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首页> 外文期刊>ACS Omega >Utilization of Biomass Fly Ash for Improving Quality of Organic Dye-Contaminated Water
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Utilization of Biomass Fly Ash for Improving Quality of Organic Dye-Contaminated Water

机译:生物质粉煤灰利用改善有机染料污染水的质量

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Development of innovative methodologies to convert biomass ash into useful materials is essential to sustain the growing use of biomass for energy production. Herein, a simple chemical modification approach is employed to functionalize biomass fly ash (BFA) with 3-aminopropyltriethoxy silane (APTES) to develop an inexpensive and efficient adsorbent for water remediation. The amine-functionalized BFA (BFA–APTES) was fully characterized by employing a range of characterization techniques. Adsorption behavior of BFA–APTES was evaluated against two anionic dyes, namely, alizarin red S (ARS) and bromothymol blue (BTB). In the course of experimental data analysis, the computation tools of data fitting for linear and nonlinear form of Langmuir, Freundlich, and the modified Langmuir–Freundlich adsorption isotherms were used with the aid of Matlab R2019b. In order to highlight the misuse of linearization of adsorption models, the sum of the squares of residues (SSE) values obtained from nonlinear models are compared with R ~(2) values obtained from the linear regression. The accuracy of the data fitting was checked by the use of SSE as an error function instead of the coefficient of determination, R ~(2). The dye adsorption capacity of BFA–APTES was also compared with the nonfunctionalized BFA. The maximum adsorption capacities of BFA–APTES for ARS and BTB dye molecules were calculated to be around 13.42 and 15.44 mg/g, respectively. This value is approximately 2–3 times higher than the pristine BFA. A reasonable agreement between the calculated and experimental values of q _(e) obtained from the nonlinear form of kinetic models verified the importance of using equations in their original form. The experimentally calculated thermodynamic parameters including molar standard Gibbs free energy (Δ_(ad)G m) 0)) and molar standard enthalpy change (Δ_(ad)H m) 0)) reflected that the process of adsorption of dye molecules on the BFA–APTES adsorbent was spontaneous and exothermic in nature. Moreover, the used BFA–APTES adsorbent could be regenerated and reused for several cycles with significant dye adsorption capacity. The remediation capability of the BFA–APTES adsorbent against ARS dye was also demonstrated by packing a small column filled with the BFA–APTES adsorbent and passing a solution of ARS through it. Overall, we provide a simple and scalable route to convert BFA into an efficient adsorbent for water remediation applications.
机译:开发创新方法,将生物质灰转化为有用的材料对于维持生物质的越来越多的能源生产而言是必不可少的。这里,使用简单的化学改性方法用3-氨基丙基三乙氧基硅烷(Aptes)官能化生物质粉煤灰(BFA),以开发廉价且有效的水预热吸附剂。通过采用一系列表征技术,完全表征了胺官能化的BFA(BFA-Aptes)。对两个阴离子染料评估BFA-Aptes的吸附行为,即茜素红S(ARS)和溴酚蓝(BTB)。在实验数据分析过程中,借助于Matlab R2019B,使用了Langmuir,Freundlich的线性和非线性形式的数据配件的计算工具。为了突出吸附模型的线性化的误导,与从线性回归获得的I> R〜(2)值进行比较了从非线性模型获得的残基(SSE)值的总和。通过使用SSE作为误差函数来检查数据拟合的准确性,而不是确定系数, r〜(2)。与非功能化BFA相比,BFA-Aptes的染料吸附能力也与非功能化BFA进行了比较。 ARS和BTB染料分子的BFA-Aptes的最大吸附容量分别计算为约13.42和15.44mg / g。该值比Pristine BFA高约2-3倍。从非线性形式的非线性形式获得的 Q _(e)的计算和实验值之间的合理一致性验证了使用原始形式的等式的重要性。实验计算的热力学参数,包括摩尔标准Gibbs自由能(Δ_(Ad)

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