化工进展
化工進展
화공진전
CHEMICAL INDUSTRY AND ENGINEERING PROGRESS
2012年
12期
2766-2770
,共5页
抗氧剂%硫代二甘醇%溶剂法%合成工艺
抗氧劑%硫代二甘醇%溶劑法%閤成工藝
항양제%류대이감순%용제법%합성공예
antioxidant%thio-diethylene%solvent%synthetic process
本试验以硫代二甘醇和3,5-二叔丁基-4-羟基苯基丙酸甲酯(又称3,5-甲酯)为原料用溶剂法合成2,2-硫代双[3-(3,5-二叔丁基-4-羟基苯基)丙酸甲酯],作为燃油抗氧剂,并对合成过程中的催化剂量、温度、酯醇摩尔比等对收率的影响做了较深入研究。结果表明合成催化剂用量应为3,5-甲酯质量分数的3.5%,温度范围应在155~160℃,原料摩尔比为1.77∶1(3,5-甲酯∶硫代二甘醇)。根据Fenton反应原理用分光光度法对抗氧剂进行表征,自由基消除率达到99%以上,并将抗氧剂应用到汽油中进行诱导时间的测试,获得较好的抗氧化效果。
本試驗以硫代二甘醇和3,5-二叔丁基-4-羥基苯基丙痠甲酯(又稱3,5-甲酯)為原料用溶劑法閤成2,2-硫代雙[3-(3,5-二叔丁基-4-羥基苯基)丙痠甲酯],作為燃油抗氧劑,併對閤成過程中的催化劑量、溫度、酯醇摩爾比等對收率的影響做瞭較深入研究。結果錶明閤成催化劑用量應為3,5-甲酯質量分數的3.5%,溫度範圍應在155~160℃,原料摩爾比為1.77∶1(3,5-甲酯∶硫代二甘醇)。根據Fenton反應原理用分光光度法對抗氧劑進行錶徵,自由基消除率達到99%以上,併將抗氧劑應用到汽油中進行誘導時間的測試,穫得較好的抗氧化效果。
본시험이류대이감순화3,5-이숙정기-4-간기분기병산갑지(우칭3,5-갑지)위원료용용제법합성2,2-류대쌍[3-(3,5-이숙정기-4-간기분기)병산갑지],작위연유항양제,병대합성과정중적최화제량、온도、지순마이비등대수솔적영향주료교심입연구。결과표명합성최화제용량응위3,5-갑지질량분수적3.5%,온도범위응재155~160℃,원료마이비위1.77∶1(3,5-갑지∶류대이감순)。근거Fenton반응원리용분광광도법대항양제진행표정,자유기소제솔체도99%이상,병장항양제응용도기유중진행유도시간적측시,획득교호적항양화효과。
The thio-diethylene glycol and 3,5-di-tert-butyl-4-hydroxyphenyl propionate are used to synthesize 2,2-thio-bis-(3,5-di-tert-butyl-4-hydroxyphenyl) propionate in solvent.The effects of technique parameters on the product yield were studied,including catalyst loading,reaction temperature,and the ratio of raw material.Results show that catalyst loading should be 3.5% of 3,5di-tert-butyl-4-hydroxyphenyl propionate in mass fraction,reaction temperature should be within 155~160 ℃,the mole ratio of raw material should be 1.77∶1(3,5-di-tert-butyl-4-hydroxyphenyl propionate:thio-diethylene glycol).Spectrophotometry was used to test the rate of scavenging effects of the hydroxyl free radical based on Fenton Oxidation experiment and results shows that the rate of scavenging effects of the hydroxyl free radical was higher than 99%.Antioxidant was also applied to gasoline and oxidation induction time was measured.The result showed the great effect of antioxidant 2,2-thio-bis-(3,5-di-tert-butyl-4-hydroxyphenyl) was achieved when it was applied to gas.