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22
result(s) for
"Jixiao Cui"
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Effects of Biodegradable Plastic Film on Carbon Footprint of Crop Production
by
Yan, Changrong
,
Chen, Baoqing
,
Cui, Jixiao
in
Agricultural pollution
,
Agricultural production
,
Agriculture
2023
Polyethylene film mulch (PM) is a kind of widely used technology to improve crop yields worldwide; however, because of a problem related with plastic residual pollution, it has gradually been replaced by biodegradable plastic film mulch (BDP). Although BDP has helped to solve the plastic residual pollution, its consequences in terms of greenhouse gas (GHG) emissions have rarely been revealed. Related knowledge is important for forming low-carbon development strategies for the plastic industry and agriculture. The objective of this study is to evaluate the influence of BDP on GHG emissions at different stages of its life cycle, and determine whether replacing polyethylene (PE) film with BDP film is a helpful way to reduce national GHG emissions. The results of this study suggest that the application of BDP improved the GHG emissions associated with agricultural inputs, but induced lower GHG emissions at the growing stage and the waste disposal stage, and resulted in lower total area-scale GHG emissions. Compared to the no mulch (NM) cultivation system, the yield-scale carbon footprint was reduced in both the PM and BDP cultivation systems, which meant that both PM and BDP produced lower GHG emissions than NM for the production of the same amount of grain. It was concluded that BDP is not only a measure to control the problem of plastic residue pollution in agriculture, but it can also mitigate the GHG emissions.
Journal Article
Organic waste recycling application increases N availability and mitigates N2O emission without crop yield penalty in the North China Plain
by
Gao, Wangsheng
,
Liu, Qing
,
Du, Hailun
in
Agricultural production
,
Agricultural wastes
,
Agriculture
2024
IntroductionAgricultural organic waste recycling can supply nutrients for crop production and partially replace chemical nitrogen fertilizers, which is beneficial for waste management and environmental protection. Nevertheless, comprehensive evaluation of the effects of different organic materials applications on crop yield and the environment is limited.MethodsTherefore, in this study, a comprehensive investigation of the synergistic effects of straw, pig manure, and biogas residue recycling on the wheat ( Triticum aestivum L. ) and maize ( Zea mays L. ) systems was carried out in the North China Plain. Field experiments were conducted from 2019 to 2021, comprising five treatments: straw (ST), pig manure (PM), and biogas residue (BR) partially replacing chemical nitrogen fertilizer, sole application of chemical nitrogen fertilizer (CF), and a control with no nitrogen application (WN).Results and discussionThe results showed that organic materials significantly increased soil total nitrogen (3.04%–9.10%) and N recovery efficiency (REN; 42.21%–44.99%), but pig manure was more beneficial in increasing crop yields (3.50%), especially wheat yields (8.72%), and REN was significantly higher than that of the other treatments. Organic materials performed differently in wheat and maize seasons, and wheat yield could be improved by organic materials return. Organic materials stimulated N2O emission in wheat season (4.28%–32.20%), while biogas residue inhibited the N2O emission in maize season (47.47%). The negative effect of straw and biogas residue on yield decreased with increasing years of return, and pig manure continued to contribute to yield. In conclusion, pig manure is the optimal alternative that can increase crop yield, soil N content, and REN without stimulating N2O emissions.
