2 .石油残渣低分子有机化合物改性沥青的制备。甲醛改性焦油

IF 1 Q4 CHEMISTRY, MULTIDISCIPLINARY Chemistry & Chemical Technology Pub Date : 2021-11-25 DOI:10.23939/chcht15.04.608
V. Gunka, Y. Prysiazhnyi, Y. Hrynchuk, Iurii Sidun, Yuriy Demchuk, O. Shyshchak, O. Poliak, M. Bratychak
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引用次数: 9

摘要

在催化剂的存在下,研究了甲醛在37%水溶液中对焦油的化学改性。以盐酸、硫酸、氢氧化钠和酸焦油为催化剂。测定了催化剂的性质、用量、温度、工艺时间和初始组分比对其软化点、渗透点、脆点和对碎石的附着力的影响。红外光谱分析证实了改性焦油的结构。测定了结构-基团组成。以甲苯和改性焦油为原料,以盐酸为催化剂合成了芳烃甲醛树脂。用红外光谱对合成的树脂进行了表征。提出了用甲醛对焦油进行改性的化学反应。
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Production of Bitumen Modified with Low-Molecular Organic Compounds from Petroleum Residues. 3. Tar Modified with Formaldehyde
The chemical modification of tar with formaldehyde as 37% aqueous solutionhas been studied in the presence of the catalysts. Hydrochloric acid, sulfuric acid, sodium hydroxide and acid tar were used as the catalysts. The effect of the catalyst nature and amount, as well as temperature, process time and initial components ratio on the softening point, penetration, brittle point and adhesion to crushed stone has been determined. The structure of the modified tars was confirmed by IR spectroscopy. The structural-group composition was determined. Arene-formaldehyde resins have been synthesized on the basis of toluene and modified tars using hydrochloric acid as a catalyst. The synthesized resins were characterized using IR spectroscopy. The chemistry of the tar modification with formaldehyde has been proposed.
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来源期刊
Chemistry & Chemical Technology
Chemistry & Chemical Technology CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
1.70
自引率
44.40%
发文量
60
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