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首页> 外文期刊>Water Resources Management >Corporate Water Footprint Accounting and Impact Assessment: The Case of the Water Footprint of a Sugar-Containing Carbonated Beverage
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Corporate Water Footprint Accounting and Impact Assessment: The Case of the Water Footprint of a Sugar-Containing Carbonated Beverage

机译:公司水足迹核算和影响评估:以含糖碳酸饮料的水足迹为例

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摘要

All water use in the world is ultimately linked to final consumption by consumers. It is therefore interesting to know the specific water requirements of various consumer goods, particularly the water-intensive ones. This information is relevant not only for consumers, but also for food processors, retailers, and traders. The objective of this paper is to carry out a pilot study on water footprint accounting and impact assessment for a hypothetical sugar-containing carbonated beverage in a 0.5 1 PET-bottle produced in a hypothetical factory that takes its sugar alternatively from sugar beet, sugar cane and high fructose maize syrup and from different countries. The composition of the beverage and the characteristics of the factory are hypothetical but realistic. The data assumed have been inspired by a real case. This paper does not only look at the water footprint of the ingredients of the beverage, but also at the water footprint of the bottle, other packaging materials and construction materials, paper and energy used in the factory. Although most companies focus on their own operational performance, this paper shows that it is important to consider freshwater usage along the supply chain. The water footprint of the beverage studied has a water footprint of 150 to 300 1 of water per 0.5 1 bottle, of which 99.7-99.8% refers to the supply chain. The study also shows that agricultural ingredients that constitute only a small fraction in weight of the final product have the biggest share at the total water footprint of a product.
机译:最终,世界上所有用水都与消费者的最终消费有关。因此,有趣的是要知道各种消费品,特别是耗水量大的商品的具体水需求。此信息不仅与消费者有关,而且与食品加工者,零售商和贸易商有关。本文的目的是对假设工厂中从甜菜,甘蔗中提取糖的0.5 1 PET瓶中假设的含糖碳酸饮料的水足迹核算和影响评估进行试点研究。以及来自不同国家的高果糖玉米糖浆。饮料的成分和工厂的特征是假设的,但很现实。假设的数据是受一个实际案例启发的。本文不仅着眼于饮料成分的水足迹,而且还着眼于瓶子,其他包装材料和建筑材料,工厂用纸和能源的水足迹。尽管大多数公司都专注于自身的运营绩效,但本文显示,重要的是要考虑供应链中的淡水使用量。研究的饮料的水足迹每0.5 1瓶水足迹有150到300 1水,其中99.7-99.8%是供应链。研究还表明,在最终产品的总水足迹中,仅占最终产品重量一小部分的农业成分所占份额最大。

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