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The water footprint of sweeteners and bio-ethanol

机译:甜味剂和生物乙醇的水足迹

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An increasing demand for food together with a growing demand for energy crops result in an increasing demand for and competition over water. Sugar cane, sugar beet and maize are not only essential food crops, but also important feedstock for bio-ethanol. Crop growth requires water, a scarce resource. This study aims to assess the green, blue and grey water footprint (WF) of sweeteners and bio-ethanol from sugar cane, sugar beet and maize in the main producing countries. The WFs of sweeteners and bio-ethanol are mainly determined by the crop type that is used as a source and by agricultural practise and agro-climatic conditions; process water footprints are relatively small. The weighted global average WF of sugar cane is 209 m~3/tonne; for sugar beet this is 133 m~3/tonne and for maize 1222 m~3/tonne. Large regional differences in WFs indicate that WFs of crops for sweeteners and bio-ethanol can be improved. It is more favourable to use maize as a feedstock for sweeteners or bio-ethanol than sugar beet or sugar cane. The WF of sugar cane contributes to water stress in the Indus and Ganges basins. In the Ukraine, the large grey WF of sugar beet contributes to water pollution. In some western European countries, blue WFs of sugar beet and maize need a large amount of available blue water for agriculture. The allocation of the limited global water resources to bio-energy on a large scale will be at the cost of water allocation to food and nature.
机译:对食物的需求增加,加上对能源作物的需求增加,导致对水的需求和竞争加剧。甘蔗,甜菜和玉米不仅是必不可少的粮食作物,而且还是生物乙醇的重要原料。作物生长需要水,这是一种稀缺的资源。这项研究旨在评估主要生产国的甘蔗,甜菜和玉米中甜味剂和生物乙醇的绿色,蓝色和灰色水足迹(WF)。甜味剂和生物乙醇的WFs主要取决于用作原料的作物类型以及农业实践和农业气候条件;工艺用水足迹相对较小。甘蔗的全球加权平均WF为209 m〜3 / t。甜菜为133 m〜3 /吨,玉米为1222 m〜3 /吨。 WF的较大区域差异表明,甜味剂和生物乙醇作物的WF可以提高。与甜菜或甘蔗相比,将玉米用作甜味剂或生物乙醇的原料更为有利。甘蔗的WF导致印度河和恒河盆地的水分胁迫。在乌克兰,甜菜的大灰白WF造成水污染。在一些西欧国家,甜菜和玉米的蓝色WF需要大量可用的蓝色农业水。将有限的全球水资源大规模分配给生物能源将以水分配给粮食和自然为代价。

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