REFERENCES

Abbott, J. A. (1999). Quality measurement of fruits and vegetables. Postharvest Biology and Technology, 15, 207-225. https://doi.org/10.1016/S0925-5214(98)00086-6

Akeson, W. R., Fox, S. D., & Stout, E. L. (1974). Effect of Topping Procedure on Beet Quality and Storage Losses. Journal of the American Society of Sugar Beet Technologists, 18(2), 125-135.

Akeson, W. R., & Stout, E. L. (1978). Effect of Impact Damage on Sucrose Loss in Sugarbeet During Storage. Journal of the American Society of Sugar Beet Technologists, 20(2), 167-173.

Aliou, D. I. O. P. (1998). Storage and Processing of Roots and Tubers in the Tropics. https://www.fao.org/3/x5415e/x5415e00.htm#Contents

Andales, S. C., Pettibone, C. A., & Davis, D. C. (1980). Influence of Relative Humidity and Temperature on Weight and Sucrose Losses of Stored Sugarbeets. Transactions of the ASAE, St. Joseph, MI.

Anon. (2009). ROPA Edenhall: Professionell sockerbetsteknik [ROPA Edenhall: Professional sugar beet technology]. In. Vallåkra: Edenhall Mek Verkstad AB.

Anon. (2013). Inventering och anmälan om kvalitetssäkring/frostskydd 2013 [Inventory and registration of quality assurance/ frost protection 2013]. https://www.sockerbetor.nu

Anon. (2014a). Inventering och anmälan om kvalitetssäkring/frostskydd 2014 [Inventory and registration of quality assurance/ frost protection 2014]. https://www.sockerbetor.nu

Anon. (2014b). Kampanjedata vecka 3 [Campaign data week 3]. https://www.sockerbetor.nu

Branschavtal mellan Svenska Betodlarna ek. förening och Nordic Sugar AB om odling och leverans av sockerbetor sockeråret 2015/16 [Industry agreement between The Organisation of Swedish Sugar Beet Growers and Nordic Sugar AB regarding the cultivation and delivery of sugar beets for the cultivation year 2015/16], (2015a).

Anon. (2015b). Skördestatistik per trakt kampanjen 2014 [Harvest statistics by region, campaign 2014]. https://www.sockerbetor.nu

Branschavtal mellan Svenska Betodlarna ek. förening och Nordic Sugar AB om odling och leverans av sockerbetor sockeråret 2016/17 [Industry agreement between The Organisation of Swedish Sugar Beet Growers and Nordic Sugar AB regarding the cultivation and delivery of sugar beets for the cultivation year 2016/17], (2016a).

Anon. (2016b). Skördestatistik per trakt kampanjen 2015 [Harvest statistics by region, campaign 2015]. https://www.sockerbetor.nu

Branschavtal mellan Svenska Betodlarna ek. förening och Nordic Sugar AB om odling och leverans av sockerbetor sockeråren 2017/18 – 2020/21 [Industry agreement between The Organisation of Swedish Sugar Beet Growers and Nordic Sugar AB regarding the cultivation and delivery of sugar beets for the cultivation years 2017/18 – 2020/21], (2017a).

Anon. (2017b). Skördestatistik per trakt kampanjen 2016 [Harvest statistics by region, campaign 2016]. https://www.sockerbetor.nu

Anon. (2018a). Kampanjstart 25 september [Campaign start 25 September]. https://www.sockerbetor.nu

Anon. (2018b). Skördestatistik per trakt kampanjen 2017 [Harvest statistics by region, campaign 2017]. https://www.sockerbetor.nu

Branschavtal mellan Svenska Betodlarna ek. förening och Nordic Sugar AB om odling och leverans av sockerbetor sockeråren 2020/21 och efterföljande [Industry agreement between The Organisation of Swedish Sugar Beet Growers and Nordic Sugar AB regarding the cultivation and delivery of sugar beets for the cultivation year 2020/21 and thereafter], (2019a).

Anon. (2019b). ROPA Tiger 6S: Technical Data for ROPA Tiger 6S. In. Herrngiersdorf: ROPA Fahrzeug- und Maschinenbau GmbH.

