Measures, technologies, and incentives for cleaning the minimally processed fruits and vegetables supply chain in the Italian food industry

被引:23
作者
De Corato, Ugo [1 ]
Cancellara, Fernando Antonio [2 ]
机构
[1] Italian Natl Agcy New Technol, Energy & Sustainable Econ Dev ENEA, Terr Off Bari, Via Giulio Petroni 15-F, I-70124 Bari, Italy
[2] Italian Natl Agcy New Technol, Energy & Sustainable Econ Dev ENEA, Dept Energy Efficiency Unit, Div Syst Projects & Solut Energy Efficiency,Terr, Via Giulio Petroni 15-F, I-70124 Bari, Italy
关键词
Bio-based material; Energy consumption and management; Energy efficiency and saving; Food processing; Renewable source; Waste recycling; ENERGY EFFICIENCY IMPROVEMENT; CEMENT INDUSTRY; REDUCTION; RESIDUES; OPPORTUNITIES;
D O I
10.1016/j.jclepro.2019.117735
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The minimally processed fresh fruits and vegetables industry has gained huge economic and political relevance because it is one of the leading manufacturing sectors in the European Union (EU). Previous studies on the processing components have shown increasing consumption of electrical and thermal energy from fossil fuels. This paper aims to present a feasibility study carried out in the Italian food industry about the measures and technologies of energy efficiency, savings, and agro-waste recycling that can be adopted by users to render a sustainable supply chain. An empirical methodology based on analyses of the energy fluxes and un-biodegradable materials within a case study was implemented by using questionnaires, consulting the existing literature, and considering policy implications. The results show that several technologies, both older and newer, together to suitable measures for reducing the end use of energy and agro-waste can be adopted into the firm against technologies requiring high fossil sources inputs for plant processing and high un-biodegradable materials outputs in the greenhouse and for packaging. The most important of these includes (i) the use of efficient engines and variable speed drive; insulation for machinery, chambers and buildings; cooling and heating machinery; compressed air systems; and lighting systems; (ii) the use of less-energy-demanding packaging for fresh produce and smart bio-based mulching and coating for crop production in greenhouses; (iii) the adoption of onsite recycling of agro-waste to produce compost into the firm; and (iv) the use of renewable sources for conditioning greenhouses. The integrated adoption of these technologies accompanied by economic incentives should be encouraged to reduce energy inputs and agro-waste amounts within the EU. (C) 2019 Elsevier Ltd. All rights reserved.
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页数:15
相关论文
共 59 条
[11]   Improving the shelf-life and quality of fresh and minimally-processed fruits and vegetables for a modern food industry: A comprehensive critical review from the traditional technologies into the most promising advancements [J].
De Corato, Ugo .
CRITICAL REVIEWS IN FOOD SCIENCE AND NUTRITION, 2020, 60 (06) :940-975
[12]   Suppression of soil-borne pathogens in container media amended with on-farm composted agro-bioenergy wastes and residues under glasshouse condition [J].
De Corato, Ugo ;
Salimbeni, Rocco ;
De Pretis, Agostino .
JOURNAL OF PLANT DISEASES AND PROTECTION, 2018, 125 (02) :213-226
[13]   Assessing the main opportunities of integrated biorefining from agro-bioenergy co/by-products and agroindustrial residues into high-value added products associated to some emerging markets: A review [J].
De Corato, Ugo ;
De Bari, Isabella ;
Viola, Egidio ;
Pugliese, Massimo .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2018, 88 :326-346
[14]   Use of composted agro-energy co-products and agricultural residues against soil-borne pathogens in horticultural soil-less systems [J].
De Corato, Ugo ;
Viola, Egidio ;
Arcieri, Giuseppe ;
Valerio, Vito ;
Zimbardi, Francesco .
SCIENTIA HORTICULTURAE, 2016, 210 :166-179
[15]   The microbiological safety of minimally processed vegetables [J].
Francis, GA ;
Thomas, C ;
O'Beirne, D .
INTERNATIONAL JOURNAL OF FOOD SCIENCE AND TECHNOLOGY, 1999, 34 (01) :1-22
[16]  
Galitsky C., 2003, Energy efficiency improvement and cost saving opportunities for the Corn Wet Milling Industry: An ENERGY STAR Guide for Energy and Plant Managers
[17]  
Gross K. C., 2016, USDA AGR HDB, V66, P780
[18]   R&D Cooperation and Knowledge Spillover Effects for Sustainable Business Innovation in the Chemical Industry [J].
Hajek, Petr ;
Stejskal, Jan .
SUSTAINABILITY, 2018, 10 (04)
[19]   Energy efficiency improvement and CO2 emission reduction opportunities in the cement industry in China [J].
Hasanbeigi, Ali ;
Morrow, William ;
Masanet, Eric ;
Sathaye, Jayant ;
Xu, Tengfang .
ENERGY POLICY, 2013, 57 :287-297
[20]  
Jenny G., 2011, Global food losses and food waste: Extent, causes and prevention