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Urban metabolism of recycling and reusing food waste: A case study in Taipei City

机译:回收和重用食品废物的城市代谢:以台北市为例

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The purpose of this study is to adopt the urban metabolism method to compare bio-waste scenarios of reuse and landfills. The study focuses on food waste (FW) generated from Taipei City to determine what outcomes will result if bio-waste is transformed into energy or material resources. The results show that under the scenario of bio-waste reuse, metabolic efficiency in Taipei increases, e.g., the same amount of resources can be used to produce more products. However, the urban impact also increases due to the bio-waste conversion process. Applying the life cycle assessment method of quantifying the environmental burden for bio-waste conversion technology selection enhances the urban metabolism efficiency of resources in Taipei and reduces the urban impact on the environment. The most environmentally friendly FW conversion technology is composting after pre-treatment of high-temperature cooking. The next most environmentally friendly method is direct composting treatment. This is followed by anaerobic co-digestion with sewage sludge, and the worst option is transforming FW into bio-ethanol.
机译:本研究的目的是采用城市代谢方法,比较重用和垃圾填埋场的生物废物情景。该研究侧重于台北市产生的食物垃圾(FW),以确定生物废物是否转化为能源或物质资源的结果。结果表明,在生物废物再利用的场景下,台北的代谢效率增加,例如,相同数量的资源可用于生产更多产品。然而,由于生物废物转换过程,城市影响也增加。应用寿命周期评估方法量化生物废物转化技术选择的环境负担,提高了台北资源的城市代谢效率,减少了对环境的城市影响。最环保的FW转换技术在预处理高温烹饪后堆肥。下一个最环保的方法是直接堆肥治疗。随后是厌氧共消化与污水污泥,最坏的选择是将FW转化为生物乙醇。

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