数字农科院2.0

Preparation of agriculture film from cow manure for silage maize planting: Experimental study and life cycle assessment

文献类型: 外文期刊

作者: Han, Zixi;Zhao, Xu;Tong, Bingxin;Mu, Yongsong;Yang, Xiangjun;Hou, Yong;Zhu, Zhiping

作者机构:

关键词: Manure based agriculture film;Maize yield;Soil quality;LCA

期刊名称: WASTE MANAGEMENT

ISSN: 0956-053X

年卷期: 2024 年 190 卷

页码:

收录情况: SCIE(2024版) ; ; EI(2024版)

摘要: With the development of modern breeding technology, the scale of dairy farming is becoming increasingly large, which leading to decoupling of planting and breeding. Hence, massive amounts of manure could not handled by traditional method in time, which caused serious environmental problems. Therefor, there is a urgent needs for industrialized treatment methods to treat cow manure for dairy farm industry. In order to expand the types of industrial treatment methods of cow manure, two types of industrialized cow manure based agriculture films were introduced in this research, manure slurry film (MSF) and manure paper film (MPF). Taking silage corn cultivation as an example, their feasibility were testified: the usage performances of the films were expanded by crop yield and soil physicochemical properties, and environmental impacts of the films was conducted by life cycle assessment (LCA). The results showed: (1) both MSF and MPF would decomposed in one growth period of silage maize, with MPF having better performance in temperature retention; (2) both MSF and MPF improved soil nutrients and agglomerate structures; (3) the yield of maize with MSF and MPF was increased from 62.6 t to 88.4 t and 84.6 t per hectare compared to control group; and (4) according to LCA, MPF had 39 % and 50 % lower average environment impact than PE film and MSF. In conclusion, manure based films could effectively promotes crop growth with lower environment impact compared with traditional methods, which thus might provide effective linkage strategies for coupling of planting and breeding.

分类号:

  • 相关文献

[1]Integrating nutrient balance, environmental footprints and nutrient optimization strategies for sustainable potato production system in China. Hanyou Xie,Ping He,Wencheng Ding,Xinpeng Xu,Yan Xu,Wentian He. 2025

[2]Estimation Of Maize Yield By Assimilating Biomass And Canopy Cover Derived From Hyperspectral Data Into The Aquacrop Model. Jin, Xiuliang,Li, Shaokun,Jin, Xiuliang,Li, Zhenhai,Feng, Haikuan,Ren, Zhibin. 2020

[3]Simulating maize (Zea mays L.) growth and yield, soil nitrogen concentration, and soil water content for a long-term cropping experiment in Ontario, Canada. Liu, S.,Liu, S.,Yang, J. Y.,Drury, C. F.,Reynolds, W. D.,Liu, H. L.. 2014

[4]The impact of weather variations on maize yields and household income: Income diversification as adaptation in rural China. Ma, Jiliang,Maystadt, Jean-Francois.

[5]Using the DSSAT-CERES-Maize model to simulate crop yield and nitrogen cycling in fields under long-term continuous maize production. Liu, H. L.,Yang, J. Y.,Drury, C. F.,Reynolds, W. D.,Tan, C. S.,Liu, H. L.,Bai, Y. L.,He, P.,Jin, J.,He, P.,Jin, J.,Hoogenboom, G..

[6]Maize growth responses to soil microbes and soil properties after fertilization with different green manures. Liu, Xueduan,Liang, Yili,Niu, Jiaojiao,Xiao, Yunhua,Gu, Yabing,Ma, Liyuan,Meng, Delong,Yin, Huaqun,Tao, Jiemeng,Liu, Xueduan,Liang, Yili,Niu, Jiaojiao,Xiao, Yunhua,Gu, Yabing,Ma, Liyuan,Meng, Delong,Yin, Huaqun,Zhang, Yuguang,Zhang, Yuguang,Huang, Wenkun,Peng, Deliang.

