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Hydrothermal Ammonia Carbonization of Rice Straw for Hydrochar to Separate Cd(II) and Zn(II) Ions from Aqueous Solution. | LitMetric

Hydrothermal Ammonia Carbonization of Rice Straw for Hydrochar to Separate Cd(II) and Zn(II) Ions from Aqueous Solution.

Polymers (Basel)

Agro-Environmental Protection Institute, Ministry of Agriculture and Rural Affairs, No. 31 Fukang Road, Nankai District, Tianjin 300191, China.

Published: November 2023

AI Article Synopsis

  • - Hydrochar, derived from rice straw, has low yields in typical production methods due to complex processes like polymerization and carbonization, but using toilet sewage improves this yield significantly.
  • - The study found that hydrochar modified with nitrogen and phosphorus (N/P-doped) shows enhanced adsorption capabilities for metal ions, specifically cadmium (Cd) and zinc (Zn), outperforming regular rice straw hydrochar by 1.1-1.4 times.
  • - Various characterization techniques confirmed that metal ion extraction involves mechanisms such as surface complexation, electrostatic interactions, hydrogen bonding, and ion exchange, effectively modeled by Langmuir and pseudo-second-order equations.

Article Abstract

Hydrochar is considered to be a good adsorbent for the separation of metal ions from aqueous solutions. However, the yield of hydrochar from raw straw is generally low, because the hydrothermal carbonization occurs via dehydration, polymerization, and carbonization. In this work, various hydrochar samples were prepared from rice straw with nitrogen and phosphorus salt; moreover, toilet sewage was used instead of nitrogen, and phosphorus salt and water were used to promote the polymerization and carbonization process. The modified carbon was characterized using XRD, XPS, SEM, and FTIR, and the adsorption capacity was investigated. A significant increase in hydrochar yield was observed when toilet sewage was used as the solvent in the hydrothermal carbonization process. The adsorption capacity of N/P-doped rice straw hydrochar for Cd and Zn metal ions was 1.1-1.4 times higher than that those using the rice straw hydrochar. The Langmuir models and pseudo-second-order models described the metal adsorption processes in both the single and binary-metal systems well. The characterization results showed the contribution of the surface complexation, the electrostatic interaction, the hydrogen bond, and the ion exchange to the extraction of Cd and Zn using N/P-doped rice straw hydrochar.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10708519PMC
http://dx.doi.org/10.3390/polym15234548DOI Listing

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