低品位土耳其高岭土除硫研究

IF 1.6 4区 工程技术 Q3 ENGINEERING, CHEMICAL
Ilker Erkan, Ibrahim Alp
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引用次数: 0

摘要

本研究考察了NaOH直接浸出法对土耳其Balıkesir地区高岭土矿石中硫的去除效果。在硫去除研究之前进行了表征研究,以启发结构和起源硫的来源。表征研究表明,矿石主要成分为石英,硫主要来源于明矾石矿物,内含蛋白石。浸出过程在不同的NaOH浓度(1.5-2 M)、温度(95±2°C)和持续时间(2 h)下在温度控制的封闭系统中进行测试,以保持一致性。结果表明,在最佳条件下明矾石中的硫完全(100%)脱除。然而,由于高岭石与明矾石的溶解,造成了显著的质量损失(18.15%-45%),这表明该方法在除硫方面是有效的,但在高岭石保留方面也存在潜在的缺点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sulfur Removal From Low-Grade Turkish Kaolin Clay

This study investigated the effects of NaOH direct leaching for sulfur removal from a kaolin ore from the Balıkesir region, Turkey. Characterization studies were undertaken before sulfur removal studies to enlighten the structure and originate the source of sulfur. The characterization studies revealed that the ore was mainly composed of quartz, with sulfur originating from alunite minerals with opal inclusions. The leaching process was tested under varying NaOH concentrations (1.5–2 M), temperatures (95 ± 2°C), and durations (2 h) in temperature-controlled closed systems to maintain consistency. Results demonstrated complete (100%) sulfur removal from alunite under optimal conditions. However, significant mass losses (18.15%–45%) occurred because of the dissolution of kaolinite along with alunite, indicating the method's effectiveness in sulfur removal but also its potential drawbacks for kaolinite retention.

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来源期刊
自引率
11.10%
发文量
111
期刊介绍: Asia-Pacific Journal of Chemical Engineering is aimed at capturing current developments and initiatives in chemical engineering related and specialised areas. Publishing six issues each year, the journal showcases innovative technological developments, providing an opportunity for technology transfer and collaboration. Asia-Pacific Journal of Chemical Engineering will focus particular attention on the key areas of: Process Application (separation, polymer, catalysis, nanotechnology, electrochemistry, nuclear technology); Energy and Environmental Technology (materials for energy storage and conversion, coal gasification, gas liquefaction, air pollution control, water treatment, waste utilization and management, nuclear waste remediation); and Biochemical Engineering (including targeted drug delivery applications).
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