| Issue |
OCL
Volume 33, 2026
Technological challenges in oilseed crushing and refining / Défis technologiques de la trituration et du raffinage des oléagineux
|
|
|---|---|---|
| Article Number | 22 | |
| Number of page(s) | 14 | |
| DOI | https://doi.org/10.1051/ocl/2026012 | |
| Published online | 4 juin 2026 | |
- Babic LJ, Radojcin M, Pavkov I, Babic M. 2012. The physical and compressive load properties of sunflower (Helianthus annuus L.) fruit. Helia 35: 95–112. [Google Scholar]
- Beauguillaume A. 1994. Structure de l'akène de tournesol : influence sur l'aptitude au décorticage. PhD thesis, 2 vol., 149 p., 90, 1994TOU30002. [Google Scholar]
- Bonnot T. 2016. Mechanical behaviour of hazelnut under compression loading: effect of moisture content. J Food Eng 168: 211–217. https://doi.org/10.1016/j.jfoodeng.2015.07.039 [Google Scholar]
- Carré P, Gervais L, Coque M, Loison L, Jauvion V. 2025. Sunflower achene hulling ability: impact of water availability and genetic. OCL (in press). [Google Scholar]
- Chen P, Zhang L, Peng S. 2017. Mechanical properties of pecan shell biocomposites: effects of moisture and microstructure. J Mater Sci 52: 7357–7366. https://doi.org/10.1007/s10853-017-0977-x [Google Scholar]
- Dauguet S, Labalette F, Fine F, Carré P, Merrien A, Palleau JP. 2016. Genetic impact on protein content and hullability of sunflower seeds, and on the quality of sunflower meal. OCL 23: D205. [Google Scholar]
- De Figueiredo A, Baümler E, Riccobene IC, Nolasco SM. 2011. Moisture-dependent engineering properties of sunflower seeds with different structural characteristics. J Food Eng 102: 58–65. [Google Scholar]
- Dedio W, Dorrell DG. 1989. Factors affecting the hullability and physical characteristics of sunflower achenes. Can Inst Food Sci Technol J 22: 143–146. [Google Scholar]
- Di Leo MJ, Riccobene IC, Nolasco SM. 2004. Variability in dehulling ability of sunflower hybrids (Helianthus annuus L.) in Argentina. In: Proc 16th Int Sunflower Conf, pp. 591–595. [Google Scholar]
- Gupta RK, Das SK. 2000. Fracture resistance of sunflower seed and kernel to compressive loading. J Food Eng 46: 1–8. [Google Scholar]
- Hernández LF, Bellés PM. 2004. A 3-D finite element analysis of the sunflower (Helianthus annuus L.) fruit under impact: a useful approach for the understanding and improvement of its hullability. WIT Trans Ecol Environ 73. [Google Scholar]
- Izquierdo NGA, Dosio GAA, Cantarero M, Luján J, Aguirrezábal LAN. 2008. Weight per fruit, oil concentration, and solar radiation intercepted during fruit filling in black hull and striped hull sunflower hybrids. Crop Sci 48: 688–699. [Google Scholar]
- Khodabakhshian R, Emadi B, Abbaspour Fard MH, Saiedirad MH. 2011. Modeling the fracture resistance of sunflower seed and its kernel as a function of moisture content, variety, size and loading orientation. Int J Food Eng 7(3). [Google Scholar]
- Lindström LI, Pellegrini CN, Aguirrezábal LAN, Hernández LF. 2006. Growth and development of sunflower fruits under shade during pre and early post-anthesis period. Field Crops Res 96: 151–159. [Google Scholar]
- Lindström LI, Pellegrini CN, Hernández LF. 2007. Histological development of the sunflower fruit pericarp as affected by pre- and early post-anthesis canopy shading. Field Crops Res 103: 229–238. [Google Scholar]
- Lindström LI, Franchini MC, Nolasco SM. 2022. Sunflower fruit hullability and structure as affected by genotype, environment and canopy shading. Ann Appl Biol 180: 338–347. [Google Scholar]
- Manikantan MR, Selvam TA, Tarsem Chand TC, Rajiv Sharma RS, Sharma SR, Balakrishnan M. 2014. Fracture resistance behavior of sunflower (var. CO 2) seed and kernel under compression loading. Madras Agric J 101: 189–192. [Google Scholar]
- Mantese AI, Medan D, Hall AJ. 2006. Achene structure, development and lipid accumulation in sunflower cultivars differing in oil content at maturity. Ann Bot 97: 999–1010. [Google Scholar]
- Merrien A, Milan MJ. 1992. Physiologie du tournesol. Paris: CETIOM. ISBN 2-908645-31-9. [Google Scholar]
- Morrison WH, Akin DE, Robertson JA. 1981. Open pollinated and hybrid sunflower seed structures that may affect processing for oil. J Am Oil Chem Soc 58: 969–972. [Google Scholar]
- Nolasco SM, Riccobene IC, Fernandez MB. 2002. Dehulling of high oil sunflower seed grown in Argentina. In: ASAE Annu Meet, p. 1. American Society of Agricultural and Biological Engineers. [Google Scholar]
- R Core Team (2025). R: A language and environment for statistical computing. R Foundation for Statistical Computing, Vienna, Austria. [Google Scholar]
- Saha P, Manna S, Sen R, Roy D, Adhikari B. 2012. Durability of lignocellulosic fibers treated with vegetable oil–phenolic resin. Carbohydr Polym 87: 1628–1636. https://doi.org/10.1016/j.carbpol.2011.09.070 [Google Scholar]
- Silva CRS, Oliveira VL, Baskin CC. 2020. Biomechanics of seed coats as a defense against predators. Ann Bot 126: 781–790. https://doi.org/10.1093/aob/mcaa121 [Google Scholar]
- Winston PW, Bates DH. 1960. Saturated solutions for the control of humidity in biological research. Ecology 41: 232–237. [Google Scholar]
- Zhang Y, Chen X, Wang S. 2018. Bioinspired core–shell composites with tunable mechanical properties. ACS Appl Mater Interfaces 10: 21335–21343. https://doi.org/10.1021/acsami.8b04451 [Google Scholar]
Current usage metrics show cumulative count of Article Views (full-text article views including HTML views, PDF and ePub downloads, according to the available data) and Abstracts Views on Vision4Press platform.
Data correspond to usage on the plateform after 2015. The current usage metrics is available 48-96 hours after online publication and is updated daily on week days.
Initial download of the metrics may take a while.
