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首页> 外文期刊>Journal of the Taiwan Institute of Chemical Engineers >Mechanism, adsorption kinetics and applications of carbonaceous adsorbents derived from black liquor sludge
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Mechanism, adsorption kinetics and applications of carbonaceous adsorbents derived from black liquor sludge

机译:含有黑液污泥的碳质吸附剂的机理,吸附动力学和应用

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Pretreatment processes in second generation bioethanol production produce a lignin-based black liquor. Polyaluminum chloride (PACI) was employed to treat black liquor using coagulation, in which the generated sludge was converted to a carbonaceous adsorbent. The bioethanol black liquor sludge-based carbonaceous adsorbent (BBLS-CA) was characterized physically, and its adsorption mechanism, kinetics, and ability to absorb methylene blue (MB) were evaluated. Additional studies revealed the performance of BBLS-CA to treat peat water and landfill leachate. The results demonstrate that BBLS-CA decolorized a 100 mg/I solution of MB by 98% within 30 min. MB components reclaimed from BBLS-CA reveal the presence of NH2, substituted and p-disubstituted benzene rings, and =CH2, suggesting that physical and chemical mechanisms are operative during adsorption. Isotherm analysis reveals that adsorption equilibrium followed the Langmuir model and exhibited pseudo second-order kinetic behavior. BBLS-CA adsorbed 100% iron and manganese; and remediated 72% color and 67% COD in peat water, as well as 57% COD in landfill leachate. This report highlights a by-product from black liquor sludge that can be applied to the removal of wastewater pollutants. Further, the development of method is required to obtain activated carbon which fulfills standard properties of activated carbon. (C) 2017 Taiwan Institute of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:第二代生物乙醇生产中的预处理过程产生了一种基于木质素的黑液。使用聚氯化铝(PACI)用凝血处理黑液,其中产生的污泥转化为碳质吸附剂。基于生物乙醇黑液污泥的碳质吸附(BBLS-CA)在物理上表征,并评估其吸附机理,动力学和吸收亚甲基蓝(MB)的能力。额外的研究揭示了BBLS-CA治疗泥炭水和垃圾填埋场渗滤液的性能。结果表明,在30分钟内,BBLS-CA将MB的100mg / i溶液脱落98%。从BBLS-CA回收的MB组分显示NH 2的存在,取代和P-二取代的苯环,= CH2,表明物理和化学机制在吸附过程中是可操作的。等温分析表明,吸附均衡跟随Langmuir模型,并表现出伪二阶动力学行为。 BBLS-CA吸附100%铁和锰;并补救了72%的泥炭水中的72%和67%COD,以及垃圾填埋液中的57%COD。本报告突出了黑液污泥的副产品,可以应用于去除废水污染物。此外,方法的发展是必需的,以获得符合活性炭的标准性质的活性炭。 (c)2017台湾化工工程师研究所。 elsevier b.v出版。保留所有权利。

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