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Assessment of co-composting of sludge and woodchips in the perspective of environmental impacts (EASETECH)

机译:从环境影响的角度评估污泥和木屑的共同堆肥(EASETECH)

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摘要

To reveal potential impacts to environment and human health quantitatively, co-composting and utilization of sludge and woodchips were investigated using a life-cycle-based model, EASETECH. Three scenarios were assessed through experiments using different material ratios. Emission amounts during co-composting were determined by monitoring data and mass balance. With 100 t sludge treatment, co-composting showed impacts to acidification (29.9 PE) and terrestrial eutrophication (57.7 PE) mainly for ammonia emission. Compost utilization presented savings on freshwater eutrophication (-1.5 PE) because of phosphorus substitution. With the application of fewer woodchips, impacts to acidification and terrestrial eutrophication decreased because more ammonium was reserved rather than released. All impacts to human toxicity were not significant (8.2 ± 0.6 PE) because the compost was used for urban landscaping rather than farming. Trace gaseous compounds showed marginal impacts to global warming and toxicity categories. The results provide a new perspective and offer evidence for appropriate sludge treatment selection.
机译:为了定量揭示对环境和人类健康的潜在影响,使用基于生命周期的模型EASETECH对污泥和木屑的共堆肥和利用进行了研究。通过使用不同材料比率的实验评估了三种情况。通过监测数据和质量平衡来确定联合堆肥期间的排放量。用100吨污泥处理后,共堆肥对酸化(29.9 PE)和陆地富营养化(57.7 PE)的影响主要是排放氨。由于磷的替代,堆肥的利用减少了淡水富营养化(-1.5 PE)。随着使用更少的木片,对酸化和陆地富营养化的影响降低了,因为保留了更多的铵而不是释放了更多的铵。对堆肥的所有影响均不显着(8.2±0.6 PE),因为堆肥用于城市美化,而不是用于农业。痕量气态化合物对全球变暖和毒性类别影响很小。结果提供了一个新的观点,并为选择合适的污泥处理提供了证据。

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