Department of Civil Engineering, Indian Institute of Technology Guwahati, India.
Department of Chemical Engineering, Indian Institute of Technology Guwahati, India.
J Hazard Mater. 2018 Jan 5;341:207-217. doi: 10.1016/j.jhazmat.2017.07.043. Epub 2017 Jul 29.
A new carboxylic bio-resin was synthesized from raw arecanut husk through mercerization and ethylenediaminetetraacetic dianhydride (EDTAD) carboxylation. The synthesized bio-resin was characterized using thermogravimetric analysis, field emission scanning electron microscopy, proximate & ultimate analyses, mass percent gain/loss, potentiometric titrations, and Fourier transform infrared spectroscopy. Mercerization extracted lignin from the vesicles on the husk and EDTAD was ridged in to, through an acylation reaction in dimethylformamide media. The reaction induced carboxylic groups as high as 0.735mM/g and a cation exchange capacity of 2.01meq/g functionalized mercerized husk (FMH). Potentiometric titration data were fitted to a newly developed single-site proton adsorption model (PAM) that gave pKa of 3.29 and carboxylic groups concentration of 0.741mM/g. FMH showed 99% efficiency in Pb(II) removal from synthetic wastewater (initial concentration 0.157mM), for which the Pb(II) binding constant was 1.73×10L/mol as estimated from modified PAM. The exhaustion capacity was estimated to be 18.7mg/g of FMH. Desorption efficiency of Pb(II) from exhausted FMH was found to be about 97% with 0.1N HCl. The FMH simultaneously removed lead and cadmium below detection limit from a real lead acid battery wastewater along with the removal of Fe, Mg, Ni, and Co.
一种新的羧酸生物树脂是通过槟榔果壳的碱处理和乙二胺四乙酸二酐(EDTAD)的羧化反应从槟榔果壳中合成的。采用热重分析、场发射扫描电子显微镜、元素分析、质量损失/增益、电位滴定和傅里叶变换红外光谱对合成的生物树脂进行了表征。碱处理从壳聚糖上的泡囊中提取木质素,EDTAD 通过酰化反应进入壳聚糖中。反应诱导了高达 0.735mM/g 的羧酸基团和 2.01meq/g 的功能化碱处理果壳(FMH)的阳离子交换容量。电位滴定数据拟合到新开发的单质子吸附模型(PAM),得到 pKa 值为 3.29 和羧酸基团浓度为 0.741mM/g。FMH 对合成废水中的 Pb(II)(初始浓度为 0.157mM)的去除效率达到 99%,根据修正的 PAM 估算,Pb(II)结合常数为 1.73×10L/mol。估计 FMH 的耗尽容量为 18.7mg/g。从耗尽的 FMH 中解吸 Pb(II)的效率约为 97%,使用 0.1N HCl。FMH 同时从实际的铅酸电池废水中去除了 Pb(II)和 Cd(II),检测限以下,同时去除了 Fe、Mg、Ni 和 Co。