[7]Biochar application increases maize yield under film mulching due to higher soil organic content and soil aggregate stability in a semi-arid area. Pang, Jinwen,Wang, Yuhao,Wang, Bingfan,Wang, Jiayi,Liu, Enke,Gao, Fei,Sun, Shikun,Ren, Xiaolong,Jia, Zhikuan,Wei, Ting,Zhang, Peng. 2023

[8]Modelling the impacts of inhibitors and fertilizer placement on maize yield and ammonia, nitrous oxide and nitrate leaching losses in southwestern Ontario, Canada. Rong Jiang,Jingyi Yang,Craig F. Drury,Brian B. Grant,Ward N. Smith,Wentian He,Daniel W. Reynolds,Ping He. 2023

[9]Change in maize yield, N use efficiencies and climatic warming potential after urea combined with Nitrapyrin and NBPT during the growing season in a black soil. Xiaoyu Hao,Lei Sun,Baoku Zhou,Xingzhu Ma,Shuang Wang,Shuangquan Liu,Jinghong Ji,Enjun Kuang,Shaojun Qiu. 2023

[10]Evaluating how lodging affects maize yield estimation based on UAV observations. Liu Y.,Nie C.,Zhang Z.,Wang Z.,Ming B.,Xue J.,Yang H.,Xu H.,Meng L.,Cui N.,Wu W.,Jin X.. 2023

[11]A global analysis of dry matter accumulation and allocation for maize yield breakthrough from 1.0 to 25.0 Mg ha−1. Liu G., Yang Y., Guo X., Liu W., Xie R., Ming B., Xue J., Wang K., Li S., Hou P.. 2022

[12]The Tradeoff between Maintaining Maize (Zea mays L.) Productivity and Improving Soil Quality under Conservation Tillage Practice in Semi-Arid Region of Northeast China. Nana Chen,Xin Zhao,Shuxian Dou,Aixing Deng,Chengyan Zheng,Tiehua Cao,Zhenwei Song,Weijian Zhang. 2023

[13]Evaluation of Future Maize Yield Changes and Adaptation Strategies in China. Li, Kuo,Guo, Liping,Pan, Jie,Li, Mingyu. 2022

[14]Different behaviors in nitrogen leaching between soil types following the substitution of synthetic fertilizers by manure. Du, Xinzhong,Zhang, Yitao,Li, Jungai,Peng, Chang,Wang, Hongyuan,Bashir, Muhammad Amjad,Wang, Zhen,Zhai, Limei,Di, Hong J.,Liu, Hongbin. 2023

[15]Field traffic-induced soil compaction under moderate machine-field conditions affects soil properties and maize yield on sandy loam soil. Nawaz, Muhammad Mohsin,Noor, Mehmood Ali,Latifmanesh, Hojatollah,Wang, Xinbing,Ma, Wei,Zhang, Weijian. 2023

[16]Yield and yield stability of single cropping maize under different sowing dates and the corresponding changing trends of climatic variables. Teng Li,Xuepeng Zhang,Qing Liu,Peng Yan,Jin Liu,Yuanquan Chen,Peng Sui. 2022

[17]Plastic Film Mulching Improved Maize Yield, Water Use Efficiency, and N Use Efficiency under Dryland Farming System in Northeast China. Md Elias Hossain,Zhe Zhang,Wenyi Dong,Shangwen Wang,Meixia Liu,Enke Liu,Xurong Mei. 2022

[18]Estimation of maize yield by assimilating biomass and canopy cover derived from hyperspectral data into the AquaCrop model. . 2019

[19]Suitable fertilization can improve maize growth and nutrient utilization in ridge-furrow rainfall harvesting cropland in semiarid area. Wang, Jiayi,Liu, Gaoxiang,Cui, Nan,Liu, Enke,Zhang, Yan,Liu, Donghua,Ren, Xiaolong,Jia, Zhikuan,Zhang, Peng. 2023

[20]Yield performance response to field configuration of maize and soybean intercropping in China: A meta-analysis. Shuqi Yang , Yingxing Zhao,Yinan Xu,Jixiao Cui,Teng Li,Yimin Hu,Xin Qian,Zongxin Li,Peng Sui,Yuanquan Chen. 2024

作者其他论文 更多>>