Anon. (2019c). Skördestatistik per trakt kampanjen 2018 [Harvest statistics by region, campaign 2018]. https://www.sockerbetor.nu

Anon. (2019d). Terra Dos T4. Technical Data. In: Holmer Maschinenbau GmbH.

Anon. (2020). Sustainable production and consumption. https://www.un.org/sustainabledevelopment/sustainable-consumptionproduction/

Anon. (2021a). Skördestatistik per trakt kampanjen 2020 [Harvest statistics by region, campaign 2020]. https://www.sockerbetor.nu

Anon. (2021b). Voluntary National Review 2021, Sweden. Report on the implementation of the 2030 Agenda for Sustainable Development.

Anon. (2022a). Kampanjestart 2022 [Campaign start 2022]. https://www.sockerbetor.nu

Anon. (2022b). Leveranserna till Trelleborgs hamn är igång [Delivery to Trelleborg harbour is underway]. https://www.sockerbetor.nu

Anon. (2022c). Skördestatistik 2021 [Harvest statistics 2021]. https://www.sockerbetor.nu

Anon. (2023a). Bra lagring [Good storage]. https://www.sockerbetor.nu

Anon. (2023b). Skördestatistik 2022 [Harvest statistics 2022]. https://www.sockerbetor.nu

Anon. (2023c). Tidpunkt och kvalitet [Timing and quality]. https://www.sockerbetor.nu

Backer, L. F., Vosper, F. C., & Bichsel, S. E. (1979). Ventilation and freezing of sugarbeet storage piles. Farm Research, 36(4).

Bichel, S. E. (1988). An overview of the U.S. beet sugar industry. In M. A. Clarke & M. A. Godshall (Eds.), Chemistry and Processing of Sugarbeet and Sugarcane. Elsevier.

Brown, S., Spackman, V., & Armstrong, M. (2002). Sugar Beet Bruising – the invisible enemy! British Sugar Beet Review, 70(3).

Bugbee, W. M. (1975). Penicillium claviforme and Penicillium variabile: Pathogens of Stored Sugar Beets. Phytopathology, 65, 926-927.

Bugbee, W. M. (1982). Storage Rot of Sugar Beet. Plant Disease, 66(9), 871-873.

Bugbee, W. M. (1993). Storage. In D. A. Cooke & R. K. Scott (Eds.), The Sugar Beet Crop: Science into practice. Chapman & Hall.

Bugbee, W. M., & Cole, D. F. (1975). Sugarbeet storage rot in the Red River Valley. Journal of Sugar Beet Research, 19(1), 19-24.

Bugbee, W. M., & Cole, D. F. (1979). The Effect of Root Dehydration on the Storage Performance of a Sugarbeet Genotype Resistance to Storage Rot. Journal of the American Society of Sugar Beet Technologists, 20, 307-314.

Caleb, O. J., Mahajan, P. V., Al-Said, F. A., & Opara, U. L. (2013). Transpiration rate and quality of pomegranate arils as affected by storage conditions. CyTA – Journal of Food, 11(3), 199-207. https://doi.org/10.1080/19476337.2012.721807

Campbell, L. G., Fugate, K. K., & Niehaus, W. S. (2011). Fusarium yellows affects postharvest respiration rate, sucrose concentration and invert sugar in sugarbeet. Journal of Sugar Beet Research (ASSBT), 48, 17-40.

Campbell, L. G., & Klotz, K. L. (2006). Postharvest Storage Losses Associated with Aphanomyces Root Rot in Sugarbeet. Journal of Sugar Beet Research, 43(4). https://doi.org/10.5274/jsbr.43.4.113

Campbell, L. G., Klotz, K. L., & Smith, L. J. (2008). Postharvest Storage Losses Associated with Rhizomania in Sugar Beet. Plant Disease, 92(4), 575-580. https://doi.org/10.1094/PDIS-92-4-0575

Cannon, R. M. (1950). Observations on the Dehydration of Beets after Receiving and During Storage in Northern Montana. 6th General meeting of the American Society of Sugar Beet Technologists, Detroit, MI, USA.

