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共聚单体比例和反应温度对木质素油-硫复合材料的力学、热学及形态学性能的影响

The Influence of the Comonomer Ratio and Reaction Temperature on the Mechanical, Thermal, and Morphological Properties of Lignin Oil-Sulfur Composites.

作者信息

Tisdale Katelyn A, Kapuge Dona Nawoda L, Smith Rhett C

机构信息

Department of Chemistry and Center for Optical Materials Science and Engineering Technology, Clemson University, Clemson, SC 29634, USA.

出版信息

Molecules. 2024 Sep 5;29(17):4209. doi: 10.3390/molecules29174209.

Abstract

Although lignin is a plentiful biomass resource, it continually exists as an underutilized component of biomass material. Elemental sulfur is another abundant yet underutilized commodity produced as a by-product resulting from the refining of fossil fuels. The current study presents a strategy for preparing five durable composites via a simple one-pot synthesis involving the reaction of lignin oil and elemental sulfur. These lignin oil-sulfur composites LOS@T (where = wt. % sulfur, ranging from 80 to 90, and T represents the reaction temperature in °C) were prepared via the reaction of elemental sulfur and lignin oil (LO) with elemental sulfur. The resulting composites could be remelted and reshaped several times without the loss of mechanical strength. Mechanical, thermal, and morphological studies showed that LOS@T possesses properties competitive with some mechanical properties of commercial building materials, exhibiting favorable compressive strengths (22.1-35.9 MPa) and flexural strengths (5.7-6.5 MPa) exceeding the values required for many construction applications of ordinary Portland cement (OPC) and brick formulations. While varying the amount of organic material did not result in a notable difference in mechanical strength, increasing the reaction temperature from 230 to 300 °C resulted in a significant increase in compressive strength. The results reported herein reveal potential applications of both lignin and waste sulfur during the ongoing effort toward developing recyclable and sustainable building materials.

摘要

尽管木质素是一种丰富的生物质资源,但它一直是生物质材料中未得到充分利用的成分。元素硫是另一种作为化石燃料精炼副产品产生的丰富但未得到充分利用的商品。当前的研究提出了一种通过简单的一锅法合成来制备五种耐用复合材料的策略,该方法涉及木质素油与元素硫的反应。这些木质素油-硫复合材料LOS@T(其中=硫的重量百分比,范围为80至90,T代表反应温度,单位为°C)是通过元素硫与木质素油(LO)和元素硫的反应制备的。所得复合材料可以多次重熔和重塑而不会损失机械强度。力学、热学和形态学研究表明,LOS@T具有与一些商业建筑材料的机械性能相竞争的性能,表现出良好的抗压强度(22.1 - 35.9 MPa)和抗弯强度(5.7 - 6.5 MPa),超过了普通硅酸盐水泥(OPC)和砖配方的许多建筑应用所需的值。虽然改变有机材料的量不会导致机械强度有显著差异,但将反应温度从230°C提高到300°C会导致抗压强度显著增加。本文报道的结果揭示了在开发可回收和可持续建筑材料的持续努力中,木质素和废硫的潜在应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c333/11397338/56f77f205138/molecules-29-04209-g001.jpg

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