys.
6. Discussion
This study utilized the ETPB framework to examine the intentions of farmers to recycle residual plastic film in Xinjiang. The findings demonstrated that integrating MN and RA into the TPB provided additional explanatory insights for farmers’ behavioral intentions. Moreover, apart from the core TPB constructs (ATT, SN, PBC), MN directly influenced recycling intentions, while RA indirectly contributed to intention formation by shaping SN. Therefore, strengthening farmers’ sense of responsibility and establishing appropriate moral norms may help promote recycling participation and alleviate the adverse effects of residual film pollution.
In this study, the result for H1 showed that ATT significantly and positively predicted the farmers’ BI. This finding aligns with prior research [
8,
16]. The results of H2 indicated that PBC had a significantly positive influence on farmers’ BI, which is consistent with the findings of Zhang [
36], Novak [
15], and Erekalo [
37]. The importance of ATT and PBC shows that farmers’ recycling intention depends on both their evaluation of recycling value and their perception of practical feasibility. A positive attitude reflects farmers’ recognition of the environmental and agricultural benefits of residual film recycling, such as reducing soil pollution and protecting crop production. However, attitude alone may not be sufficient to ensure participation. Farmers also need to believe that recycling is practically achievable in terms of time, labor, collection facilities, transportation convenience, and economic costs. This may explain why PBC holds a crucial role in the formation of recycling intention. In the context of southern Xinjiang, where cotton cultivation is highly dependent on plastic film mulching, farmers may support recycling in principle, but their actual willingness depends heavily on whether recycling channels are accessible and whether the required labor and transaction costs are acceptable. Thus, policy interventions should not only improve farmers’ environmental attitudes, but also reduce the practical barriers that weaken their PBC.
Furthermore, SN exerts a significant positive indirect effect on farmers’ BI via ATT and PBC, which is consistent with the findings of Peng [
38]. This suggests that social expectations need to be transformed into farmers’ value judgments, perceived feasibility, or moral obligations before shaping recycling intentions. The stronger roles of attitude and PBC, relative to SN, may be explained by the production-oriented characteristics of residual film recycling in Xinjiang. For farmers, recycling used plastic film is not merely an environmental action, but also a production-related practice involving labor input, time costs, transportation convenience, access to collection points, and perceived benefits for soil quality. Farmers are therefore more inclined to recycle when they view the activity as beneficial and believe that the necessary resources and opportunities are available.
The socio-economic and institutional conditions in southern Xinjiang further explain why SN mainly influenced BI through indirect pathways rather than through a direct effect. Many farmers are middle-aged or elderly, have relatively low education levels, and depend strongly on agricultural income. Under these conditions, external expectations from family members, neighbors, village committees, and local governments may not directly translate into recycling intention unless farmers perceive the behavior as beneficial and feasible. Thus, subjective norm may operate mainly through ATT, PBC, and MN rather than as a strong direct predictor. Residual film recovery is closely connected with government-led rural environmental governance, village-level mobilization, subsidies, and recycling infrastructure. Therefore, improving recycling participation requires a combination of social mobilization, institutional support, and practical measures that reduce anticipated behavioral barriers.
The finding that RA is associated with farmers’ SN (H10) is also in accordance with previous findings [
39,
40,
41]. The assignment of responsibility is considered a significant factor influencing intentions toward environmentally responsible behavior, as it indicates individuals’ recognition of their duty concerning the adverse effects of failing to engage in pro-environmental practices [
42]. When individuals internally attribute responsibility, they translate external social expectations into personal responsibilities and obligations, thereby strengthening the influence of SN. Conversely, an external attribution leads individuals to reject such expectations as outside their duty, which weakens the influence of SN. In other words, if farmers perceive that they themselves bear primary responsibility for residual plastic film pollution, expectations expressed by the village collective and the government regarding residual film recycling will be interpreted as their own environmental obligation. If farmers attribute responsibility for residual plastic film pollution to the government’s insufficient development of recycling policies and systems, then even when their family members and the village committee strongly expect them to recycle used plastic film, farmers may regard it as “not my responsibility” and therefore decline to engage in such recycling behavior. This result suggests that responsibility attribution is an important psychological condition under which external expectations from village committees, neighbors, and family members become more acceptable to farmers.