Carta, G. (2021a). Convective Heat Transfer. In Heat and Mass Transfer for Chemical Engineers: Principles and Applications (First edition. ed.). McGraw-Hill Education.

Carta, G. (2021b). Convective Mass Transfer. In Heat and Mass Transfer for Chemical Engineers: Principles and Applications (First edition. ed.). McGraw-Hill Education.

Chirife, J., & Fontan, C. F. (1982). Water Activity of Fresh Foods. Journal of Food Science, 47(2), 661-663. https://doi.org/10.1111/j.1365-2621.1982.tb10145.x

Dahlgren, O. (2020). Kampanjedata vecka 7 [Campaign data week 7]. https://www.sockerbetor.nu

Dahlgren, O. (2021). Kampanjedata vecka 38 [Campaign data week 38]. https://www.sockerbetor.nu

DeJong, J. M., Prange, R. K., Harrison, P. A., & McRae, K. B. (2000). Comparison of a new apple firmness penetrometer with three standard instruments. Postharvest Biology and Technology, 19, 201-209. https://doi.org/10.1016/S0925-5214(00)00097-1

Dilley, D. R., Wood, R. R., & Brimhall, P. (1970). Respiration of Sugarbeets Following Harvest in Relation to Temperature, Mechanical Injury and Selected Chemical Treatment. Journal of the American Society of Sugar Beet Technologists, 15(8), 671-683.

Downie, A. (1950). 1949 results of ventilated storage of sugar beets. 6th General meeting of the American Society of Sugar Beet Technologists, Detroit, MI, USA.

Dutton, J., & Huijbregts, T. (2006). Root Quality and Processing. In A. P. Draycott (Ed.), Sugar Beet (pp. 409-442). Blackwell Publishing Ltd. https://doi.org/10.1002/9780470751114.ch16

Döring, T. F., Pautasso, M., Finckh, M. R., & Wolfe, M. S. (2012). Concepts of plant health – reviewing and challenging the foundations of plant protection. Plant Pathology, 61(1), 1-15. https://doi.org/10.1111/j.1365-3059.2011.02501.x

Ekelöf, J. (2017a). Frost och regn hotar upptagningen [Frost and rain threat to harvest]. Betodlaren, 2017(3), 39-42.

Ekelöf, J. (2017b). Vatten kostar skjortan [Water costs the shirt off your back]. Betodlaren, 2017(3), 44-47.

Ekelöf, J., & English, W. (2022). Automated active ventilation of sugar beet clamps. 78th Congress of the International Institute for Sugar Beet Research, Mons, Belgium.

Elliott, M. C., & Weston, G. D. (1993). Biology and physiology of the sugar-beet plant. In D. A. Cooke & R. K. Scott (Eds.), The Sugar Beet Crop. Chapman & Hall.

English, A., Fabi, C., Federighi, G., McMenomy, T., Skøt, J., & Vaz, S. (2019). The State of Food and Agriculture. Moving Forward on Food Loss and Waste Reduction.

English, W. (2020). Long Term Storage of Sugar Beets and the Role of Temperature.

English, W. (2022). Modelling airflow through sugar beet clamps. 78th Congress of the International Institute for Sugar Beet Research, Mons, Belgium.

European Commission. (2006). Council Regulation (EC) No 318/2006 of 20 February 2006 on the common organisation of the markets in the sugar sector. Official Journal of the European Union, L58/51-L58/31.

European Commission. (2017). The end of the sugar production quotas in the EU https://ec.europa.eu/commission/presscorner/detail/en/MEMO_17_3488

European Union Market Observatory. (2023). Sugar. European Union Market Observatory.

