Mineral fertilizers with recycled manure boost crop yield and P balance in a long-term field trial

Crop uptake and neglecting to apply phosphate (P) fertilizer are important reasons for P deficit in the agro-ecosystem. Recycled manure from within the system was adopted to evaluate the effects of mineral fertilizer combined with or without manure on crop yield, P budget, and P use efficiency in a...

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Published inNutrient cycling in agroecosystems Vol. 116; no. 3; pp. 271 - 283
Main Authors Ning, Chuanchuan, Ma, Qiang, Yuan, Haiyan, Zhou, Changrui, Xia, Zhuqing, Yu, Wantai
Format Journal Article
LanguageEnglish
Published Dordrecht Springer Netherlands 01.04.2020
Springer Nature B.V
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Abstract Crop uptake and neglecting to apply phosphate (P) fertilizer are important reasons for P deficit in the agro-ecosystem. Recycled manure from within the system was adopted to evaluate the effects of mineral fertilizer combined with or without manure on crop yield, P budget, and P use efficiency in a continuous 20-year field trial. The experiment contained eight treatments: no fertilizer, manure (M), N fertilizer (N), N fertilizer with manure (N + M), N and P fertilizers (NP), NP fertilizers with manure (NP + M), N, P, and K fertilizers (NPK), and NPK fertilizers with manure (NPK + M). The yield and P uptake of soybean and maize increased with the sequential supplement of N, P, and K fertilizers. Application of recycled manure not only increased the yield and P uptake of crops but also reduced the inter-annual fluctuations in soybean yield. Although application of mineral P fertilizer was the main method to preserve P budget surplus and increase soil available P, recycled manure could be a positive supplement. The proportion of residual fertilizer P converted to soil available P under NP, NP + M, NPK, and NPK + M treatments was 9%, 7%, 3%, and 8%, respectively over a 20-year period. Moreover, P use efficiency in NP and NPK treatments gradually increased first and then stabilized at around 20%, but the value was obviously lower than that from manure. The results clearly demonstrated that integrated application of mineral NPK fertilizers and recycled manure was a useful method to improve crop yield and soil P fertility.
AbstractList Crop uptake and neglecting to apply phosphate (P) fertilizer are important reasons for P deficit in the agro-ecosystem. Recycled manure from within the system was adopted to evaluate the effects of mineral fertilizer combined with or without manure on crop yield, P budget, and P use efficiency in a continuous 20-year field trial. The experiment contained eight treatments: no fertilizer, manure (M), N fertilizer (N), N fertilizer with manure (N + M), N and P fertilizers (NP), NP fertilizers with manure (NP + M), N, P, and K fertilizers (NPK), and NPK fertilizers with manure (NPK + M). The yield and P uptake of soybean and maize increased with the sequential supplement of N, P, and K fertilizers. Application of recycled manure not only increased the yield and P uptake of crops but also reduced the inter-annual fluctuations in soybean yield. Although application of mineral P fertilizer was the main method to preserve P budget surplus and increase soil available P, recycled manure could be a positive supplement. The proportion of residual fertilizer P converted to soil available P under NP, NP + M, NPK, and NPK + M treatments was 9%, 7%, 3%, and 8%, respectively over a 20-year period. Moreover, P use efficiency in NP and NPK treatments gradually increased first and then stabilized at around 20%, but the value was obviously lower than that from manure. The results clearly demonstrated that integrated application of mineral NPK fertilizers and recycled manure was a useful method to improve crop yield and soil P fertility.
Author Ning, Chuanchuan
Ma, Qiang
Zhou, Changrui
Yu, Wantai
Xia, Zhuqing
Yuan, Haiyan
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  organization: Institute of Applied Ecology, Chinese Academy of Sciences
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  organization: Institute of Applied Ecology, Chinese Academy of Sciences
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Snippet Crop uptake and neglecting to apply phosphate (P) fertilizer are important reasons for P deficit in the agro-ecosystem. Recycled manure from within the system...
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StartPage 271
SubjectTerms Agricultural ecosystems
Agricultural production
Agriculture
agroecosystems
Annual variations
Biomedical and Life Sciences
Compound fertilizers
corn
Crop yield
Crops
fertilizer application
Fertilizers
field experimentation
Life Sciences
Manures
Mineral fertilizers
nitrogen
nitrogen fertilizers
NPK fertilizers
nutrient use efficiency
Original Article
phosphates
phosphorus
phosphorus fertilizers
potassium
potassium fertilizers
soil
Soil fertility
Soil improvement
Soils
Soybeans
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Title Mineral fertilizers with recycled manure boost crop yield and P balance in a long-term field trial
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