522 / 2018-09-17 14:22:31
Study on potassium transformation characteristics and the influence of additives during biochar briquette combustion
摘要录用
Qian Wang / Shandong Jianzhu University
Peifu Wang / Jinan Special Equipment Inspection Institute
Kuihua Han / Shandong University
Low energy density and ash fusion problem were problems that limit biomass widespread utilization. To avoid these, maize straw (MS) was blended with two additive -NH4H2PO4 (ADP) and Ca(H2PO4)2 (CPM)-respectively, and the production chain of mixing additive-briquetting-pyrolysis was put forward to produce MS char briquettes (MSC, MSC-ADP and MSC-CPM). Ash fusion characteristics of MS char briquettes after combustion was investigated by XRF, XRD, SEM-EDS and simulation. The ash fusion points test and XRF results show that the softening temperature increased with the enhanced ratio of P2O5/K2O until 0.2, and CaO/K2O until 0.9, as shown in figure 1. The higher amount of CaO and P2O5, the lower amount of K2O, the better ash characteristics. The P2O5 had larger influence on softening temperature.
The macro and micro observations of MS char briquettes ashes formed at 1000 °C are shown in figure 2. The surfaces of MSC ashes were fusion and smooth in SEM results, while surfaces of MSC-ADP and MSC-CPM ashes were coarse and the particles were much looser. Both SEM-EDS and XRD results illustrated that phosphorus in additives combined with potassium to produce high melting temperature potassium phosphates rather than low melting temperature potassium silicates. Combine the experiment and simulation results, the potassium fixation ability of ADP was better than that of CPM. The calcium silicates and calcium phosphates produced by CPM could improve ash characteristics.
重要日期
  • 会议日期

    10月16日

    2018

    10月19日

    2018

  • 08月15日 2018

    摘要截稿日期

  • 08月15日 2018

    初稿截稿日期

  • 09月15日 2018

    摘要录用通知日期

  • 10月19日 2018

    注册截止日期

承办单位
武汉新能源研究院
湖北省节能减排研究会
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