Finger, F. L., Eide, J. D., Lafta, A. M., Khan, M. F. R., Dogramaci, M., & Fugate, K. K. (2021). Methyl jasmonate effects on sugarbeet root responses to postharvest dehydration. PeerJ, 9, e11623-e11623. https://doi.org/10.7717/peerj.11623

Fugate, K. K., Campbell, L. G., Lafta, A. M., Eide, J. D., Khan, M. F. R., Chu, C., & Finger, F. L. (2022). Newly developed sugarbeet lines with altered postharvest respiration rates differ in transcription factor and glycolytic enzyme expression. Crop Science, 62(3), 1251-1263. https://doi.org/10.1002/csc2.20729

Fugate, K. K., Khan, M. F., Eide, J. D., Hakk, P., Lafta, A. M., & Qi, A. (2022). Sugar beet root storage properties are unaffected by Cercospora leaf spot. Plant Disease. https://doi.org/10.1094/PDIS-09-22-2156-RE

Fugate, K. K., Ribeiro, W. S., Lulai, E. C., Deckard, E. L., & Finger, F. L. (2016). Cold Temperature Delays Wound Healing in Postharvest Sugarbeet Roots. Front Plant Sci, 7, 499-499. https://doi.org/10.3389/fpls.2016.00499

Fugate, K. K., Suttle, J. C., & Campbell, L. G. (2010). Ethylene production and ethylene effects on respiration rate of postharvest sugarbeet roots. Postharvest Biology and Technology, 56(1), 71-76.

Gaddie, R. S., & Tolman, B. (1952). Large Scale Supplemental Ventilation of Sugar Beets Stored for 106 Days. 7th General meeting of the American Society of Sugar Beet Technologists, Salt Lake City, Utah, USA.

Gaskill, J. O. (1950). Effects of Wilting, Drought, and Temperature Upon Rotting of Sugar Beets During Storage. 6th General meeting of the American Society of Sugar Beet Technologists, Detroit, MI, USA.
Gemet. (2023). Variety collection http://www.eionet.europa.eu/gemet/concept/10646

Gippert, A.-L., Madritsch, S., Woryna, P., Otte, S., Mayrhofer, M., Eigner, H., Garibay-Hernández, A., D’Auria, J. C., Molin, E. M., & Mock, H.-P. (2022). Unraveling metabolic patterns and molecular mechanisms underlying storability in sugar beet. BMC Plant Biology, 22(1), 430-430. https://doi.org/10.1186/s12870-022-03784-6

Gorzelany, J., & Puchalski, C. (2000). Mechanical Properties of Sugar Beet Roots During Harvest and Storage. International Agrophysics, 14(2), 173-179.

Gorzelany, J., & Puchalski, C. (2003). Application of the non-destructive method to investigations of mechanical properties of sugar beet roots. Acta Agrophysica, 2(1), 61-71.

Haagenson, D. M., Klotz, K. L., & Campbell, L. (2008). Impact of storage temperature, storage duration, and harvest date on sugarbeet raffinose metabolism. Postharvest Biology and Technology, 49(2), 221-228. https://doi.org/10.1016/j.postharvbio.2008.02.007

Harker, F. P., Maindonald, J. H., & Jackson, P. J. (1996). Penetrometer Measurement of Apple and Kiwifruit Firmness: Operator and Instrument Differences. Journal of the American Society of Horticultural Sciences, 151(5), 927-936.

Harvey, C. W., & Dutton, J. V. (1993). Root quality and processing. In D. A. Cooke & R. K. Scott (Eds.), The Sugar Beet Crop. Science into practice (pp. 571-617). Chapman & Hall.

Hoffmann, C. M., Kleuker, G., Wauters, A., English, W., & Leijdekkers, M. (2022). Root tissue strength and storage losses of sugar beet varieties as affected by N application and irrigation. Sugar Industry, 147(1), 34-41. https://doi.org/10.36961/si28254

Hoffmann, C. M., Leijdekkers, M., Ekelöf, J., & Vancutsem, F. (2018). Patterns for improved storability of sugar beet – importance of marc content and damage susceptibility of varieties in different environments. European Journal of Agronomy, 101, 30-37.

Huijbregts, A. W. M. (2009). IRS Jaarverslag 2008. Project No. 09-01, Bewaring: Vorstbescherming en bewaring.

Huijbregts, T., Legrand, G., Hoffmann, C., Olsson, R., & Olsson, Å. (2013). Longterm storage of sugar beet in North-West Europe (COBRI, Issue.

Ibrahim, L., Spackman, V. M. T., & Cobb, A. H. (2001). An Investigation of Wound Healing in Sugar Beet Roots Using Light and Fluorescence Microscopy. Annals of Botany, 88(2), 313-320. https://doi.org/10.1006/anbo.2001.1461

ICUMSA. (1994). Methods Book.

