EVALUATING SUITABLE CHELATING AGENTS FOR Q STAGE IN TCF BLEACHING OF WHEAT STRAW ALKALINE PULPS

IF 1.3 4区 农林科学 Q2 MATERIALS SCIENCE, PAPER & WOOD Cellulose Chemistry and Technology Pub Date : 2023-09-29 DOI:10.35812/cellulosechemtechnol.2023.57.73
EVREN ERSOY KALYONCU, HÜSEYIN KIRCI, EMRAH PEŞMAN
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Abstract

The aim of this study was to determine an appropriate chelating agent for Q stage in the TCF bleaching sequence of soda-oxygen, soda, soda-anthraquinone and alkaline-sulfite wheat straw pulps prior to P bleaching stage. In order to study the possible effect of chelating agents, three different chelating agents (EDTA, DTPA and DTMPA) were used. To evaluate the impact of transition metal ions on P stage, the residual Mn, Fe and Cu ion concentrations were determined with atomic absorption spectrometry. Ash and silica contents of pulps have been determined for each chelating agent, separately. FTIR-ATR spectroscopy was used to demonstrate the bleaching effect. The results showed that the most appropriate chelating agents varied depending on the type of pulp. The best chelating effect was achieved with DTMPA for soda-oxygen pulp, EDTA for both soda and alkaline-sulfite pulps, and DTPA for soda-anthraquinone pulp.
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麦草碱性纸浆TCF漂白q期合适螯合剂的评价
本研究的目的是在P漂白阶段之前,确定碱-氧、碱-蒽醌和碱-亚硫酸盐麦草浆TCF漂白顺序中Q阶段的合适螯合剂。为了研究螯合剂的可能作用,采用了三种不同的螯合剂(EDTA、DTPA和DTMPA)。为了评价过渡金属离子对P级的影响,用原子吸收光谱法测定了残余Mn、Fe和Cu离子浓度。对每种螯合剂分别测定了纸浆中的灰分和二氧化硅含量。用FTIR-ATR光谱分析了漂白效果。结果表明,根据不同的牙髓类型,最合适的螯合剂是不同的。DTMPA对钠氧浆的螯合效果最好,EDTA对碱亚硫酸盐浆和碱亚硫酸盐浆的螯合效果最好,DTPA对碱蒽醌浆的螯合效果最好。
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来源期刊
Cellulose Chemistry and Technology
Cellulose Chemistry and Technology 工程技术-材料科学:纸与木材
CiteScore
2.30
自引率
23.10%
发文量
81
审稿时长
7.3 months
期刊介绍: Cellulose Chemistry and Technology covers the study and exploitation of the industrial applications of carbohydrate polymers in areas such as food, textiles, paper, wood, adhesives, pharmaceuticals, oil field applications and industrial chemistry. Topics include: • studies of structure and properties • biological and industrial development • analytical methods • chemical and microbiological modifications • interactions with other materials
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