The result for H7 indicated that SN significantly and positively affected the farmers’ moral norm. Stronger perceived social expectations among farmers are associated with clearer internal standards and a stronger moral norm. This suggests that village cadres and community role models may help transform external social expectations into farmers’ internal moral obligations. While traditional theoretical frameworks often treat these two constructs as parallel predictors of behavioral intention, this significant positive influence reveals that subjective norm is an important antecedent of moral norm. The results for H8 showed that MN influenced farmers’ intentions to recycle residual plastic film. MN refers to individuals’ beliefs and perceptions about whether a given behavior is morally acceptable or not [
43]; it reflects internal ethical standards and a sense of responsibility rather than external pressure. In other words, farmers tend to be more inclined to participate in recycling efforts when they view it as an ethical duty and feel a personal responsibility for minimizing residual film pollution. This is congruent with the findings of Emmanouil [
10]. Although the SN to MN path was strong, the MN to BI path was only marginally significant. The mediation pathway through which SN is associated with BI via MN should be interpreted as suggestive. Practically, this means that moral appeals alone may not be sufficient to substantially increase recycling intention unless they are combined with measures that improve farmers’ attitudes and perceived behavioral control, such as reducing recycling costs, improving collection-point accessibility, and providing reliable recycling services.
This study has demonstrated that farmers’ ATT mediates the relationship between SN and behavioral intention. Previous research has demonstrated the effectiveness of treating attitude as a mediating variable [
44,
45]. This indicates that social expectations may influence farmers’ recycling intentions by reshaping their evaluations of residual film recycling. In rural communities, expectations from family members, neighbors, village committees, and local governments can make farmers more aware of the environmental and production-related value of recycling. When these expectations are accepted, farmers may develop more positive attitudes toward recycling and perceive it as beneficial for soil protection, crop production, and rural environmental governance.
These findings are also comparable to international studies using the TPB framework in agricultural and environmental contexts. For example, studies on Iranian farmers’ safe use of chemical fertilizers and Nepalese farmers’ pesticide safety behavior have also emphasized the importance of farmers’ perceived capability, resources, and behavioral feasibility in shaping pro-environmental or safety-related intentions [
12,
14]. Similarly, research on farmers’ intention to learn about sustainability in Slovenia suggests that farmers’ behavioral intention is closely associated with perceived opportunities and the practical conditions that enable action [
15]. Compared with household waste separation or conservation behaviors, in which moral or social norms may exert a more direct influence, agricultural plastic film recycling is more strongly constrained by production conditions and local recycling infrastructure [
10,
43]. Therefore, the present findings suggest that the relative importance of TPB constructs is context-dependent: subjective norm remains important, but in resource- and infrastructure-dependent agricultural practices, attitude and perceived behavioral control may become the more immediate drivers of behavioral intention.
The unique contribution of this research is not just in enhancing the TPB by incorporating moral norm and the attribution of responsibility, but in applying and verifying this framework in the specific context of agricultural plastic film recycling. This context differs from general recycling behavior because it is closely embedded in agricultural production, rural governance, soil environmental protection, and government-led recycling systems. By examining the mediating role of moral norm between subjective norm and behavioral intention, and by identifying responsibility attribution as an antecedent of subjective norm, this study provides new empirical evidence on how external social expectations are transformed into internal moral obligations among farmers. These findings offer context-specific theoretical and practical insights into improving farmers’ participation in residual film recovery.
7. Conclusions and Policy Suggestions
7.1. Main Findings
This research uses an ETPB framework to examine the factors influencing farmers’ willingness to recycle residual plastic film. To overcome the limitations of the original TPB, this study develops an extended theoretical model by incorporating MN and RA. The results indicate that the ETPB with MN and RA helps reveal the normative and responsibility-related mechanisms underlying farmers’ behavioral intentions. The primary findings are outlined below.
Farmers’ ATT and PBC are positively and significantly related with their BI to recycle leftover plastic film. Therefore, ATT and PBC are important determinants of farmers’ willingness to recycle residual plastic film.
SN shows a significantly positive influence on PBC and ATT. It also indirectly affects behavioral intention via attitude and PBC, demonstrating that these constructs are interrelated.
