Study on the Separation of M-Xdi Products by Non-Phosgene Pyrolysis System

Peilin Zhou, Peng He, Yang Cao, Liguo Wang
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Abstract

m-Xylylene diisocyanate (m-XDI) is a raw material wildly used in the manufacture of high value-added polyurethane products and others. m-XDI is a heat-sensitive and easily polymerized substance, and obtaining high-purity m-XDI in industry is challenging, difficult and costly. In this paper, a coupling process of crystallization distillation was proposed to meet the challenge. First, an experiment was carried out to produce a simulated liquid close to the actual pyrolysis liquid components by the reaction of XDI and ethanol. Secondly, two key factors, the final crystallization temperature and the concentration of the m-XDI reaction liquid, which have great effect on the crystallization process of the m-XDI reaction liquid, are studied. Combined with m-XDI saturated vapor pressure and m-XDI-TLB VLE data, the process of m-XDI separation by crystallization distillation coupling was simulated (as shown in the Figure 1), and the process was compared with that of m-XDI separation by distillation alone. The purity of 99.1% m-XDI was obtained by the coupled process of crystal distillation.
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非光气热解系统分离M-Xdi产物的研究
间二异氰酸酯(m-XDI)是一种广泛用于制造高附加值聚氨酯产品和其他产品的原料。m-XDI是一种热敏性、易聚合的物质,在工业上获得高纯度的m-XDI具有挑战性、难度大、成本高。本文提出了一种结晶精馏的耦合过程来应对这一挑战。首先,通过XDI与乙醇的反应制备出接近实际热解液组分的模拟液体。其次,研究了最终结晶温度和m-XDI反应液浓度这两个对m-XDI反应液结晶过程影响较大的关键因素。结合m-XDI饱和蒸汽压和m-XDI- tlb VLE数据,模拟结晶精馏耦合分离m-XDI的过程(如图1所示),并与m-XDI单独蒸馏分离过程进行比较。通过结晶精馏耦合工艺,m-XDI的纯度为99.1%。
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