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Demineralization of sludge-based adsorbent by post-washing for development of porosity and removal of dyes

机译:通过后洗使污泥基吸附剂脱矿质,以形成孔隙并去除染料

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Background: There is growing interest in employing sludge-based carbons (SC) from waste treatment as adsorbents. However, the application of SC is limited by its poor porosity caused by large amounts of minerals blocking the pores. It is thus, highly desirable to develop a post-washing process to remove the minerals in SC. Results: In this paper, SC was washed with deionized water (DW), hydrochloric acid (HCl), citric acid (CA) and a mixed solution of hydrochloric acid and citric acid (HCl-CA), respectively. Results showed that HCl-CA washing had the highest demineralization efficiency (63%), so that HCl-CA washed SC had the lowest ash content (32%) and largest total pore volume (0.455m3g-1), and presented the highest adsorption capacities of 319mgg-1 for acid orange II (AOII) and 250mgg-1 for methylene blue (MB). Conclusion: HCl-CA washing has the highest demineralization efficiency. The high efficiency is attributed to the synergetic effects of both protonation and chelation. Demineralization has a strong influence on the development of pore structures, which further influences adsorption capacity.
机译:背景:人们越来越多地将废物处理中的污泥基碳(SC)用作吸附剂。但是,SC的应用受到孔隙率差的限制,该孔隙率差是由于大量矿物质阻塞了孔隙而引起的。因此,非常需要开发一种后洗涤过程以除去SC中的矿物质。结果:在本文中,SC分别用去离子水(DW),盐酸(HCl),柠檬酸(CA)和盐酸和柠檬酸的混合溶液(HCl-CA)洗涤。结果表明,HCl-CA洗涤液的脱盐效率最高(63%),因此HCl-CA洗涤液的灰分最低(32%),总孔体积最大(0.455m3g-1),吸附率最高。酸性橙II(AOII)的容量为319mgg-1,亚甲基蓝(MB)的容量为250mgg-1。结论:HCl-CA洗涤具有最高的脱盐效率。高效归因于质子化和螯合的协同作用。脱盐对孔结构的发展有很大影响,这进一步影响了吸附能力。

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