RA shows a considerable positive influence on SN. Farmers who perceive themselves as responsible for residual plastic film pollution are more likely to regard the recycling expectations of the village collective and the government as personal environmental obligations. This perception may further encourage their participation in recycling behavior.
Farmers’ SN shows a marginal indirect association with recycling intention through MN. When farmers perceive a positive subjective norm toward residual film recovery within their social group, they internalize these external social expectations as personal moral obligations, which may in turn promote recycling behavior.
7.2. Policy Suggestions
Given these findings, this study offers recommendations to the Chinese government to encourage farmers’ participation in residual film pollution control.
First, environmental education should be strengthened. Public awareness and educational programs on the hazards of residual plastic film pollution should be implemented in rural areas. Through on-site training sessions and short educational videos, the long-term detrimental effects of residual film on soil and crops should be communicated, thereby enhancing farmers’ risk perception and improving farmers’ overall environmental literacy. These initiatives should be supported by village broadcast systems and wall slogans to further reinforce farmers’ moral awareness and environmental consciousness.
Second, the construction of village-level collection systems should be strengthened. Fixed collection points could be established near village committees, agricultural machinery stations, or main cotton-producing areas, while temporary collection points could be arranged during the peak recycling period after harvest. Centralized transport services should be provided for remote villages to reduce farmers’ transportation costs and improve perceived behavioral control.
Third, local governments should encourage farmers to participate in environmental monitoring and problem-solving initiatives, thereby fostering their awareness and responsibility for soil environmental protection.
Fourth, local governments could establish a performance-based subsidy mechanism in which farmers receive subsidies according to the amount of residual film recycled, the frequency of recycling, or the area from which residual film is collected. Additional incentives, such as agricultural material vouchers, transport subsidies, or priority access to technical services, could be provided to farmers who participate continuously in recycling programs.
Finally, villages should formulate rules and agreements for the recycling of plastic film residue, incorporating such behavior into the selection criteria for “civilized households” and “model households”. Neighbor demonstrations and collective recycling activities can further reinforce a shared norm of participation within the community. In this way, subjective norm can be leveraged to promote attitudinal change among farmers and enhance their perceived behavioral control.
7.3. Limitations
This research affirmed the significance of the TPB components; however, it is important to recognize its limitations.
First, this study focused on farmers’ behavioral intention. Future studies could include actual recycling frequency, verified participation in recycling programs, or the amount of residual plastic film recycled as behavioral indicators.
Second, the sample was restricted to cotton farmers in Xinjiang, China. Although Xinjiang is a typical region with intensive plastic film mulching and serious residual film pollution, its agricultural conditions, crop structure, policy environment, and recycling infrastructure may differ from those of other regions. Therefore, caution is needed when extending these findings to other regions or crop systems. In addition, the sample composition represents another limitation. Most respondents were male, and middle-aged or older, and had relatively low education levels. Although this demographic pattern reflects, to some extent, the characteristics of household agricultural decision-makers in the surveyed cotton-growing areas, it may restrict how broadly the findings can be applied to other groups of farmers.
Third, the cross-sectional research design limits the capacity to make causal inferences. Future studies could utilize longitudinal data to investigate shifts in farmers’ attitudes, perceived behavioral control, moral norm, recycling intentions, and actual recycling behavior over time. In addition, integrating questionnaire findings with accurate recycling data or on-site observations could reduce the potential influence of common method bias and social desirability bias.
7.4. Concluding Remarks
Overall, this study demonstrates that extending the TPB with moral norm and responsibility attribution provides a useful framework for explaining farmers’ residual plastic film recycling intentions.
The scientific relevance of this study lies in applying and extending the TPB within the context of agricultural plastic film recycling, a representative issue in agricultural environmental governance. By linking the practical characteristics of residual film recycling with farmers’ psychological decision-making processes, this study shows how attitudes, perceived behavioral control, social expectations, moral obligations, and perceived responsibility jointly shape farmers’ recycling intentions. These findings provide empirical evidence on the psychological and normative mechanisms underlying farmers’ environmental decision-making, contribute to the literature on agricultural environmental governance, pro-environmental behavior, and plastic pollution control, and offer useful evidence for designing more effective policies to promote sustainable agricultural waste management in regions facing serious residual film pollution.