Journal Article
Assessing the Potential of Biodegradable Film as an Alternative to Traditional Plastic Film—A Comprehensive Analysis from Yield Enhancement Perspective in China
by
Liu, Qin
,
Xu, Juzhen
,
Gao, Haihe
in
Agricultural production
,
Agriculture
,
Annual precipitation
2026
Biodegradable film (BM) presents a promising replacement for plastic film (PM). However, the ability of BM to substitute PM across different crops and regions remains unclear. This study compared the effects of BM and PM on cotton, maize, potato, and wheat by conducting a meta-analysis of yield responses and employing a random forest model to identify key drivers under film mulching. Furthermore, an XGBoost model was applied to simulate spatial yield changes under current and future climate conditions across China’s agro-regions. The meta-analysis indicated that the overall yield enhancement under PM (30.0%) was significantly higher than under BM (26.5%), with a relatively small difference between the two films. The Northern Arid and Semi-Arid Region showed a significant difference, with yield increases of 37.8% under PM and 28.5% under BM. BM resulted in an 18.7% increase in economic return, whereas PM led to a 32% increase. Both BM and PM enhanced the yield of all four crops, but PM had a greater effect on maize (31.8% vs. 28.0%). Random forest identified mean annual temperature (MAT), precipitation (MAP) and nitrogen application rate (N) as the main drivers influencing yield responses under film mulching. Under conditions of MAT < 10 °C, MAP < 450 mm and N ≥ 200 kg ha−1, PM outperformed BM. However, the yield benefits associated with BM will strengthen over time under future climate scenarios. Future scenarios simulations suggested that BM’s relative advantage may increase, particularly for maize, across certain regions. These findings offer region-specific mulching strategies that promote a sustainable agricultural environment.
Journal Article
Environmental Impact of Various Rice Cultivation Methods in Northeast China through Life Cycle Assessment
2024
Rice, a crucial staple in China, is cultivated through various techniques, including seedling transplanting, dry direct seeding, and film mulching. Despite its significance, rice production is a considerable environmental burden. Using a life cycle assessment (LCA) methodology, this study aimed to evaluate the environmental impacts of four rice cultivation methods (transplanting rice, dry direct-seeding rice, dry direct-seeding rice with polyethylene film (PE), and dry direct-seeding rice with biodegradable film) in Northeast China. The results indicate that the magnitude of environmental impacts among treatments was consistent across years. The potential values of all environmental impacts of the four different cultivation methods of rice in the 2021 field trial were smaller than the results of the same cultivation method of rice system in the 2022 field trial. Among the four rice cultivation methods, the consumption of energy showed inconsistency over the two years, with the highest energy consumption in the first year being for dry seeding with PE film and in the second year for dry seeding without film. Additionally, transplanting exhibited the highest impact on water resource consumption and climate change. Dry direct-seeding rice displayed the highest eutrophication and ecotoxicity. Dry direct-seeding rice with a biodegradable film had the least impact in terms of acidification. Moreover, dry direct-seeding rice with a biodegradable film minimized water consumption and greenhouse gas emissions without compromising yield.
Journal Article
Macroplastics Quantity and Its Influence on Soil Nutrients in Typical Plastic Film Mulching Farmland in Northern Xinjiang
by
Tuo Jin
,
Jixiao Cui
,
Qin Liu
in
Agricultural development
,
Agricultural land
,
Agricultural production
2024
Plastic film mulching (PFM) technology plays an important role in agricultural production in “drought and cold” regions, and macroplastics pollution in farmland has become a major concern affecting the sustainable development of regional agricultural production. However, there remains a lack of research on the effects of film application and macroplastics characteristics on soil nutrients in farmland. In this study, the characteristics of plastic film application and macroplastics, and their effect on soil nutrients in typical plastic film cropland in northern Xinjiang were explored by field research and a review of the relevant literature. It was found that the average annual growth rate was higher in areas where the amount, usage intensity, and proportion of plastic film were lower. The amount of plastic film input was a key factor affecting the amount of macroplastics. The macroplastics amount of plastic film was positively correlated with soil organic carbon content and negatively correlated with soil available phosphorus; however, it had no effect on soil available potassium. It is necessary to take immediate action regarding the characteristics of plastic film application and macroplastics and the impact of macroplastics on soil nutrients, in order to establish a response to the dual challenges of food security and sustainable agricultural development in terms of plastic film pollution prevention and control measures.
