天然气化工
天然氣化工
천연기화공
NATURAL GAS CHEMICAL INDUSTRY
2014年
3期
5-9,35
,共6页
张明烨%李玉新%魏飞%王垚
張明燁%李玉新%魏飛%王垚
장명엽%리옥신%위비%왕요
SAPO-34%催化剂%积炭量%氢碳比%热重-质谱联用
SAPO-34%催化劑%積炭量%氫碳比%熱重-質譜聯用
SAPO-34%최화제%적탄량%경탄비%열중-질보련용
SAPO-34%catalyst%coke content%H/C ratio%TG-MS
提出了一种热重-质谱联用测定积炭催化剂焦炭量及焦炭H/C比的方法。该方法通过惰性气氛高温吹扫排除自由水及结合水对测定的影响,利用热重分析仪测定氧化条件下积炭SAPO-34催化剂的燃烧质量损失,得到焦炭含量;利用草酸钙标样标定质谱特征峰校正因子,结合积炭氧化产物的质谱检测结果,计算获得焦炭H/C的物质的量比。对聚丙烯(n(H)/n(C)=2)样品的测定验证了该方法的准确性。对两个不同焦炭含量的SAPO-34催化剂样品的多次检测显示结果重复性良好。测定结果显示,随着反应时间延长,SAPO-34催化剂焦炭含量增加、焦炭H/C比降低、催化剂吸湿能力降低。
提齣瞭一種熱重-質譜聯用測定積炭催化劑焦炭量及焦炭H/C比的方法。該方法通過惰性氣氛高溫吹掃排除自由水及結閤水對測定的影響,利用熱重分析儀測定氧化條件下積炭SAPO-34催化劑的燃燒質量損失,得到焦炭含量;利用草痠鈣標樣標定質譜特徵峰校正因子,結閤積炭氧化產物的質譜檢測結果,計算穫得焦炭H/C的物質的量比。對聚丙烯(n(H)/n(C)=2)樣品的測定驗證瞭該方法的準確性。對兩箇不同焦炭含量的SAPO-34催化劑樣品的多次檢測顯示結果重複性良好。測定結果顯示,隨著反應時間延長,SAPO-34催化劑焦炭含量增加、焦炭H/C比降低、催化劑吸濕能力降低。
제출료일충열중-질보련용측정적탄최화제초탄량급초탄H/C비적방법。해방법통과타성기분고온취소배제자유수급결합수대측정적영향,이용열중분석의측정양화조건하적탄SAPO-34최화제적연소질량손실,득도초탄함량;이용초산개표양표정질보특정봉교정인자,결합적탄양화산물적질보검측결과,계산획득초탄H/C적물질적량비。대취병희(n(H)/n(C)=2)양품적측정험증료해방법적준학성。대량개불동초탄함량적SAPO-34최화제양품적다차검측현시결과중복성량호。측정결과현시,수착반응시간연장,SAPO-34최화제초탄함량증가、초탄H/C비강저、최화제흡습능력강저。
A method using thermogravimetry-mass spectrometry (TG-MS) was proposed to measure the coke content and its H/C ratio on the coked catalyst, which used temperature programmed pretreatment in an inert gas to remove the adsorbed water and water of crystallization in the samples to avoid them affecting the measurement results, then used TG to determine the coke content of the coked catalyst by measuring the mass loss of the deactivated catalyst during temperature programmed oxidation, and used the thermal decomposition of a reference sample CaC2O4·H2O to get the correction factors for the MS signals, by which the H/C molar ratio could be calculated using the peak areas of the MS spectra when the coke was burned under an oxidizing circumstance. The measurement results for the polypropylene (H/C molar ratio =2) sample verified the accuracy of the proposed method, and the results from two coked SAPO-34 catalysts showed good reproducibility in repeated measurements. The results indicated that with the increase of time on stream in the flow reactor, the coke content of the SAPO-34 catalyst increased, while the H/C ratio of the coke and water adsorbed on the coked catalyst decreased.