Ingelsson, T. (2003). Rensningsgradens påverkan på lagringsförlusterna vid långtidslagring 2002.

Iztayev, A., Kulazhanov, T. K., Yakiyayeva, M. A., Zhakatayeva, A. N., & Baibatyrov, T. A. (2021). Method for the safe storage of sugar beets using an ion-ozone mixture. Acta Scientiarum Polonorum Technologia Alimentaria, 20(1), 25-35. https://doi.org/10.17306/J.AFS.2021.0865

Jaggard, K. W., Clark, C. J. A., May, M. J., McCullagh, S., & Draycott, A. P. (1997). Changes in the weight and quality of sugarbeet (Beta vulgaris) roots in storage clamps on farm. The Journal of Agricultural Science, 129(3), 287-301.

Kenter, C., & Hoffmann, C. M. (2008). Influence of drought stress on quality and storage properties of sugarbeet. Zuckerindustrie. Sugar industry, 133(3), 155-160.

Kenter, C., Hoffmann, C. M., & Märländer, B. (2006). Sugarbeet as raw material – Advanced storage management to gain good processing quality. Zuckerindustrie. Sugar industry, 131(10), 706-720.

Kleuker, G. (2022). Festigkeit von Zuckerrübe – Ursachen für Sortenunterschiede und die Auswirkungen auf Beschädigung und Lagerungsverluste [Doctoral thesis, University of Göttingen]. Göttingen.

Kleuker, G., & Hoffmann, C. M. (2019). Method development for the determination of textural properties of sugar beet roots. Zuckerindustrie. Sugar industry, 144(7), 392-400. https://doi.org/10.36961/si23306

Kleuker, G., & Hoffmann, C. M. (2020). Influence of tissue strength on root damage and storage losses of sugar beet. Zuckerindustrie. Sugar industry, 145(7), 435-443. https://doi.org/10.36961/si24556

Kleuker, G., & Hoffmann, C. M. (2021). Tissue strength of sugar beet roots – genotypic variation and environmental impact. Crop Science, Online. https://doi.org/10.1002/csc2.20523

Kleuker, G., & Hoffmann, C. M. (2022). Causes of different tissue strength, changes during storage and effect on the storability of sugar beet genotypes. Postharvest Biology and Technology, 183. https://doi.org/10.1016/j.postharvbio.2021.111744

Klotz, K. L., Finger, F. L., & Anderson, M. D. (2008). Respiration in postharvest sugarbeet roots is not limited by respiratory capacity or adenylates. Journal of Plant Physiology, 165, 1500-1520.

Kołodziej, P., Stropek, Z., & Gołacki, K. (2023). Mechanical Properties of Sugar Beet Roots under Impact Loading Conditions. Materials, 16(3). https://doi.org/10.3390/ma16031281

Korobova, L. A., Gladkikh, T. V., Chikunov, S. V., Chernyaeva, S. N., Kovaleva, E. N., & Tolstova, I. S. (2022). Features of storing sugar beets in piles with the purpose of increasing the efficiency of its processing. IOP Conference Series: Earth and Environmental Science, 1052(1), 012107-012107. https://doi.org/10.1088/1755-1315/1052/1/012107

Kuuse, J. (1982). Sockerbolaget-Cardo, 1907-1982. AB Cardo.

Lafta, A. M., & Fugate, K. K. (2009). Dehydration accelerates respiration in postharvest sugarbeet roots. Postharvest Biology and Technology, 54(1), 32-37. https://doi.org/10.1016/j.postharvbio.2009.05.008

Lafta, A. M., Khan, M., & Fugate, K. K. (2020). Dehydration during Storage affects Carbohydrate Metabolism and the Accumulation of Non-sucrose Carbohydrates in Postharvest Sugarbeet Roots. Journal of Agriculture and Food Research. https://doi.org/10.1016/j.jafr.2020.100047

Lantmet. (2022). Lantmet – Väder och prognos [Lantmet – weather and prognosis] http://www.ffe.slu.se/lm

Lebel, V., Alderson, M., & Aita, M. (2014). Physiological stability: a concept analysis. Journal of Advanced Nursing, 70(9), 1995-2004. https://doi.org/10.1111/jan.12391

Legrand, G., Büsching, S., Bürcky, K., Chassine, J. M., Stevens, M., Huijbregts, T., & Olsson, R. (2012). Beet clamp covering system: practical experiences in some European countries. IIRB seminar 2012: Long-term beet storage for sugar production, Prosselsheim, Germany.

