Department of Forestry, Michigan State University, 480 Wilson Road, East Lansing, MI 48824, USA.
Department of Chemical Engineering and Materials Science, Michigan State University, East Lansing, MI 48824, USA.
Molecules. 2022 Apr 14;27(8):2535. doi: 10.3390/molecules27082535.
In this study, nineteen unmodified lignins from various sources (hardwood, softwood, wheat straw, and corn stover) and isolation processes (kraft, soda, organosolv, sulfite, and enzymatic hydrolysis) were used to replace 30 wt.% of petroleum-based polyol in rigid polyurethane/polyisocyanurate (PUR/PIR) foam formulations. Lignin samples were characterized by measuring their ash content, hydroxyl content (Phosphorus Nuclear Magnetic Resonance Spectroscopy), impurities (Inductively Coupled Plasma), and pH. After foam formulation, properties of lignin-based foams were evaluated and compared with a control foam (with no lignin) via cell morphology, closed-cell content, compression strength, apparent density, thermal conductivity, and color analysis. Lignin-based foams passed all measured standard specifications required by ASTM International C1029-15 for type 1 rigid insulation foams, except for three foams. These three foams had poor compressive strengths, significantly larger cell sizes, darker color, lower closed-cell contents, and slower foaming times. The foam made with corn stover enzymatic hydrolysis lignin showed no significant difference from the control foam in terms of compressive strength and outperformed all other lignin-based foams due to its higher aliphatic and -hydroxyphenyl hydroxyl contents. Lignin-based foams that passed all required performance testing were made with lignins having higher pH, potassium, sodium, calcium, magnesium, and aliphatic/-hydroxyphenyl hydroxyl group contents than those that failed.
在这项研究中,十九种未经修饰的木质素来自不同的来源(硬木、软木、麦草和玉米秸秆)和分离过程( kraft、苏打、有机溶剂、亚硫酸盐和酶解)被用来替代 30wt%的石油基多元醇在硬质聚氨酯/聚异氰脲酸酯(PUR/PIR)泡沫配方中。木质素样品通过测量其灰分、羟基含量(磷核磁共振光谱)、杂质(电感耦合等离子体)和 pH 值来进行表征。在泡沫配方后,通过细胞形态、闭孔含量、压缩强度、表观密度、导热系数和颜色分析来评估木质素基泡沫的性能,并与对照泡沫(不含木质素)进行比较。木质素基泡沫通过了 ASTM 国际 C1029-15 对 1 型硬质绝缘泡沫的所有测量标准要求,除了三种泡沫。这三种泡沫的压缩强度较差,孔径较大,颜色较深,闭孔含量较低,发泡时间较慢。用玉米秸秆酶解木质素制成的泡沫在压缩强度方面与对照泡沫无显著差异,由于其较高的脂肪族和 -羟基苯基羟基含量,优于所有其他木质素基泡沫。通过所有性能测试的木质素基泡沫的 pH 值、钾、钠、钙、镁和脂肪族/-羟基苯基羟基含量均高于不合格的木质素基泡沫。