Synergistic effects of green manure and biochar for a win-win in nitrogen reduction and soil health: insights from multiple assessment frameworks

Lianhao Zhao , Xinjian Zhang , Xiaoguang Ning , Wen Yin , Qiu Zhao , Pan Li , Feier Wang , Hailong Qiu , Zhilong Fan , Falong Hu , Qiang Chai , Heyu Chen , Mohamed Abdalla , Saeed Karbin , Pete Smith

Biochar ›› 2026, Vol. 8 ›› Issue (1) : 123

PDF
Biochar ›› 2026, Vol. 8 ›› Issue (1) :123 DOI: 10.1007/s42773-026-00638-4
Original Research
research-article
Synergistic effects of green manure and biochar for a win-win in nitrogen reduction and soil health: insights from multiple assessment frameworks
Author information +
History +
PDF

Abstract

Integrated nutrient and field management is key to farmland soil health, but evaluation frameworks for improving soil quality index (SQI) through combined organic amendments under reduced nitrogen (N) input are still limited. Hence, we conducted a three-period field experiment to examine the effects of green manure (GM) and its synergy with biochar (GB) on SQI under reduced N input. Results were as follows: (1) GM and GB rapidly and persistently improved the SQI by 66.67–116.67% compared to winter fallow, across both conventional and controlled-release fertilizer (CRF) systems. (2) Under 30% CRF reduction, the GB treatment showed the greatest improvements in water retention (0.92), carbon sequestration (0.68), N fixation (0.67), nutrient supply (0.81), and microbial diversity provision function (0.75) indices and the SQI (0.77). However, 45% CRF reduction posed risks of excessive N cutback. (3) Among three constructed assessment frameworks, the soil functional index-based framework was the most precise, the principal component-based minimum dataset (MDS) best balanced efficiency and accuracy, and the network analysis-based MDS maintained reasonable accuracy with only four indicators. (4) Bayesian regression and structural equation modeling identified soil microbial diversity as the key factor enhancing SQI, with GM and biochar acting principally by boosting this function and soil water retention to indirectly enhance carbon sequestration and nutrient supply. Our findings provide a novel, mechanistic blueprint for achieving synergy between yield stability and soil health restoration, offering a quantitative basis for designing sustainable cropping systems.

Graphical Abstract

Keywords

Soil degradation / Soil function and quality / Nitrogen reduction / Controlled-release fertilizer / Green manure / Biochar

Cite this article

Download citation ▾
Lianhao Zhao, Xinjian Zhang, Xiaoguang Ning, Wen Yin, Qiu Zhao, Pan Li, Feier Wang, Hailong Qiu, Zhilong Fan, Falong Hu, Qiang Chai, Heyu Chen, Mohamed Abdalla, Saeed Karbin, Pete Smith. Synergistic effects of green manure and biochar for a win-win in nitrogen reduction and soil health: insights from multiple assessment frameworks. Biochar, 2026, 8 (1) : 123 DOI:10.1007/s42773-026-00638-4

登录浏览全文

4963

注册一个新账户 忘记密码

References

[1]

Bamminger C, Zaiser N, Zinsser P, Lamers M, Kammann C, Marhan S. Effects of biochar, earthworms, and litter addition on soil microbial activity and abundance in a temperate agricultural soil. Biol Fert Soils, 2014, 50: 1189-1200

[2]

Bunemann EK, Bongiorno G, Bai Z, Creamer RE, De Deyn G, de Goede R, Fleskens L, Geissen V, Kuyper TW, Mader P, Pulleman M, Sukkel W, van Groenigen JW, Brussaard L. Soil quality - A critical review. Soil Biol Biochem, 2018, 120: 105-125

[3]

Burrell LD, Zehetner F, Rampazzo N, Wimmer B, Soja G. Long-term effects of biochar on soil physical properties. Geoderma, 2016, 282: 96-102

[4]

Chen Y, Huang L, Huang S, Guo T, Zhang S, Guo D, Song X, Ding S, Mehran M, Yang Y, Yue K, Su S, Geng M, Zhang H. Long-term green manure incorporation increases soil carbon sequestration and improves aggregate stability by changing organic carbon components. Soil Till Res, 2026, 258 107024

[5]

Deng Y, Li X, Wang Z, Shi F, Zhao S, Hu G. Natural seasonal freeze-thaw processes influenced soil quality in alpine grasslands: insights from soil functions. Soil Biol Biochem, 2025, 200 109642

[6]

Dong M, Zhou H, Wang J, Yang J, Lai J, Chen Y, Sun F, Ye X, Wu Y. Responses of soil microbial metabolism, function and soil quality to long-term addition of organic materials with different carbon sources. Biochar, 2024, 6: 1-20

[7]

Fan M, Lal R, Zhang H, Margenot AJ, Wu J, Wu P, Zhang L, Yao J, Chen F, Gao C. Variability and determinants of soil organic matter under different land uses and soil types in eastern China. Soil till Res, 2020, 198 104544

[8]

Fernandes JC, Gamero CA, Rodrigues JGL, Mirás-Avalos JM. Determination of the quality index of a Paleudult under sunflower culture and different management systems. Soil till Res, 2011, 112: 167-174

