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EXPERIMENTAL INVESTIGATION OF NO FROM PULVERIZED CHAR COMBUSTION

机译:粉状炭燃烧中NO的实验研究

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NO formation and reduction during pulverized char combustion in the temperature range 850-1150°C have been investigated in fixed-bed combustion experiments. Chars from a high-volatile bituminous coal and an anthracite have been used. Under single-particle conditions the selectivity for NO formation from combustion of char from both fuel types lies in the range 65-100%. The NO formation selectivity under single-particle conditions was observed to be lowest at 850°C, to have values close to 100% at 1050 and 1150°C, and to be independent of O_2 concentration. When conditions deviate from single-particle conditions, net NO formation is significantly lower due to NO reduction taking place simultaneously with NO formation. Rate expressions for NO reduction on char both in the presence and in the absence of O_2 have been determined. For bituminous coal char, these rates are 10-100 times more rapid than values previously reported in literature, but are consistent with reburn-type experiments employing char as fuel. This discrepancy is mainly attributed to rapid char deactivation prior to measuring of NO reduction rates in previous determinations. Shortly after pyrolysis, the effective NO-char reaction rate for pulverized bituminous coal char in the temperature range 850-1150°C has been found to be given by r_(NO) = 6·10~6 (m~3/kg C·s)· e~(14800/TK) ·[char C] ·[NO]
机译:在固定床燃烧实验中已研究了在850-1150°C的温度范围内粉状炭燃烧过程中NO的形成和还原。已经使用了高挥发性烟煤和无烟煤的焦炭。在单颗粒条件下,两种燃料的焦炭燃烧生成NO的选择性在65-100%的范围内。在单颗粒条件下观察到的NO生成选择性在850°C时最低,在1050和1150°C时接近100%,并且与O_2浓度无关。当条件偏离单颗粒条件时,由于NO还原与NO生成同时发生,因此净NO生成显着降低。已经确定了在存在和不存在O_2的情况下焦炭上NO还原的速率表达式。对于烟煤炭,这些速率比以前文献中报道的值快10-100倍,但与使用炭作为燃料的重烧型实验一致。这种差异主要归因于在先前确定中测量NO还原率之前快速的炭钝化。热解后不久,发现在850-1150°C的温度范围内,粉状烟煤的有效NO焦反应速率为r_(NO)= 6·10〜6(m〜3 / kg C· s)·e〜(14800 / TK)·[字符C]·[否]

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