Evaluating the effects of biodegradable film mulching and topdressing nitrogen on nitrogen dynamic and utilization in the arid cornfield

2021 ◽  
Vol 258 ◽  
pp. 107166
Author(s):  
Xu Leng ◽  
Xianyue Li ◽  
Ning Chen ◽  
Jinjun Zhang ◽  
Yu Guo ◽  
...  
Author(s):  
Ning Chen ◽  
Xianyue Li ◽  
Haibin Shi ◽  
Jianwen Yan ◽  
Qi Hu ◽  
...  

2021 ◽  
Author(s):  
Yinhao Xue ◽  
Tuo Jin ◽  
Chengyu Gao ◽  
Chongxiao Li ◽  
Tao Zhou ◽  
...  

Abstract The spread of biodegradable plastic film (BDFs) not only increase grain yield but also reduce the environmental pollution from plastic film to a large extent. Soil microbes have been considered to be involved in biodegradation processes. However, the study of microbes diversity in soil mulched with biodegradable plastic film remains limited. Here, we compared the diversity of microbes between soils with biodegradable film and non-biodegradable film (NBDF) mulch. The results showed that BDFs affected on the soil quality parameters, such as total C, P and NH4+-N, but also on the microbes species richness (ACE; Chao1) and diversity (Simpson index; Shannon index). In terms of dominant phyla and genera, BDFs and NBDF can influence the abundance of disparate species. Furthermore, BDFs could also contribute to improve the richness of the important functional bacterial groups in soil, e.g. Pedomicrobium and Comamonas, both of which have been found to be involved in the degradation of plastic residues in soil. Finally, we found that BDFs improved the transformation of nitrogen through increased significantly the abundances of Nitrobacter and Nitrospira. Our results highlight the impact of BDFs mulch on the abundance of functional bacteria in the soil.


2019 ◽  
Vol 226 ◽  
pp. 105788 ◽  
Author(s):  
Ning Chen ◽  
Xianyue Li ◽  
Jirí Šimůnek ◽  
Haibin Shi ◽  
Zongjiang Ding ◽  
...  

2021 ◽  
Vol 13 (6) ◽  
pp. 3093
Author(s):  
Anwar Abduwaiti ◽  
Xiaowei Liu ◽  
Changrong Yan ◽  
Yinghao Xue ◽  
Tuo Jin ◽  
...  

The extensive application of plastic-film mulching (PFM) has brought a series of environmental pollution due to the lack of awareness of plastic-film rational use and absence of plastic residues recycling in China. In addition, the use of degradable film instead of common polyethylene plastic film (PE film) can effectively alleviate this situation. The substitution of PE film with biodegradable film in the agricultural production of processed tomato in Xinjiang region was investigated in this study. Using bare soil as the control, we compared the effects of PE film and biodegradable film mulching on crop growth, yield, and economic benefits in processed tomato. The results indicated that: (1) Biodegradable film with a thickness of about 8 μm can meet the mechanical operation requirements, and the effect of biodegradable film mulching was completely consistent with that of PE film; (2) Four kinds of biodegradable film can meet the requirements of processed tomato growth and development, although slightly different from PE film in increasing temperature and water retention; (3) Plastic-film planting can ensure a net profit of 1.14–1.64 ten thousand CNY per hectare under the current production conditions and mode of Xinjiang region, and biodegradable film planting was observed to be essentially equal to those of PE film; (4) Nearly 50%–70% of the biodegradable film was ruptured and degraded during processed tomato harvesting, which avoided the occurrence of the winch of the plastic-film winding harvester and improves the efficiency and commodity rate of the processed tomato harvest operation. As the biodegradable film mulching causes no residual pollution, it is accepted to be an alternative to plastic-film mulching for agricultural applications and supports the sustainable development of agroecosystems in Xinjiang region.


2018 ◽  
Vol 44 (2) ◽  
pp. 268
Author(s):  
Jun-Hong XIE ◽  
Ling-Ling LI ◽  
Ren-Zhi ZHANG ◽  
Qiang CHAI

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