[9]

Fungo B, Lehmann J, Kalbitz K, Thionģo M, Okeyo I, Tenywa M, Neufeldt H. Aggregate size distribution in a biochar-amended tropical Ultisol under conventional hand-hoe tillage. Soil till Res, 2017, 165: 190-197

[10]

Girvan M, Newman MEJ. Community structure in social and biological networks. P Natl Acad Sci Usa, 2002, 99: 7821-7826

[11]

Hardie M, Clothier B, Bound S, Oliver G, Close D. Does biochar influence soil physical properties and soil water availability ?. Plant Soil, 2014, 376: 347-361

[12]

Hu W, Zhang Y, Rong X, Zhou X, Fei J, Peng J, Luo G. Biochar and organic fertilizer applications enhance soil functional microbial abundance and agroecosystem multifunctionality. Biochar, 2024, 6: 1-17

[13]

Jaworska H, Dąbkowska-Naskręt H, Kobierski M. Iron oxides as weathering indicator and the origin of Luvisols from the Vistula glaciation region in Poland. J Soil Sediment, 2016, 16: 396-404

[14]

Jia Y, Zhang L, Pang Z, Mo L, Fu H, Yuan Z, Hu C. Effects of biochar on sugarcane growth and rhizosphere microecosystem under reduced nitrogen fertilization: a 5-year field experiment study. Biochar, 2025, 7: 121

[15]

Kalu S, Seppänen A, Mganga KZ, Sietiö O, Glaser B, Karhu K. Biochar reduced the mineralization of native and added soil organic carbon: evidence of negative priming and enhanced microbial carbon use efficiency. Biochar, 2024, 6: 1-14

[16]

Krause H, Mueller RC, Lori M, Mayer J, Mäder P, Hartmann M. Organic cropping systems alter metabolic potential and carbon, nitrogen and phosphorus cycling capacity of soil microbial communities. Soil Biol Biochem, 2025, 203 109737

[17]

Li S, Lei Y, Zhang Y, Liu J, Shi X, Jia H, Wang C, Chen F, Chu Q. Rational trade-offs between yield increase and fertilizer inputs are essential for sustainable intensification: a case study in wheat-maize cropping systems in China. Sci Total Environ, 2019, 679: 328-336

[18]

Li Z, Qiu L, Zhang T, E G, Zhang L, Wang L, Wu L, Wang Y, Zhang Y, Dong J, Li W, Liu Z, Zhang M. Long-term application of controlled-release potassium chloride increases maize yield by affecting soil bacterial ecology, enzymatic activity and nutrient supply. Field Crops Res, 2023, 297 108946

[19]

Lin L, Gao Z, Liu X. Estimation of soil total nitrogen using the synthetic color learning machine (SCLM) method and hyperspectral data. Geoderma, 2020, 380 114664

[20]

Liu D, Mo Q, Zhang W, Lin W, Li W, Batyrbek M, Ding R, Li H, Yang B, Zou Y, Wang L, Gan Y, Zhang X, Han Q. Adapting to diversified garlic-maize rotation systems by adjusting nitrogen application: assessing crop yield, nitrogen utilization, and nitrogen footprint. J Clean Prod, 2024, 461 142672

[21]

Marschner P, Hatam Z, Cavagnaro TR. Soil respiration, microbial biomass and nutrient availability after the second amendment are influenced by legacy effects of prior residue addition. Soil Biol Biochem, 2015, 88: 169-177

[22]

Martínez-Mena M, Perez M, Almagro M, Garcia-Franco N, Díaz-Pereira E. Long-term effects of sustainable management practices on soil properties and crop yields in rainfed Mediterranean almond agroecosystems. Eur J Agron, 2021, 123 126207

[23]

Mehran M, Huang L, Geng M, Gan Y, Cheng J, Zhu Q, Ahmad IA, Haider S, Mustafa A. Co-utilization of green manure with straw return enhances the stability of soil organic carbon by regulating iron-mediated stabilization of aggregate-associated organic carbon in paddy soil. Soil till Res, 2025, 252 106624

[24]

Mizuta K, Grunwald S, Phillips MA, Moss CB, Bacon AR, Cropper WP. Sensitivity assessment of metafrontier data envelopment analysis for soil carbon sequestration efficiency. Ecol Indic, 2021, 125 107602

[25]

Nascimento G, Catala-Forner M, Villegas D, Ferre O, Tomas N, Cantero-Martinez C. Enhancing soil organic carbon and structure in Mediterranean rice systems through cover cropping. Soil till Res, 2026, 255 106777

[26]

Negiş H, Şeker C, Gümüş İ, Erci V. Establishment of a minimum dataset and soil quality assessment for multiple reclaimed areas on a wind-eroded region. CATENA, 2023, 229 107208

[27]

Newman MEJ. Modularity and community structure in networks. Proc Natl Acad Sci U S A, 2006, 103: 8577-8582

[28]

