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首页> 外文期刊>Journal of Cleaner Production >Energy and water self-sufficiency assessment of the white sugar production process in Indonesia using a complex mass balance model
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Energy and water self-sufficiency assessment of the white sugar production process in Indonesia using a complex mass balance model

机译:使用复杂的质量平衡模型对印度尼西亚白糖生产过程进行能量和水的自给自足评估

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White sugar production consumes considerable amounts of energy and water and, at the same time, generates a substantial amount of material containing energy (biomass) and releases water to the environment. Recycling the biomass as a source of energy and using the released water as a part of the production process will cut fossil fuel and water use. These approaches will significantly save resources and cut the environmental pollution load. The objectives of this study were to analyze the mass balance, assess the energy content of by-products, and build a closed flow of energy and water self-sufficiency in the white sugar production process. A mass balance model was developed to illustrate internal mass flows and to determine the amount of by-products generated in the production process. The results showed that optimal use of by-products can produce energy and water exceeding the needs of the sugar processing itself, leading to the creation of energy and water self-sufficiency or an independent sugar production process. The potential energy contained in the by-products of a sugar mill with a capacity of 3000 tons of cane per day is approximately 2237 gigacalories per day, which could meet the energy needs of the mill with an excess of 37,081 kWh/day. The mill is also able to produce a net Water surplus of 700 m(3) per day. This research demonstrated that a complex mass balance model can be used to assess the level or possibility of sugar mill energy and water self-sufficiency. It is suggested that the sugar production process should be developed as a closed-production system that does not require the input of energy and water from outside the system. Application of this production system at a practical level will contribute to reducing sugar mill pollution, reduce coal and other fossil fuel use and help protect water resources from excessive exploitation. A closed production system can be applied to all industries that process raw material containing energy. In the short term, sugar production should be restricted in its use of fossil fuel, public electricity networks, and water from natural sources. In the long run, sugar mills should become multipurpose factories producing sugar, energy, and water. (C) 2016 Elsevier Ltd. All rights reserved.
机译:白糖生产消耗大量的能量和水,同时,产生大量的包含能量的物质(生物质),并将水释放到环境中。回收生物质作为能源,并将释放的水用作生产过程的一部分,将减少化石燃料和水的使用。这些方法将大大节省资源并减少环境污染负荷。这项研究的目的是分析白糖生产过程中的质量平衡,评估副产物的能量含量,并建立能量和水的自给自足的封闭流。建立了质量平衡模型,以说明内部质量流量并确定生产过程中产生的副产物的量。结果表明,副产品的最佳利用可以产生超出糖加工本身需要的能量和水,从而导致能量和水的自给自足或独立的制糖过程。糖厂每天生产3000吨甘蔗的副产品中所含的潜在能量约为每天2237千兆卡,可以满足工厂每天超过37,081 kWh的能源需求。该工厂每天还可以产生700 m(3)的净净水量。这项研究表明,可以使用复杂的质量平衡模型来评估糖厂能源和水的自给自足的水平或可能性。建议将制糖工艺开发为闭式生产系统,该系统不需要从系统外部输入能量和水。该生产系统的实际应用将有助于减少糖厂的污染,减少煤炭和其他化石燃料的使用,并有助于保护水资源免于过度开采。封闭的生产系统可以应用于处理含能源原料的所有行业。在短期内,应当限制食糖的生产,如化石燃料,公共电网和天然水的使用。从长远来看,制糖厂应该成为生产糖,能源和水的多用途工厂。 (C)2016 Elsevier Ltd.保留所有权利。

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