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影響煤自燃氣體產物釋放的主要活性官能團

Key functional groups affecting the release of gaseous products during spontaneous combustion of coal

  • 摘要: 為了研究煤自燃發火氣體產物與煤分子官能團之間的內在聯系,進一步揭示煤自燃發火過程的微觀變化特性,利用程序升溫實驗裝置和原位紅外光譜分析實驗系統,得出了氣體產物生成量和活性官能團含量之間的關聯性。結果表明:CO、C2H4等指標氣體濃度伴隨溫度升高顯示為拋物線模式增長;活性官能團中,隨著溫度的不斷升高,脂肪烴含量先持續增大,之后開始逐漸下降,C=C雙鍵含量不斷下降,含氧官能團含量先趨于穩定后逐漸增加。根據指標氣體濃度變化,獲得了高溫反應過程中的5個特征溫度點,進一步將其分為臨界溫度階段、干裂–活性–增速溫度階段、增速–燃點溫度階段和燃燒階段4個階段,并對三個高溫氧化階段進行關聯性分析發現:在臨界溫度階段,影響CO、CO2、CH4和C2H6氣體釋放的主要活性官能團是羰基;在干裂–活性–增速溫度階段烷基鏈和橋鍵發生大量斷裂,影響氣體產物的主要活性官能團是脂肪烴和羰基;在增速–燃點溫度階段氣體濃度與羰基和羧基等官能團呈負相關。得出干裂–活性–增速溫度階段是高溫氧化過程中的危險階段,需在該階段前對氧化反應進行控制,以減少人員和物質損失。

     

    Abstract: Coal–oxygen reaction theory, which is widely accepted, considers the reaction of coal and oxygen during combustion. In this research, the characteristics of spontaneous coal combustion were assessed at a high temperature to investigate the internal relationship between the gaseous products of this reaction and the functional groups in coal molecules and to further reveal the micro-characteristics of spontaneous coal combustion. Our self-developed temperature-programmed experimental system and in situ diffuse reflectance infrared Fourier transform spectroscopy were adopted to analyze the correlation between the contents of gaseous products and active functional groups. Results reveal that the contents of indicator gases, such as CO and C2H4, increase and show a parabolic curve. In terms of active functional groups, as temperature increases, the content of aliphatic hydrocarbons initially increases and then decreases gradually. The content of C=C groups decreases throughout this study, and the content of oxygen-containing functional groups gradually increases after equilibrium is reached. Five characteristic temperatures are obtained on the basis of the variation in gaseous products, and four oxidation stages are further divided. The relationship between active functional groups and gases during different temperature stages is determined. At the critical temperature stage, the main active functional group affecting the release of CO, CO2, CH4, and C2H6 is carbonyl. Numerous alkyl chains and bridge bonds are broken at the crack?active?speedup temperature stage, and the primary active functional groups influencing the gas products are aliphatic hydrocarbons and carbonyl groups. The concentration of gases at the speedup?ignition temperature stage is negatively correlated with carbonyl and carboxyl groups. Therefore, the crack?active?speedup temperature stage in high-temperature oxidation is dangerous, and oxidation should be controlled before this stage to reduce the loss of personnel and materials.

     

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