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Innovative Approaches to Improve Sustainability of Physical Distribution in Dutch Agrifood Supply Chains

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Efficiency in Sustainable Supply Chain

Part of the book series: EcoProduction ((ECOPROD))

Abstract

Sustainability has become an important issue in all aspects of corporate policy. This also applies to organizations operating in agrifood supply chains. Most literature on sustainability in the agrifood industry focuses on food security or prevention of food losses. However, little attention has been paid to how organizations working in agrifood supply chains use new approaches and innovations for making physical distribution more sustainable. Therefore we set up a study on how companies in the agrifood supply chains use innovations to improve the sustainability of the physical distribution. For this purpose, we have interviewed key managers of 14 Dutch companies—6 logistics service providers, 3 wholesalers and 5 food processors—all involved in agrifood value chains on how they approach, and innovatively improve, sustainability within physical distribution. We found that all the groups of companies have sustainability in their mission and use various innovations for improving the sustainability of their physical distribution. We also found that various links in the chain preferred different types of innovations e.g. food processors preferred innovations linked to reduction strategy and wholesalers focused on innovations related to efficiency strategy. The applied innovations were not linked to the supply chain as a whole, but concentrated on a specific aspect of the supply chain and were often initiated by a partner from outside the agrifood supply chain.

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References

  • Baregheh A, Rowley J, Sambrook S (2009) Towards a multidisciplinary definition of innovation. Manag Decis 47(8):1323–1339

    Article  Google Scholar 

  • Capros P, Paroussos L, Fragkos P, Tsani S, Boitier B, Wagner F, Busch S, Resch G, Blesl M, Bollen J (2014) Description of models and scenarios used to assess European decarbonisation pathways. Energ Strateg Rev 2:220–230

    Article  Google Scholar 

  • Carter C, Rogers D (2008) A framework of sustainable supply chain management: moving toward new theory. Int J Phys Distrib Logist Manag 38(5–6):360–387

    Article  Google Scholar 

  • Christopher M (2005) Logistics and supply chain management: strategies for reducing cost and improving services, 3rd edn. Prentice Hall, Upper Saddle River, NJ

    Google Scholar 

  • Colicchia C, Marchet G, Melacini M, Perotti S (2013) Building environmental sustainability: empirical evidence from logistics service providers. J Clean Prod 59:197–209

    Article  Google Scholar 

  • Dagran AE (2011) Environmental impact analysis in apple and pineapple juices concentrates supply chains. M.Sc. thesis management studies, Wageningen University the Netherlands

    Google Scholar 

  • Den Boer LC, Brouwer FPE, Van Essen HP (2008) STREAM Studie naar TRansport Emissies van Alle Modaliteiten (Study for TRansport Emissions of all Modal transports). Delft, CE

    Google Scholar 

  • European Commission (2004) European energy and transport scenarios on key drivers, Luxemburg

    Google Scholar 

  • European Commision (2011) European strategies. White paper 2011. Roadmap to a single European transport area—towards a competitive and resource efficient transport system, Brussels

    Google Scholar 

  • FAO, IFAD, WFP (2013) The state of food insecurity in the world 2013. The multiple dimensions of food security. Rome. http://www.fao.org/docrep/018/i3434e/i3434e.pdf

  • Finnveden G, Hauschild MZ, Ekvall T, Guinee J, Heijungs R, Hellweg S, Koehler A, Pennington D, Suh S (2009) Recent developments in life cycle assessment. J Environ Manage 91(1):1–21

    Article  Google Scholar 

  • Francke J, Annema JA, Wouters P (2009) Zuinig met goed op weg: beleid voor efficiencyverbetering in het goederenwegvervoer (Being efficient on the road: policy for efficiency improvement in freight transportation), Kennisinstituut voor Mobiliteitsbeleid. Ministry of Infrastructure and The Environment, The Hague, The Netherlands

    Google Scholar 

  • Fthenakis VM, Kim HC (2007) Greenhouse-gas emissions from solar electric- and nuclear power: a life-cycle study. Energ Policy 35:2549–2557

    Article  Google Scholar 

  • Godfray HCJ, Beddington JR, Crute IR, Haddad L, Lawrence, D, Muir JF, Toulmin C (2010) Food security: the challenge of feeding 9 billion people. Science, 327(5967):812–818

