Gea Teresa, Artola Adriana, Sánchez Antoni
Escola Universitària Politècnica del Medi Ambient, Universitat Autònoma de Barcelona, Rbla Pompeu Fabra 1, 08100-Mollet del Vallès, Barcelona, Spain.
Bioresour Technol. 2005 Jul;96(10):1161-7. doi: 10.1016/j.biortech.2004.09.025. Epub 2004 Dec 2.
Composting of two different types of sludge from the recycled paper manufacturing industry was carried out at laboratory scale. Physico-chemical sludge (PCS) from the de-inking process and biological sludge (BS) from the wastewater treatment plant were composted and co-composted with and without addition of a bulking material. Despite its poor initial characteristics (relatively high C/N ratio, low organic content and moisture), PCS showed excellent behaviour in the composting process, reaching and maintaining thermophilic temperatures for more than 7 days at laboratory scale, and therefore complete hygienization. Pilot scale composting of PCS was also studied, and a respiratory quotient of 1.19 was obtained, indicating a full aerobic biological process. Respiration tests showed a complete stabilization of the material, with final values of the static respiration index in the range of 1.1 mg O2gTOM(-1)h(-1). Composting is proposed as a suitable technology for the effective recycling of this type of sludge from the recycled paper manufacturing industry.
在实验室规模下对再生纸制造行业的两种不同类型污泥进行了堆肥处理。来自脱墨过程的物理化学污泥(PCS)和来自废水处理厂的生物污泥(BS)在添加和不添加膨松材料的情况下进行了堆肥和共堆肥。尽管PCS初始特性较差(相对较高的碳氮比、低有机含量和湿度),但在堆肥过程中表现出色,在实验室规模下达到并维持嗜热温度超过7天,从而实现了完全卫生化。还研究了PCS的中试规模堆肥,获得的呼吸商为1.19,表明是一个完全好氧的生物过程。呼吸测试表明该材料完全稳定,静态呼吸指数的最终值在1.1 mg O2gTOM(-1)h(-1)范围内。堆肥被认为是一种适合有效回收再生纸制造行业此类污泥的技术。