4.7 Article

Dewatering of sewage sludge via thermal hydrolysis with ammonia-treated Fenton iron sludge as skeleton material

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 379, 期 -, 页码 -

出版社

ELSEVIER
DOI: 10.1016/j.jhazmat.2019.120810

关键词

Sewage sludge; Dewatering; Thermal hydrolysis; Ammonia-treated Fenton iron sludge

资金

  1. National Natural Science Funding of China [51876083, 51876080]
  2. Foundation of Jiangsu University of Advanced scholars [15JDG159]
  3. Strategic International Scientific and Technological Innovation Cooperation Special Funds of National Key R&D Program of China [2016YFE0204000]
  4. Program for Taishan Scholars of Shandong Province Government

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In this study, the alkaline hydrothermal ferric carbon (AHFC), which was prepared by hydrothermal liquefaction method using Fenton iron sludge with NH3 center dot H2O, was used as a skeleton materials for the dewatering of sewage sludge (SS) via thermal hydrolysis. NH2 functional group presented in the AHFC and nano-sized gamma-Fe2O3 was anchored on the surface of AHFC. The NH2 functional group notably promoted thermal hydrolysis of SS from the increasing of TOC and TN value. gamma-Fe2O3 showed adsorption effect to the water, resulting in decline of the dewatering rate of SS in present condition. When 100% of AHFC was added, dewatering rate of SS was decreased by 19.93% (at 160 degrees C), 4.50% (at 180 degrees C) and 8.34% (at 200 degrees C) respectively. 3D-EEM results showed that the degree of hydrolysis was deepened when AHFC was added for the intensity of soluble microbial products decline. AHFC promoted the decomposition of protein to form heterocycle compounds in the resulting cake according to in situ FTIR results. The nano gamma-Fe2O3 catalysis to cake also can be observed for the activation energy was lower than blank in the range of 40-60%. The study demonstrated concept and the effectiveness the reuse/recycle of the Fenton iron sludge for dewatering of SS.

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