4.7 Article

Co-pyrolysis of sewage sludge/cotton stalks with K2CO3 for biochar production: Improved biochar porosity and reduced heavy metal leaching

期刊

WASTE MANAGEMENT
卷 135, 期 -, 页码 199-207

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.wasman.2021.08.042

关键词

Sewage sludge; Cotton stalks; Co-pyrolysis; Biochar; K2CO3 activation

资金

  1. Natural Science Foundation (Tian Shan Qing Nian) of Xinjiang [2020Q021]
  2. Science and Technology Foundation of Karamay [2020CXRC0013]
  3. Research Foundation of China University of Petroleum-Beijing at Karamay [XQZX20200014]

向作者/读者索取更多资源

The study demonstrates that K2CO3 activation can significantly improve the pore structure and aromaticity of biochar, transform heavy metals into more stable forms, and reduce mobility and bioavailability. Additionally, K2CO3 activation aids in reducing leachability and environmental risks associated with heavy metals.
The co-pyrolysis of sewage sludge and biomass is considered a promising technique for reducing the volume of sewage sludge, adding value, and decreasing the risk associated with this waste. In this study, sewage sludge and cotton stalks were pyrolyzed together with different amounts of K2CO3 to evaluate the potential of chemical activation using K2CO3 for improving the porosity of the biochar formed and immobilizing the heavy metals present in it. It was found that K2CO3 activation effectively improved the pore structure and increased the aromaticity of the biochar. Moreover, K2CO3 activation transformed the heavy metals (Cu, Zn, Pb, Ni, Cr, and Cd) into more stable forms (oxidizable and residual fractions). The activation effect became more pronounced with increasing amount of added K2CO3, eventually resulting in a significant reduction in the mobility and bioavailability of the heavy metals in the biochar. Further analysis revealed that, during the co-pyrolysis process, K2CO3 activation resulted in a reductive atmosphere, increased the alkalinity of the biochar, and led to the formation CaO, CaCO3, and aluminosilicates, which aided the immobilization of the heavy metals. K2CO3 activation also effectively reduced the leachability, and thus, the environmental risks of the heavy metals. Thus, K2CO3 activation can improve the porosity of the biochar derived from sewage sludge/cotton stalks and aid the immobilization of the heavy metals in it.

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