<p>Chicken manure was converted to biochar by a simple oxygen-free sintering route. The obtained chicken manure biochar (CMBC) was confirmed by X-ray diffraction, electron microscopy, energy dispersive spectrum and Raman spectrum. Amorphous CMBC exhibits irregular particle morphology and size of less than 10&#xa0;μm. CMBC can be used as an efficient adsorbent for rhodamine B (RhB) and methylene blue (MB) removal. The adsorption time, dose of the CMBC and pH value have important influences on the adsorption efficiency. RhB and MB with the concentration of 10 mg·L<sup>− 1</sup> can be totally adsorbed when the dose of the CMBC is higher than 1.25&#xa0;mg·mL<sup>− 1</sup>. CMBC adsorbent has good anti-ion interference ability and re-usability. Glassy carbon electrode was modified by the CMBC and applied for catechol detection by square wave voltammetry (SWV) method in KCl solution. The proposed CMBC-modified electrode exhibits good sensing performance for catechol detection with good stability, selectivity, reproducibility and practical applicability. The linear range for catechol detection is 0.001 − 1000 µM and limit of detection (LOD) is 0.88 nM. Real sample analysis was performed using local tap water and lake water. The developed CMBC-modified electrode shows admirable electro-catalytic properties towards catechol which can be used for real-time monitoring.</p>

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Conversion of Biochar From Chicken Manure With Good Adsorption and Electro-catalytic Performance

  • Zhangjie Ban,
  • Qianmin Cong,
  • Xingxing Zhu,
  • Yuetong Chang,
  • Mengyan Pei,
  • Zhengyu Cai,
  • Yong Zhang,
  • Lizhai Pei

摘要

Chicken manure was converted to biochar by a simple oxygen-free sintering route. The obtained chicken manure biochar (CMBC) was confirmed by X-ray diffraction, electron microscopy, energy dispersive spectrum and Raman spectrum. Amorphous CMBC exhibits irregular particle morphology and size of less than 10 μm. CMBC can be used as an efficient adsorbent for rhodamine B (RhB) and methylene blue (MB) removal. The adsorption time, dose of the CMBC and pH value have important influences on the adsorption efficiency. RhB and MB with the concentration of 10 mg·L− 1 can be totally adsorbed when the dose of the CMBC is higher than 1.25 mg·mL− 1. CMBC adsorbent has good anti-ion interference ability and re-usability. Glassy carbon electrode was modified by the CMBC and applied for catechol detection by square wave voltammetry (SWV) method in KCl solution. The proposed CMBC-modified electrode exhibits good sensing performance for catechol detection with good stability, selectivity, reproducibility and practical applicability. The linear range for catechol detection is 0.001 − 1000 µM and limit of detection (LOD) is 0.88 nM. Real sample analysis was performed using local tap water and lake water. The developed CMBC-modified electrode shows admirable electro-catalytic properties towards catechol which can be used for real-time monitoring.