老安装商黑林迪存储和加密面对卡夫木质素特征芒果Acacia

Faizatul Falah, Rikna Naila Salsabila, Wita Pradiani, Azizatul Karimah, Muhammad Adly Rahandi Lubis, A. Prianto, Nissa Nurfajrin Solihat, Fahriya Puspita Sari, Rita Rusman, Irawan Kusuma Wijaya, Widya Fatriasari
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引用次数: 0

摘要

本研究旨在研究芒果Acacia硫酸盐法制浆黑液的贮存时间和稀释度对分离木质素特性的影响。木质素分离通过1和2个分离步骤进行,使用HCL1M沉淀木质素,在分离前稀释。通过红外光谱分析了分离木质素的酸溶性木质素(ASL)、不溶性酸性木质素(AIL)、官能团、在二恶烷和氢氧化钠中的溶解度以及热性能。还评价了BL储存时间对所生产的木质素特性的影响。结果表明,BL储存时间越长,木质素产率越高。与不稀释的分离方法相比,稀释过程产生了更高的产率和灰分含量,分别高达84%和21%。在没有稀释的情况下,分离的AIL低于BL储存期间的稀释度。贮藏时间越长,木质素纯度越高。与两步分离木质素相比,一步分离中的稀释处理提高了产率和纯度。未经稀释的木质素分离的热稳定性(184⁰C和167⁰C分别用于1步和2步)高于稀释的分离木质素(154.8⁰C和160.9⁰C分别用于1步和2步)。FTIR光谱显示,稀释和未稀释的木质素分离物都具有相当的官能团。由于分离的木质素产量高、纯度高,BL稀释可能是从BL中分离木质素的一种可行的选择。此外,分离的木质蛋白的性质也受到BL储存的影响。
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Pengaruh Lama Penyimpanan dan Pengenceran Lindi Hitam Terhadap Karakteristik Lignin Kraft Acacia mangium
This study aimed to investigate the effects of storage time and dilution of black liquor (BL) from Acacia mangium kraft pulping on the characteristics of isolated Lignin. Lignin isolation was carried out by 1 and 2 steps of isolation using HCL 1M to precipitate Lignin, diluted before isolation. Isolated Lignin was analyzed for its acid-soluble Lignin (ASL), insoluble acid lignin (AIL), functional groups by FTIR, solubility in dioxane and NaOH and thermal properties. The effect of BL storage time was also evaluated on the characteristics of the Lignin produced. The results suggest that the longer BL is stored, the higher the lignin yield. When compared to the isolation approach without dilution, the dilution process produced a higher yield and ash content up to 84% and 21%, respectively. Without dilution, the AIL isolated was lower than the dilution during BL storage. The longer the storage duration, the higher the lignin purity. Compared to two-step lignin isolation, dilution treatment in single-step isolation improves yield and purity. The thermal stability of lignin isolation without dilution (184 ⁰C and 167 ⁰C for 1 and 2 steps, respectively) was higher than that of isolated Lignin with dilution (154.8 ⁰C and 160.9 ⁰C for 1 and 2 steps, respectively), according to thermal study. Both lignin isolates with and without dilution have comparable functional groups, as shown by FTIR spectra. Due to the high yield and purity of isolated Lignin, BL dilution could be a viable alternative in lignin isolation from BL. Moreover, the properties of isolated Lignin are also influenced by BL storage.
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