Journal Article
Effects of Organic Amendments on the Improvement of Soil Nutrients and Crop Yield in Sandy Soils during a 4-Year Field Experiment in Huang-Huai-Hai Plain, Northern China
by
Zhao, Yingxing
,
Wang, Lin
,
Sui, Peng
in
agricultural colleges
,
Agricultural land
,
Agricultural practices
2021
To address the low productivity of sandy farmlands, our study aimed to conduct a comparative study on the effects of different organic amendment (OA) inputs for the potential improvement of crop yield and soil quality in sandy alkaline farmlands through the selection of a suitable OA. This study set up straw (ST) returning as control and chemical fertilizer (CF) treatment as a side control, and chose three OAs returning as treatments, including pig manure (PM), biogas residue (BR), and straw biochar (BC), for improving soil fertility, with all amendments having matched doses of nitrogen (N). The experiment was conducted at the Wuqiao Experimental Station (37°41 N, 116°37 E) of China Agricultural University in Hebei Province, China, from October 2012 to September 2016. The cropping rotation was the winter wheat (Triticum aestivum L.)-summer maize (Zea mays L.) rotation system. Through a consecutive four-year field experiment, the principal results showed that three types of OA application significantly increased soil organic carbon from 1.46 g kg−1 to 8.24 g kg−1, soil total N from 0.21 g kg−1 to 0.64 g kg−1, soil available potassium from 55.85 mg kg−1 to 288.76 mg kg−1, and soil available phosphate from 4.86 mg kg−1 to 65.00 mg kg−1 in the 0–20 cm soil layer. The BR was the most effective in improving soil nutrients as compared with the ST. The PM and BR treatments were more conducive to promoting crop yield by 6–20% than ST, and the BC treatment significantly reduced the yield of winter wheat by 19% and summer maize by 8%. As the BR and PM treatments improved the soil nutrient content and significantly increased crop yield, these were the top choices for transforming the low-yield sandy farmlands.
Journal Article
Social Life Cycle Assessment of Major Staple Grain Crops in China
by
Wei, Jianing
,
Chen, Yuanquan
,
Cui, Jixiao
in
Agricultural development
,
agricultural socio-economic development
,
Agriculture
2022
The agricultural sustainable development for human well-being considers food security and ecological health as well as people’s socio-economic conditions. Nowadays, most of the holistic assessments of agricultural sustainability, mainly focus on food production and ecological consequences, relatively lacking analysis from the socio-economic perspective. In this context, this study constructs an agricultural social life cycle assessment model based on the guidelines of UNEP to assess the social and economic impacts on the three major staple grain crops in China, including maize, rice and wheat. The assessment model aims to analyze effects of stakeholders containing farmer, agricultural value chain actors, consumer, rural areas, society, and impact categories including high-quality growth of agriculture, a comfortable life in rural areas, the prosperity of rural people. The data is mainly from national statistical databases and representative industry databases. The impact assessment adopts social risk and social impact as quantitative characterization methods, and Analytical Hierarchical Process to obtain weights. The results show that: among the three major grain crops, farmers are the most important factors for stakeholders, and agricultural industrial development has the greatest potential negative impacts on society; maize has the most positive impacts on agricultural sustainable development in China.
Journal Article
Identifying the Influencing Factors of Plastic Film Mulching on Improving the Yield and Water Use Efficiency of Potato in the Northwest China
by
Xu, Juzhen
,
Wang, Yanbo
,
Chen, Yuanquan
in
agricultural management
,
Agricultural production
,
algorithms
2023
Potato is an important crop in the Northwest China, however, its production is constrained by water scarcity. Plastic mulching film is an efficient technical measure to alleviate potato production restrictions. Therefore, studying the response of potato yield and water use efficiency to plastic mulching film is of great significance. The study conducted a meta-analysis to quantify the effect of plastic film on potato yield and water use efficiency in the Northwest. The study then quantified the effects of different levels of natural conditions (mean annual precipitation, mean annual accumulated temperature ≥ 10 °C), fertilizer application (nitrogen fertilizer, phosphate fertilizer, potassium fertilizer), cultivation measures (planting density, cultivation method, mulching method), and mulching properties (mulching color, mulching thickness) through subgroups analysis. Finally, the random forest model was used to quantify the importance of factors. Plastic film mulching increased yield by 27.17% and water use efficiency by 27.16%, which had a better performance under relatively lower mean annual precipitation, low mean annual accumulated temperature ≥ 10 °C, relatively lower fertilizer application, planting density of 15,000–45,000 plants·ha−1, ridge, and black mulching. Natural conditions, fertilization measures were vital to improve productivity. The research results can provide reference for agricultural management strategies of potato cultivation using plastic film in the Northwest China and other potato-producing areas.
