皮革生产中炭厂固废铬的回收与再利用

Md. Abdul Mottalib, Mohan Chandra, Umme Habiba Bodrun Naher, Md. Abdul Goni
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引用次数: 0

摘要

铬鞣是利用碱性铬盐在皮革加工中最流行和应用最广泛的方法。这些盐中只有60-70%与胶原蛋白反应形成皮革。其余的仍未反应,作为有毒废物释放,在许多发展中国家造成严重的环境污染。本研究从清洁环境的角度对固体废物的利用提出了一个重要的途径。利用硫酸从制革废液中提取出碱式硫酸铬,并在制革过程中循环使用。采用原子吸收光谱法和元素分析对提取的固体污泥进行了铬(III)分离前后的检测,结果表明,鞣场污泥中铬的提取率为97%。回收的硫酸铬用于山羊皮加工。采用回收的碱式硫酸铬溶液,以及新鲜和回收的碱式硫酸铬溶液的组合分别进行了批量实验。以新鲜碱式硫酸铬为对照。利用场发射扫描电镜(FESEM)和热重分析(TGA)对最终加工皮革的结构和形貌进行了表征。在FESEM研究中证实了所有加工皮革的相同结构形态。所有成品皮革的物理和化学特性都非常相似。TGA分析数据表明,用回收铬处理的皮革热稳定性较好。这些研究结果表明,从固体污泥中分离重要化学物质并重新利用它们是一种新的潜在努力。该技术简单、经济、环保、可持续,减少了制革铬废弃物对环境的污染。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Recovery and Reuse of Chromium from Tan Yard Solid Waste in Leather Manufacturing
Chrome tanning is the most popular and widely used method utilizing basic chromium salts in leather processing. Only 60-70% of these salts react with collagen to form leather. The rest remains unreacted being released as toxic waste and causing severe environmental pollution in many developing countries. In the current study, a significant approach was made to utilize solid waste with a clean environment perspective. The chromium was extracted as basic chromium sulfate using H2SO4 from tannery waste and reused in the leather manufacturing procedure. Extracted solid sludge was examined by Atomic Absorption Spectrometry and elemental analysis before and after the separation of chromium (III). It revealed that 97% of chromium was extracted from tan yard sludge. Recovered chromium sulfate was reused in goat skin processing. Batch experiments were carried out by applying recovered basic chromium sulfate, and a combination of fresh and recovered basic chromium sulfate solutions separately. Fresh basic chromium sulfate was used as the control method. The structure and morphology of the final processed leather were characterized by Field Emission Scanning Electron Microscope (FESEM) and Thermogravimetric analysis (TGA). The identical structural morphologies of all processed leather were confirmed in the FESEM study. The physical and chemical characteristics of all finished leather were found very similar. The TGA analysis data proved that raw leather processed by recovered chromium is thermally more stable than others. These research findings signify a new potential effort of separating important chemicals from solid sludge and reusing them. This technique is simple, cost-effective, eco-friendly, and sustainable as it reduces environmental pollution from tannery chromium waste.
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来源期刊
Textile  Leather Review
Textile Leather Review Materials Science-Materials Science (miscellaneous)
CiteScore
1.60
自引率
0.00%
发文量
27
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