    Google Scholar 

  • Guinée JB, Gorreé M, Heijungs R, Huppes G, Kleijn R, de Koning A, van Oers L, Wegener Sleeswijk A, Suh S, Udo de Haes HA, de Bruijn JA, van Duin R, Huijbregts MAJ (2002) Handbook on life cycle assessment: operational guide to the ISO standards. series: eco-efficiency in industry and science. Kluwer Academic Publishers, Dordrecht

    Google Scholar 

  • Henson S, Caswell J (1999) Food safety regulation: an overview of contemporary issues. Food Policy 24(6):589–603

    Article  Google Scholar 

  • Holden E, Gilpin G (2013) Biofuels and sustainable transport: a conceptual discussion. Sustainability 5(7):3129–3149

    Article  Google Scholar 

  • Hospers GJ (2005) Joseph Schumpeter and his legacy in innovation studies. Knowl Technol Policy 18(3):20–37

    Article  Google Scholar 

  • Jacobs D (2009) Adding values: the cultural side of innovation. WBOOKS, Zwolle

    Google Scholar 

  • Kline SJ, Rosenberg N (1986) An overview of innovation. In: Landau R, Rosenberg N (eds) The positive sum strategy: Harnessing technology for economic growth. The National Academies Press, Washington, DC, pp 275–305

    Google Scholar 

  • Leach M, Rockström J, Raskin P, Scoones I, Stirling AC, Smith A, Thompson J, Millstone E, Ely A, Around E, Folke C, Olsson P (2012) Transforming innovation for sustainability. Ecol Soc 17(2):11

    Google Scholar 

  • Leaver JD (2011) Global food supply: a challenge for sustainable agriculture. Nutr Bull 36(4):416–421

    Article  Google Scholar 

  • Levin K, Cashore B, Bernstein S, Auld G (2012) Overcoming the tragedy of super wicked problems: constraining our future selves to ameliorate global climate change. Policy Sci 45(2):123–152

    Article  Google Scholar 

  • Maloni MJ, Brown ME (2006) Corporate social responsibility in the supply chain: an application in the food industry. J Bus Ethics 68(1):35–52

    Article  Google Scholar 

  • McDonough W, Braungart M (2002) Cradle to cradle: remaking the way we make things. North Point Press, New York, NY

    Google Scholar 

  • Mihyeon Jeon C, Amekudzi A (2005) Addressing sustainability in transportation systems: definitions, indicators and metrics. ASCE J Infrastruct Syst 11(10):31–50

    Article  Google Scholar 

  • Organisation for Economic Co-operation and Development (OECD) (1999) Working party on pollution prevention and control, working group on transport environmentally sustainable transport, final report on phase II of the OECD EST project volume 1: synthesis report, Paris

    Google Scholar 

  • Papargyropoulou E, Lozano R, Steinberger JK, Wright N, Bin Ujang Z (2014) The food waste hierarchy as a framework for the management of food surplus and food waste. J Clean Prod 76:106–115

    Google Scholar 

  • Pezzey JCV (1997) Sustainability constraints versus “Optimality” versus intertemporal concern, and axioms versus data. Land Econ 73(4):448–466

    Article  Google Scholar 

  • Pickard WF (2010) Finessing the fuel: revisiting the challenge of radioactive waste disposal. Energ Policy 38(2):709–714

    Article  CAS  Google Scholar 

  • Pieters R, Glöckner HH, Omta SWF, Weijers S (2012) Dutch logistics service providers and sustainable physical distribution: searching for focus. Int Food Agribus Manag Rev15(B):97–116

    Google Scholar 

  • Ploos van Amstel W (2008) Logistiek. Pearson, Amsterdam, The Netherlands

    Google Scholar 

  • Porter ME, Kramer MR (2004) Strategy and society: the link between competitive advantage and corporate social responsibility. Harvard Bus Rev 84(12):5–12

    Google Scholar 

  • Raadal HL, Gagnon L, Modahl IS, Hanssen OJ (2011) Life cycle greenhouse gas (GHG) emissions from the generation of wind and hydro power. Renew Sustain Energy Rev 15(7):3417–3422

    Article  Google Scholar 

  • Rao P, Holt D (2005) Do green supply chains lead to competitiveness and economic performance? Int J Oper Prod Manage 25(9):898–916

    Article  Google Scholar 

  • Rittel HWJ, Webber MM (1973) Dilemmas in a general theory of planning. Policy Sci 4(2):155–169