Journal Article
Nitrogen Footprint of a Recycling System Integrated with Cropland and Livestock in the North China Plain
by
Du, Hailun
,
Chen, Yuanquan
,
Chen, Lin
in
Agricultural land
,
Agricultural pollution
,
Agricultural wastes
2022
Nitrogen-based pollution from agriculture has global environmental consequences. Excessive use of chemical nitrogen fertilizer, incorrect manure management and rural waste treatment are key contributors. Circular agriculture combining cropland and livestock is an efficient channel to reduce the use of chemical nitrogen fertilizers, promote the recycling of livestock manure, and reduce the global N surplus. The internal circulation of organic nitrogen resources in the cropland-livestock system can not only reduce the dependence on external synthetic nitrogen, but also reduce the environmental impacts of organic waste disposal. Therefore, this study tried to clarify the reactive nitrogen emissions of the crop-swine integrated system compared to the separated system from a life cycle perspective, and analyze the reasons for the differences in nitrogen footprints of the two systems. The results showed that the integrated crop production and swine production increased the grain yield by 14.38% than that of the separated system. The nitrogen footprints of crop production and swine production from the integrated system were 12.02% (per unit area) and 19.78% lower than that from the separated system, respectively. The total nitrogen footprint of the integrated system showed a reduction of 17.06%. The reduction was from simpler waste manure management and less agricultural inputs for both chemical fertilizer and raw material for forage processing. In conclusion, as a link between crop planting and pig breeding, the integrated system not only reduces the input of chemical fertilizers, but also promotes the utilization of manure, increases crop yield, and decreases environmental pollution. Integrated cropland and livestock is a promising model for agriculture green and sustainable development in China.
Journal Article
The contribution of plastic film mulch to microplastics in agricultural soils was highly overestimated
2026
The extensive use of plastics in agriculture has resulted in the accumulation of macroplastics (MAPs, >5 mm) and microplastics (MPs, ≤5 mm) in agricultural soils, posing risks to soil functioning and food security. However, the relative contributions of different input pathways to soil MPs remain insufficiently quantified, particularly within intensively plastic-mulched systems. This study quantified and comparatively evaluated multiple MP input pathways within representative long-term plastic film mulch (PFM)-dominated farmlands in China. A large-scale field investigation (266 samples for MP analysis and 29 soil samples for MAP analysis, collected across 27 counties in Yunnan, Gansu, and Shandong Provinces) was integrated with a material flow analysis (MFA) modelling framework to assess source contributions under a defined system boundary. MAP and MP concentrations were highest in Yunnan (120.9 kg ha
−
1
; 7.3 × 10
5
items kg
−
1
), followed by Gansu (94.0 kg ha
−
1
; 6.1 × 10
5
items kg
−
1
) and Shandong (61.2 kg ha
−
1
; 4.0 × 10
5
items kg
−
1
). Model results showed that PFM contributed 19.0 ± 3.1%, 0.7 ± 0.1%, and 4.3 ± 0.9% of soil MPs in Yunnan, Gansu, and Shandong, respectively. Compost, irrigation water, and atmospheric deposition were also identified as relevant pathways. Within the defined study boundary and modelling assumptions, non-PFM pathways, particularly atmospheric deposition, may contribute substantially to soil MP inputs in plastic-mulched systems. These results highlight the importance of integrating multiple pathways for comparative source assessment and for developing more targeted agricultural plastic management strategies.
Journal Article