Legrand, G., & Wauters, A. (2012). New experiments on long term storage of sugar beets: effect of different storage temperatures according to the thermal time and effect of the harvesting time according to different varieties. 73rd Congress of the International Institute for Sugar Beet Research, Brussels,
Belgium.

Liebe, S. (2016). Impact of environment, genotype and storage temperature on the microbial community, rot development and root quality of stored sugar beets [Doctoral Thesis, The University of Göttingen]. Göttingen, Germany.

Liebe, S., & Varrelmann, M. (2016). Effects of environment and sugar beet genotype on root rot development and pathogen profile during storage. Phytopathology, 106(1), 65-75.

Madritsch, S., Bomers, S., Posekany, A., Burg, A., Birke, R., Emerstorfer, F., Turetschek, R., Otte, S., Eigner, H., & Sehr, E. M. (2020). Integrative transcriptomics reveals genotypic impact on sugar beet storability. Plant Molecular Biology, 104(11), 1-20. https://doi.org/10.1007/s11103-020-01041-8

Mahajan, P. V., Oliveira, F. A. R., & Macedo, I. (2008). Effect of temperature and humidity on the transpiration rate of the whole mushrooms. Journal of Food Engineering, 84(2), 281-288. https://doi.org/10.1016/j.jfoodeng.2007.05.021

Marschner, P. (2012). Mineral Nutrition of Higher Plants (3 ed.). Academic Press.

Milford, G., Armstrong, M., & Patchett, M. (2002). FROST damage to sugar beet – estimating the risk. British Sugar Beet Review, 70(3), 41-45.

Molin, E. M. (2022). Microbial factors underlying storability of sugar beet. 78th Congress of the International Institute for Sugar Beet Research, Mons, Belgium.

Monteith, J. L., & Unsworth, M. K. (2008). Principles of Environmental Physics (3rd ed.). Elsevier.

Mumford, D. L., & Wyse, R. E. (1976). Effect of Fungus Infection on Respiration and Reducing Sugar Accumulation of Sugarbeet Roots and Use of Fungicides to Reduce Infection. Journal of the American Society of Sugar Beet Technologists, 19(2), 157-162.

Mårtensson, A. (2017). Läkning av sockerbetor i fält efter frost : en fallstudie på Hviderup 2016 [Healing of sugar beet in the field after frost: a case study at Hviderup 2016] [BSc. Thesis, Swedish University of Agricultural Sciences]. Alnarp.

Nedomová, Š., Kumbár, V., Pytel, R., & Buchar, J. (2017). Mechanical properties of sugar beet root during storage. International Agrophysics, 31(4), 507-513 https://doi.org/10.1515/intag-2016-0081

Nilsson, M., English, W., & Telezhenko, E. (2020). Pressure Mapping Sugar Beets. 77th Congress of the International Institute for Sugar Beet Research, Brussels, Belgium.

Olsson, R. (2007). Två verksamheter blir en – NBR [When two become one – NBR]. Betodlaren, 2007(2), 23-23.

Olsson, R. (2009). Strategier för sort och platsval, upptagning och lagring vid sen leverans av sockerbetor. Betsortens betydelse för lagringdugligheten. 2007-2009 [Strategies for choice of variety and location, harvest and storage for late delivery of sugar beet. The importance of variety to storability 2007-2009].

Olsson, R. (2012). Lagringen hänger på dig, din jord och sorten [Storability depends on you, your soil, and variety]. Betodlaren, 2012(3), 46-52.

Olsson, R. (2013a). Lagring av sockerbetor – möjligheter och begränsningar för fem koncept av vatten och frostskydd 2011-2013 [Storage of sugar beets – possibilities and limitation for five types of water and frost protection 2011-2013].

