生物乙醇生产废弃物中木质素用作砂浆添加剂的研究

IF 0.5 3区 数学 Q3 LOGIC Journal of Symbolic Logic Pub Date : 2020-09-28 DOI:10.23960/JSL38326-339
F. Falah, M. A. R. Lubis, Triastuti Triastuti, W. Fatriasari, F. P. Sari
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引用次数: 6

摘要

木质素是第二丰富的生物聚合物,仅次于纤维素,占木本植物干重的15-25%,全球年产能约为28.5万吨。本研究旨在利用从油棕空果串(OPEFB)生产生物乙醇的废料中获得的木质素作为砂浆添加剂。砂浆作为道路建设材料的使用越来越多,但其长时间硬化正在造成交通堵塞等问题。木质素可以作为添加剂,缩短砂浆的硬化时间。在不同的NaOH浓度和温度下,对木质素进行了预处理,用于生物乙醇生产。进一步测试了所生成砂浆的坍落度和易性及抗压强度。OPEFB中的木质素可以作为砂浆中的减水剂,与对照组相比,其和易性提高了24.4%。与木素磺酸盐相比,木质素的加入也能提高砂浆龄期7天和28天的抗压强度,并能控制各种水灰比。添加木质素后砂浆的凝结时间迅速增加,在7 d时达到80%,说明养护时间越来越短。当木质素掺入量为1%、水灰比为0.45、抗压强度为38时,混凝土抗压强度提高最为显著,可获得适宜和易性和优质混凝土。81 N/mm 2, 28 d。关键词:抗压强度,木质素,砂浆,OPEFB,减水剂
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Utilization of Lignin from the Waste of Bioethanol Production as a Mortar Additive
Lignin is the second most abundant biopolymer, exceeded only by cellulose, and comprises 15-25% of the dry weight of woody plants, with around 285,000 tons/year of production capacity globally. This study aims to utilize the lignin obtained from the waste of bioethanol production from oil palm empty fruit bunches (OPEFB) as a mortar additive. The use of mortar as a material for road construction is increasing, but its long time hardening is causing problems such as traffic jams. Lignin can be used as an additive to shorten the hardening time of mortar. Lignin was isolated at various NaOH concentrations and temperatures of OPEFB pretreatment for bioethanol production. The workability of the slump and compressive strength of mortars generated were further tested. Lignin from OPEFB  can be used as a water reducer in the mortar with improved workability as much as 24.4% compared to controls. The addition of lignin could also increase the compressive strength at the mortar age of 7 and 28 days compared to the commercial lignosulfonate and control on the various water-cement ratios. The setting time of mortar with the lignin addition increased rapidly, reaching up to 80% at the 7 days, indicating that curing time is getting shorter. The most remarkable improvement of compressive strength with suitable workability and high-quality concrete was reached by 1% lignin addition and 0.45 water-cement ratio with compressive strength 38 . 81 N/mm 2 at 28 days . Keywords: compressive strength, lignin, mortar, OPEFB, water reducer
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来源期刊
CiteScore
1.20
自引率
16.70%
发文量
79
审稿时长
6-12 weeks
期刊介绍: The Journal of Symbolic Logic publishes research in mathematical logic and its applications of the highest quality. Papers are expected to exhibit innovation and not merely be minor variations on established work. They should also be of interest to a broad audience. JSL has been, since its establishment in 1936, the leading journal in the world devoted to mathematical logic. Its prestige derives from its longevity and from the standard of submissions -- which, combined with the standards of reviewing, all contribute to the fact that it receives more citations than any other journal in logic.
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