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Waste to energy - key element for sustainable waste management

机译:废物转化为能源-可持续废物管理的关键要素

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摘要

Human activities inevitably result in wastes. The higher the material turnover, and the more complex and divers the materials produced, the more challenging it is for waste management to reach the goals of "protection of men and environment" and "resource conservation". Waste incineration, introduced originally for volume reduction and hygienic reasons, went through a long and intense development. Together with prevention and recycling measures, waste to energy (WTE) facilities contribute significantly to reaching the goals of waste management. Sophisticated air pollution control (APC) devices ensure that emissions are environmentally safe. Incinerators are crucial and unique for the complete destruction of hazardous organic materials, to reduce risks due to pathogenic microorganisms and viruses, and for concentrating valuable as well as toxic metals in certain fractions. Bottom ash and APC residues have become new sources of secondary metals, hence incineration has become a materials recycling facility, too. WTE plants are supporting decisions about waste and environmental management: They can routinely and cost effectively supply information about chemical waste composition as well as about the ratio of biogenic to fossil carbon in MSW and off-gas.
机译:人类活动不可避免地导致浪费。材料周转率越高,生产的材料越复杂和多样化,废物管理要实现“保护人类和环境”和“保护资源”的目标就越具有挑战性。垃圾焚烧最初是出于减少体积和卫生的原因而引入的,经过了长期而紧张的发展。连同预防和回收措施,废物转化为能源(WTE)的设施对实现废物管理的目标做出了重大贡献。先进的空气污染控制(APC)设备可确保排放物对环境安全。焚化炉对于彻底销毁有害有机材料,降低由病原微生物和病毒引起的风险以及将某些有价金属和有毒金属进行浓缩至关重要。底灰和APC残留物已成为新的二次金属来源,因此焚烧也已成为材料回收设施。 WTE工厂正在支持有关废物和环境管理的决策:它们可以例行且具有成本效益的方式提供有关化学废物成分以及有关MSW和废气中生物碳与化石碳比率的信息。

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