Olsson, R. (2013b). Vägen mot lönsam lagring [The road to profitable storage]. Betodlaren, 2013(3), 43-53.

Olsson, R. (2014). Värt att veta om Toptex [Worth knowing about TopTex].Betodlaren, 2014(3), 39-43.

Olsson, R. (2017). Hur hårt ska bågen spånnas? [How tight should the bow be drawn?]. Betodlaren, 2017(3), 51-55.

Olsson, Å. (2008). The influence of damage to sugar beet roots caused by harvesters on sugar losses during storage 2006-2008.

Orleans, L. P., & Cotton, R. H. (1952). Beet Shed Ventilation in California. 7th General meeting of the American Society of Sugar Beet Technologists, Salt Lake City, Utah, USA.

Patton, M. Q. (2015). Qualitative Research and Evaluation Methods: integrating theory and practice (Fourth ed.). SAGE Publications, Inc.

Persson, L., & Olsson, Å. (2009). Odlingsplatsens betydelse för lagringsdugligheten av sockerbetor 2006–2009 [The influence of soil factors during growth of sugar beets for losses in storage 2006–2009].

Reinefeld, E., & Schneider, F. (1983). Analytische Betriebskontrolle in der Zuckerindustrie. Teil B: Vorschriften für die Betriebskontrolle. Verlag Dr. Albert Bartens.

Reuters Staff. (2008). Germany’s Nordzucker buys Danisco’s sugar business. https://www.reuters.com/article/sugar-germany-denmarkidUSL1565070420080715

Ruiz-Altisent, M. (1991). Damage Mechanisms in the Handling of Fruits. In J. Matthews (Ed.), Progress in agricultural physics and engineering (1 ed.). CAB International.

Schulze Lammers, P., Vandergeten, J. P., Tijink, F., & Royer, C. (2015). Test Procedures for Measuring the Quality in Sugar Beet Production – Seed Drillability, Precision Seeders, Harvesters, Cleaner Loaders.

Scott, R. K., & Jaggard, K. W. (1993). Crop physiology and agronomy. In D. A. Cooke & R. K. Scott (Eds.), The Sugar Beet Crop. Chapman & Hall.

Shaaban, M. (2020). Heat transfer model for sugar beet storage pile [MSc Thesis, Michigan State University]. Michigan.

Skyggeson, J. (2016). Ytfuktens inverkan på sockerbetans lagringsduglighet vid minusgrader [Frost tolerance of sugar beets under different moisture conditions] Swedish University of Agricultural Sciences]. Alnarp.

Stout, M., & Smith, C. H. (1950). Studies on the Respiration of Sugar Beets as Affected by Bruising, by Mechanical Harvesting, Severing Into Top and Bottom Halves, Chemical Treatment, Nutrition and Variety. 6th General meeting of the American Society of Sugar Beet Technologists, Detroit, MI, USA.

Strausbaugh, C. A., & Eujayl, I. A. (2018). Influence of Beet necrotic yellow vein virus and Freezing Temperatures on Sugar Beet Roots in Storage. Plant Disease, 102, 932-937. https://doi.org/10.1094/PDIS-10-17-1575-RE

Strausbaugh, C. A., Rearick, E., Eujayl, I., & Foote, F. (2011). Influence of Rhizoctonia-Bacterial Root Rot Complex on Storability of Sugarbeet. Journal of Sugar Beet Research, 48(3), 155-180.

Sviridov, A. V., & Kolomiets, E. I. (2012). Antagonist bacteria in the protection of sugar beet from clamp rot.

Tabil, L. G., Eliason, M. V., & Qi, H. (2003). Thermal Properties of Sugarbeet Roots. Journal of Sugar Beet Research, 40, 209-228.

Tabil, L. G., Kienholz, J., Qi, H., & Eliason, M. V. (2003). Airflow Resistance of Sugarbeet. Journal of Sugar Beet Research, 40(3), 67-86.

Thorstensson, F. (2016). Stor kunskap om upptagning och lagring [Valuable knowledge on harvest and storage]. Betodlaren, 2016(3), 22-24.

