Nitric acid-potassium hydroxide fractionation of rice straw: an integrated biorefinery initiative

IF 0.9 4区 农林科学 Q3 MATERIALS SCIENCE, PAPER & WOOD Nordic Pulp & Paper Research Journal Pub Date : 2023-01-31 DOI:10.1515/npprj-2022-0073
M. Mostafizur Rahman, Nur-Al-Sarah Rafsan, Jannatun Nayeem, Razia Sultana Popy, Mohammad Moniruzzaman, M. Sarwar Jahan
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Abstract

Abstract Pulping of rice straw was studied using mild nitric acid in mild conditions. Spent nitric acid was chosen as soil nutrient rather than followed by the liquor recovery. The rice straw was treated with 11.03% nitric acid at 90 °C for 3 h, yielded 53.09% pulp. Nitric acid treated rice straw pulp had high residual lignin and minerals. However, further treatment with 7% potassium hydroxide reduced the residual lignin and produced pulp with kappa number 20.36. The papermaking properties of the nitric acid followed by KOH treated pulp showed better quality than the nitric acid pulp. The spent nitric acid liquor was reused repeatedly, pulp yield decreased and residual lignin content increased in each step of spent nitric acid reusing. The spent nitric acid liquor and potassium hydroxide liquor-mixed together to get a neutral effluent liquor which was rich with potassium, nitrogen and biomass. The nutritional capacity of the effluent liquor was assessed by incubation with control soil. The labile form of organic carbon, nitrogen, potassium phosphorous and iron increased in the incubated soil.
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硝酸-氢氧化钾稻秆分馏:综合生物炼制的倡议
摘要研究了在温和条件下,用温和硝酸对稻秆进行制浆。采用废硝酸作为土壤养分,不采用废液回收。用11.03%的硝酸在90℃下处理3 h,得浆率为53.09%。硝酸处理后的稻草浆木质素和矿物质残留量较高。7%氢氧化钾处理后木质素残留量减少,纸浆kappa值为20.36。硝酸后KOH处理纸浆的造纸性能优于硝酸处理纸浆。废硝酸液重复利用,在废硝酸重复利用的各个步骤中,纸浆得率下降,残木质素含量增加。将硝酸废液与氢氧化钾废液混合,得到富含钾、氮和生物质的中性废液。通过与对照土壤的孵育,评价了出水的营养能力。土壤中有机碳、氮、钾、磷、铁的活性形态增加。
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来源期刊
Nordic Pulp & Paper Research Journal
Nordic Pulp & Paper Research Journal 工程技术-材料科学:纸与木材
CiteScore
2.50
自引率
16.70%
发文量
62
审稿时长
1 months
期刊介绍: Nordic Pulp & Paper Research Journal (NPPRJ) is a peer-reviewed, international scientific journal covering to-date science and technology research in the areas of wood-based biomass: Pulp and paper: products and processes Wood constituents: characterization and nanotechnologies Bio-refining, recovery and energy issues Utilization of side-streams from pulping processes Novel fibre-based, sustainable and smart materials. The editors and the publisher are committed to high quality standards and rapid handling of the peer review and publication processes. Topics Cutting-edge topics such as, but not limited to, the following: Biorefining, energy issues Wood fibre characterization and nanotechnology Side-streams and new products from wood pulping processes Mechanical pulping Chemical pulping, recovery and bleaching Paper technology Paper chemistry and physics Coating Paper-ink-interactions Recycling Environmental issues.
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