1 |
Biotechnological utilization: the role of Zea mays rhizospheric bacteria in ecosystem sustainability Imade EE, Babalola OO Applied Microbiology and Biotechnology, 105(11), 4487, 2021 |
2 |
Investigation on JKR surface energy of high-humidity maize grains Feng X, Liu TH, Wang LJ, Yu YT, Zhang S, Song LL Powder Technology, 382, 406, 2021 |
3 |
Development of a sensitive monoclonal antibody-based sandwich ELISA to detect Vip3Aa in genetically modified crops Liu WX, Liu XR, Liu C, Zhang Z, Jin WJ Biotechnology Letters, 42(8), 1467, 2020 |
4 |
Phylogenetic analysis of halophyte-associated rhizobacteria and effect of halotolerant and halophilic phosphate-solubilizing biofertilizers on maize growth under salinity stress conditions Mukhtar S, Zareen M, Khaliq Z, Mehnaz S, Malik KA Journal of Applied Microbiology, 128(2), 556, 2020 |
5 |
Trichoderma atrovirideas a promising biocontrol agent in seed coating for reducingFusariumdamping-off on maize Coninck E, Scauflaire J, Gollier M, Li?nard C, Foucart G, Manssens G, Munaut F, Legr?ve A Journal of Applied Microbiology, 129(3), 637, 2020 |
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Green production of silica nanoparticles from maize stalk Adebisi JA, Agunsoye JO, Bello SA, Haris M, Ramakokovhu MM, Daramola MO, Hassan SB Particulate Science and Technology, 38(6), 667, 2020 |
7 |
Determination of the energetic coefficient of restitution of maize grain based on laboratory experiments and DEM simulations Wang LJ, Zheng ZH, Yu YT, Liu TH, Zhang ZH Powder Technology, 362, 645, 2020 |
8 |
The relationship between static and kinetic friction for plant granular materials Wojcik A, Fraczek J, Niemczewska-Wojcik M Powder Technology, 361, 739, 2020 |
9 |
Modeling of maize breakage in hammer mills of different scales through a population balance approach Cotabarren I, Fernandez MP, Di Battista A, Pina J Powder Technology, 375, 433, 2020 |
10 |
A study on the modelling method of maize-seed particles based on the discrete element method Zhou L, Yu JQ, Wang Y, Yan DX, Yu YJ Powder Technology, 374, 353, 2020 |