Tordeur, A. (2018). Connected beet: to limit storage losses. 76th Congress of the International Institute for Sugar Beet Research, Deauville, France.

Vallarino, J., & Osorio, S. (2019). Organic Acids. In E. M. Yahia & A. Carrillo-Lopez (Eds.), Postharvest Physiology and Biochemistry of Fruits and Vegetables. Woodhead Publishing.

van Soest, P. J., Robertson, J. B., & Lewis, B. A. (1991). Methods for Dietary Fiber, Neutral Detergent Fiber, and Nonstarch Polysaccharides in Relation to Animal Nutrition. Journal of Dairy Science, 74(10), 3583-3597. https://doi.org/10.3168/jds.S0022-0302(91)78551-2

van Swaaij, N., & Huijbregts, T. (2010). Long-term storability of different sugarbeet genotypes – Results of a joint IIRB study. Zuckerindustrie. Sugar industry, 135, 661-667.

Vukov, K. (1977). Physics and chemistry of sugar-beet in sugar manufacture. Elsevier scientific publishing company.

Wilczek, U., Kulig, B., Kock, H.-J., Kälberloh, R., & Hensel, O. (2020). Sensor system development for low-damage sugar beet harvesting – state and perspectives. Zuckerindustrie. Sugar industry, 145(5), 299-306. https://doi.org/10.36961/si24377

Wills, R. B. H., & Golding, J. B. (2016). Temperature. In R. B. H. Willis & J. B. Golding (Eds.), Postharvest: An introduction to the physiology and handling of fruit and vegetables. (6th ed.). UNSW Press, CABI.

Wills, R. B. H., McGlasson, W. B., Graham, D., & Joyce, D. C. (2007a). Introduction. In Postharvest. An introduction to the physiology and handling of fruit, vegetables and ornamentals (5th ed.). University of New South Wales Press Ltd.

Wills, R. B. H., McGlasson, W. B., Graham, D., & Joyce, D. C. (2007b). Physiological disorders. In Postharvest. An introduction to the physiology and handling of fruit, vegetables and ornamentals (5th ed.). University of New South Wales Press Ltd.

Wyse, R. E. (1973). Storage of Sugarbeet Roots in Controlled Atmospheres to Conserve Sucrose. Crop Science, 13, 701-703.

Wyse, R. E. (1978). Effect of Low and Fluctuating Temperatures on the Storage Life of Sugarbeets. Journal of the American Society of Sugar Beet Technologists, 20(1), 33-42.

Wyse, R. E., & Dexter, S. T. (1971). Effect of Agronomic and Storage Practices on Raffinose, Reducing Sugar, and Amino Acid Content of Sugarbeet Varieties. Journal of the American Society of Sugar Beet Technologists, 16(5), 369-383.

Xanthopoulos, G. T., Athanasiou, A. A., Lentzou, D. I., Boudouvis, A. G., & Lambrinos, G. P. (2014). Modelling of transpiration rate of grape tomatoes. Semi-empirical and analytical approach. Biosystems Engineering, 124, 16-23 https://doi.org/10.1016/j.biosystemseng.2014.06.005

Xanthopoulos, G. T., Templalexis, C. G., Aleiferis, N. P., & Lentzou, D. I. (2017). The contribution of transpiration and respiration in water loss of perishable agricultural products: The case of pears. Biosystems Engineering, 158, 76-85 https://doi.org/10.1016/J.BIOSYSTEMSENG.2017.03.011

Yahia, E. M. (2019). Chapter 1 – Introduction. In E. M. Yahia (Ed.), Postharvest
Physiology and Biochemistry of Fruits and Vegetables (pp. 1-17).

Woodhead Publishing. https://doi.org/10.1016/B978-0-12-813278-4.00001-4

Zavrazhnov, A. I., Zazulya, A. N., Vedishchev, S. M., Tolstoshein, S. S., & Koltsov, S. M. (2021). Investigating natural cooling of piled sugar beet. IOP Conference Series: Earth and Environmental Science, 845(1), 012089 https://doi.org/10.1088/1755-1315/845/1/012089