Substitution of mineral fertilizer with organic fertilizer in maize systems

Zhibiao Wei;Hao Ying;Xiaowei Guo;Minghao Zhuang;振岭 崔;福锁 张

China Agricultural University;Wageningen University & Research;China Association for Science and Technology

发表时间:2020-8

期 刊:Agronomy

语 言:English

U R L: http://www.scopus.com/inward/record.url?scp=85093896553&partnerID=8YFLogxK

摘要

Organic fertilizer is an effective substitute for mineral fertilizer that improves crop yield and is environmentally friendly. However, the effects of substitution often vary due to complicated interactions among the organic fertilizer substitution rate (Rs), total nutrient supply, and type of cropping system used. We performed a meta-analysis of 133 maize studies, conducted worldwide, to assess maize yield and environmental performance with substitution of mineral fertilizer with organic fertilizer. At an equivalent nitrogen (N) rate, substituting mineral fertilizer with organic fertilizer increased maize yield by 4.22%, reduced NH3 volatilization by 64.8%, reduced N leaching and runoff by 26.9%, and increased CO2 emissions by 26.8%*however, it had no significant effect on N2O or CH4 emissions. Moreover, substitution with organic fertilizer increased the soil organic carbon sequestration rate by 925 kg C ha-1 yr-1 and decreased the global warming potential by 116 kg CO2 eq ha-1 compared with mineral fertilizer treatment. The net global warming potential after organic fertilizer substitution was -3507 kg CO2 eq ha-1, indicating a net carbon sink. Furthermore, the effect of organic fertilizer substitution varied with the fertilization rate, Rs, and treatment duration. Maize yield and nitrogen use efficiency tended to increase with increasing N application rate following substitution of mineral fertilizer with organic fertilizer. Full substitution reduced N losses more than partial substitution. Further analysis revealed that the yield-optimal Rs for organic N in maize production was 40 60%. Moreover, maize yield and nitrogen use efficiency were further increased after long-term (= 3 years) combined use of organic and mineral fertilizers. These findings suggest that rational use of organic and mineral fertilizers improves maize productivity, increases soil organic carbon sequestration, and reduces N and C losses.

关键词

Fertilization rate
Maize productivity
N and C emissions
Net global warming potential
Organic fertilizer substitution

相关科学

农业与生物科学
农学作物科学

文献指纹

农业与生物学

meta-analysis

organic fertilizers

mineral fertilizers

carbon

corn

nitrogen

global warming potential

carbon sequestration

soil organic carbon

nutrient use efficiency

environmental performance

carbon sinks

volatilization

runoff

application rate

leaching

fertilizer application

cropping systems

crop yield

duration

nutrients

期刊度量

Scopus度量

年份 CiteScore SJR SNIP
1996
1997
1998
1999
2000
2001
2002
2003
2004
2005
2006
2007
2008
2009
2010
2011
2012
2013
2014 1.3 0.123 0
2015 1.4 1.113 0.98
2016 2 0.711 0.892
2017 2.6 0.695 1.165
2018 1.7 0.771 1.344
2019 1.8 0.7 1.266
2020 2.3

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