    Article  Google Scholar 

  • RLI (Council for the Environment and Infrastructure) (2013a) Dutch logistics 2040 designed to last. The Hague

    Google Scholar 

  • RLI (Council for the Environment and Infrastructure) (2013b) Room for sustainable agriculture. The Hague

    Google Scholar 

  • Scheer FP, Groot JJ, Snels JCMA, Simons AE (2011) Verduurzaming voedselproductie: transportbewegingen van het Nederlandse voedsel (Making Food Production Sustainable: transport movements of Dutch agrifood products) LEI. http://edepot.wur.nl/178006. Retrieved: 24 Jan 2014

  • Schott ABS, Andersson T (2015) Food waste minimization from a life-cycle perspective. J Environ Manage 147:219–226

    Article  Google Scholar 

  • SER (Social and Economic Council of the Netherlands) (2013) An energy agreement for sustainable growth (Energieakkoord voor duurzame groei). SER, The Hague

    Google Scholar 

  • Smith BG (2008) Developing sustainable food supply chains. Philos Trans R Soc B Biol Sci 363(1492):849–861

    Article  Google Scholar 

  • Stillwater T, Kurani KS (2013) Drivers discuss ecodriving feedback: Goal setting, framing, and anchoring motivate new behaviors. Transp Res Part F Traffic Psychol Behav 19:85–96

    Article  Google Scholar 

  • Szekely F, Knirsch M (2005) Responsible leadership and corporate social responsibility: metrics for sustainable performance. Eur Manag J 23(6):628–647

    Article  Google Scholar 

  • Thijssen RJTG, Hofman T, Ham J (2014) Ecodriving acceptance: an experimental study on anticipation behavior of truck drivers. Transp Res Part F Traffic Psychol Behav 22:249–260

    Article  Google Scholar 

  • Toll-Collect (2014) Toll rates. Retrieved: 19 Jan 2014 from http://www.toll-collect.de/en/all-about-the-toll/toll-rates.html

  • Van Beek P (2010) How to balance quality and logistics in food supply chains. In: Kroon L, Zuidwijk R, Li T (eds) Liber Amicorum in memory of Jo van Nunen. Breda, Dinalog and RSM Erasmus, pp 149–154

    Google Scholar 

  • Van de Ven AH (1986) Central problems in the management of innovation. Manage Sci 32(5):590–607

    Article  Google Scholar 

  • Van den Broek FN (2010) Green supply chain management, marketing tool or revolution?. NHTV, Breda

    Google Scholar 

  • Van der Vorst GAJ (2011) Toekomstverkenning transitie tot 2040 voor de topsectoren agrofood en tuinbouw vanuit logistiek perspectief (Future transition till 2040 for the agrifood and greenery from a logistics perspective). Council for the Environment and Infrastructure, The Hague

    Google Scholar 

  • Van der Meulen SJ, Kindt MRJ (2010) Duurzame logistiek: met welke verladerseisen worden logistieke dienstverleners geconfronteerd. (Sustainable Logistics: logistics service providers confronted by requirements demanded by shippers). ING, Amsterdam, The Netherlands

    Google Scholar 

  • Van der Vorst JG, Peeters L, Bloemhof JM (2013) Sustainability assessment framework for food supply chain logistics: empirical findings from dutch food industry. Proc Food Syst Dynam 480–491

    Google Scholar 

  • Visser L (2010) Thresholds in logistics collaboration decisions: a study in the chemical industry. BOX Press Uitgeverij, Oisterwijk, The Netherlands

    Google Scholar 

  • Wognum PM, Bremmers H, Trienekens JH, Van der Vorst JGAJ, Bloemhof JM (2011) Systems for sustainability and transparency of food supply chains—current status and challenges. Adv Eng Inform 25:65–76

    Article  Google Scholar 

  • World Commission on Environment and Development (1987) Our common future: the report of the world commission on environment and development. Oxford University Press, New York, NY

    Google Scholar 

Download references

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Pieters, R., van Beek, P., Glöckner, HH., Omta, O., Weijers, S. (2017). Innovative Approaches to Improve Sustainability of Physical Distribution in Dutch Agrifood Supply Chains. In: Golinska-Dawson, P., Kolinski, A. (eds) Efficiency in Sustainable Supply Chain. EcoProduction. Springer, Cham. https://doi.org/10.1007/978-3-319-46451-0_3

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