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Multi‑functional Biochar Novel Surface Chemistry for Efficient Capture of Anionic Congo Red Dye: Behavior and Mechanism

机译:高效捕获阴离子刚果红染料的多功能生物炭新型表面化学:行为和机理

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摘要

Anionic ionizable synthetic dyes can exert specific toxicity in human health as well as disorder aquatic life. Plus it is quite difficult to remove them by applying conventional adsorbents having negative surface charges. To resolve this crucial issue, the multi-functionalized biochar having novel surface chemistry was tested to make it more efficient for Congo red (CR) anionic dye elimination from an aqueous solution even under severe acidic conditions as well as in the presence of unwanted co-present constituents. The prepared amino grafted biochar (AMBC) showed maximum monolayer adsorption capacity of 89.3 mg g(-1) at 20 degrees C due to the presence of both-COOH and-NH2 protonated groups. In order to support the successful involvement of both grafted dominantly available amino group and the fraction of residual-COOH group present on AMBC surface for CR dye uptake, the TEM and XPS analysis were employed. On behalf of the adsorption kinetics, isotherms and thermodynamics studies as well as XPS results, it was deduced that CR anionic dye adsorption onto AMBC was exothermic and spontaneous, and the anticipated CR dye removal mechanism was referred to chemisorption such as electrostatic interactions. Desorption experiments were conducted to ensure the feasibility of the exhausted AMBC adsorbent regeneration and its reusability potential. These research findings provide an environmentally friendly adsorbent having versatile applications and inexpensive adsorbent for potential elimination of anionic ionizable CR dye from aqueous solution.
机译:阴离子可离子化的合成染料可对人类健康以及水生生物造成特定毒性。另外,通过施加具有负表面电荷的常规吸附剂来去除它们是非常困难的。为解决这一关键问题,对具有新型表面化学特性的多功能生物炭进行了测试,以使其即使在严重的酸性条件下以及在存在不希望的助剂存在下,也能更有效地从水溶液中去除刚果红(CR)阴离子染料。目前的成分。制备的氨基接枝生物炭(AMBC)在20摄氏度时由于存在COOH和-NH2质子化基团而显示出最大单层吸附能力为89.3 mg g(-1)。为了支持嫁接的显性有效氨基和AMBC表面上残留的残留COOH基团成功吸收CR染料,采用了TEM和XPS分析。代表吸附动力学,等温线和热力学研究以及XPS结果,推论出CR阴离子染料在AMBC上的吸附是放热的和自发的,预期的CR染料去除机理被称为化学吸附,例如静电相互作用。进行解吸实验以确保耗尽AMBC吸附剂再生的可行性及其可重复使用性。这些研究结果提供了一种具有广泛用途的环保吸附剂和廉价的吸附剂,用于潜在地从水溶液中消除阴离子可电离的CR染料。

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