热解
脱水
材料科学
污水污泥
生物炭
化学工程
烧焦
颗粒(地质)
水分
含水量
制浆造纸工业
废物管理
污水处理
环境科学
环境工程
复合材料
岩土工程
工程类
作者
Rong Han,Jinwen Liu,Yuancheng Zhang,Xiaoqian Fan,Wenjing Lü,Li Wang
标识
DOI:10.1016/j.biortech.2011.11.123
摘要
A novel two-step technology, fast biophysical drying (BPD) coupling with fast pyrolysis (FP), was investigated for moisture removal and energy recovery from sewage sludge. For BPD, combined operations of extreme thermophilic amendment (with accelerated increasing and controllable maintenance of substrate temperature) and enhanced convective evaporation were conducted, both beneficial for moisture removal (moisture content reaching 23.1% for 7 d) and organic preservation. Biophysical-dried sludge (BPDS) was characterized by homogeneous fine-particle morphology and well-developed porous microstructure. The synthesized BPDS particle preserved most organic components (92% volatile matters and 79% HHV of traditional thermal-dried sludge [TTDS]) attributable to the inhibitory effect of BPD adjustment, presenting considerable capacity for subsequent residue-derived energy. For FP, the distribution of products from BPDS pyrolysis indicated that syngas and char yields were higher than those of TTDS. The syngas from BPDS is a type of hydrogen-rich gas composed of 42.6 vol.% H2 at 900 °C.
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