Perkowski E, Terrones J, German H, Smith N. Symbiotic nitrogen fixation reduces belowground biomass carbon costs of nitrogen acquisition under low, but not high, nitrogen availability. AoB Plants, 2024, 16 plae051

[29]

Revil A, Lu N. Unified water isotherms for clayey porous materials. Water Resour Res, 2013, 49: 5685-5699

[30]

Sinsabaugh RL, Follstad Shah JJ. Ecoenzymatic stoichiometry of recalcitrant organic matter decomposition: the growth rate hypothesis in reverse. Biogeochemistry, 2011, 102: 31-43

[31]

Sun Q, Meng J, Lan Y, Shi G, Yang X, Cao D, Chen W, Han X. Long-term effects of biochar amendment on soil aggregate stability and biological binding agents in brown earth. CATENA, 2021, 205 105460

[32]

Urra J, Alkorta I, Lanzen A, Mijangos I, Garbisu C. The application of fresh and composted horse and chicken manure affects soil quality, microbial composition and antibiotic resistance. Appl Soil Ecol, 2019, 135: 73-84

[33]

Wang G, Li H, Hu F, Yin W, Fan Z, Fan H, Sun Y, He W, Chai Q. Application of green manure combined with synthetic nitrogen fertilizer enhances soil aggregate stability in an arid wheat cropping system. Appl Soil Ecol, 2025, 206 105849

[34]

Wang X, Yao B, Yang H, Mou X, Li Y, Li Y. Microbial drivers of soil C:N:P stoichiometry dynamics during ecological restoration in sandy ecosystems. Appl Soil Ecol, 2025, 213 106321

[35]

Wang H, Ren W, Xu Y, Sun Y, Hu W, Li Y, Huang Y, Chen T, Teng Y. Long-term herbicide residues compromise nitrogen fixation and diazotrophic community stability in agricultural black soils. Agr Ecosyst Environ, 2026, 399 110160

[36]

Xu Z, Yu G, Zhang X, He N, Wang Q, Wang S, Wang R, Zhao N, Jia Y, Wang C. Soil enzyme activity and stoichiometry in forest ecosystems along the North-South Transect in eastern China (NSTEC ). Soil Biol Biochem, 2017, 104: 152-163

[37]

Yang Y, Li T, Wang Y, Cheng H, Chang SX, Liang C, An S. Negative effects of multiple global change factors on soil microbial diversity. Soil Biol Biochem, 2021, 156 108229

[38]

Yang W, Peng X, Dai Q, Li C, Xu S, Liu T. Storage infiltration of rock-soil interface soil on rock surface flow in the rocky desertification area. Geoderma, 2023, 435 116512

[39]

Yang J, Zhang S, Zhang J, Zhao S, Lu H, Li L, Liu L, Wang G. Incorporating crop rotation into the winter wheat-summer maize system to enhance soil multifunctionality and sustainable grain production in the North China Plain. Field Crop Res, 2025, 325 109834

[40]

Yuan Y, Yin Y, Adamczyk B, Liang D, Gu D, Xia G, Zhang J, Zhang Z. Nitrogen addition alters the relative importance of roots and mycorrhizal hyphae in regulating soil organic carbon accumulation in a karst forest. Soil Biol Biochem, 2024, 195 109471

[41]

Zandi Baghche-Maryam M, Sheklabadi M, Ayoubi S. Covariate selection approaches in spatial prediction of soil quality indices using machine learning models at the watershed scale, west of Iran. Soil till Res, 2025, 252 106571

[42]

Zhao L, Yin W, Chai Q, Li P, Guo Z, Fan Z, Hu F, Zhao C, Yu A, Wan P, He W, Fan H, Sun Y, Wang F. Synergistic effects of slow-release fertilizer and biochar on crop yield and soil carbon-nitrogen dynamics under reduced nitrogen input. Agr Ecosyst Environ, 2025, 393 109849

[43]

Zhou G, Li G, Liang H, Liu R, Ma Z, Gao S, Chang D, Liu J, Chadwick DR, Jones DL, Cao W. Green manure coupled with straw returning increases soil organic carbon via decreased priming effect and enhanced microbial carbon pump. Glob Change Biol, 2025, 31 e70232

[44]

Zhuang H, Feng Z, Hu Y, Ning Z, Zhao Q, Wang H, Xing Y, Zhang A. AMF promotes the structure and metabolic activity of rhizosphere soil microbial communities in areca/vanilla intercropping system under nitrogen-limited conditions. Front Microbiol, 2025, 16 1657672

Funding

the Scientific Research Innovation Capability Support Project for Young Faculty(SRICSPYF-BS2025119)

the National Key Research and Development Project of China(2021YFD1700202)

the National Natural Science Foundation of China(32372238)

the Science and Technology Program in Gansu Province(25JRRA347)

the Science and Technology Program in Gansu Province(24ZDNA008)

the Industrial Support Project of Educational Committee of Gansu Province(2025CYZC-037)

the China Agricultural University Corresponding Support Research Joint Fund(GSAU−DKZY−2024−001)

RIGHTS & PERMISSIONS

The Author(s)

PDF

0

Accesses

0

Citation

Detail

Sections
Recommended

/