Effects of Gamma-Synthesized Chitosan on Morphological, Thermal, Mechanical, and Heavy-Metal Removal Properties in Natural Rubber Foam as Sustainable and Eco-Friendly Heavy Metal Sorbents

Sustainability Pub Date : 2024-07-23 DOI:10.3390/su16156282
Thitiwan Intha, E. Wimolmala, P. Lertsarawut, K. Saenboonruang
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Abstract

The properties of natural rubber foam (NRF) containing gamma-synthesized chitosan (CS) powder were investigated to address the growing demand for efficient methods to treat industrial wastewater contaminated with heavy metals. The CS powder was prepared by irradiating chitin (CT) powder with varying doses of gamma rays (0–100 kGy), followed by deacetylation using 40% sodium hydroxide (NaOH) at 100 °C for 1 h. The resulting CS powders were then mixed with natural rubber latex (NRL) at different contents (0, 3, 6, and 9 parts per hundred parts of rubber by weight; phr) and processed using Dunlop techniques to prepare the foam samples. The experimental findings indicated that the degree of deacetylation (%DD) of the CS powder increased initially with gamma doses up to 60 kGy but then decreased at 80 and 100 kGy. In addition, when the CS powder was incorporated into the NRF samples, there were increases in total surface area, density, compression set, and hardness (shore OO), with increasing gamma doses and CS contents. Furthermore, the determination of heavy metal adsorption properties for Cu, Pb, Zn, and Cd showed that the developed NRF sample exhibited high adsorption capacities. For instance, their removal efficiencies reached 94.9%, 82.5%, 91.4%, and 97.0%, respectively, in NRF containing 9 phr of 60 kGy CS. Notably, all adsorption measurements were determined using 3 cm × 3 cm × 2.5 cm specimens submerged in respective metal solutions, with an initial concentration of 25 mg/L. However, the removal capacity per unit mass of the sample (mg/g) showed less dependencies on CS contents, probably due to the higher density of CS/NRF composites in comparison to pristine NRF, resulting in a smaller volume of the former being submerged in the solution, subsequently suppressing the effects from CS in the adsorption. Lastly, tests on the reusability of the developed NRF indicated that the samples could be reused for up to three cycles, with the Cu removal capacity remaining relatively high (83%) in the sample containing 9 phr of 60 kGy CS. The overall outcomes implied that the developed NRF with the addition of gamma-synthesized CS not only offered effective and eco-friendly heavy metal adsorption capacity to improve public health safety and the environment from industrial wastewater but also promoted greener and safer procedures for the synthesis/modification of similar substances through radiation technologies.
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伽马合成壳聚糖作为可持续和生态友好型重金属吸附剂对天然橡胶泡沫的形态、热、机械和重金属去除性能的影响
为了满足日益增长的高效处理重金属污染工业废水的需求,我们研究了含有伽马射线合成壳聚糖(CS)粉末的天然橡胶泡沫(NRF)的特性。通过不同剂量的伽马射线(0-100 kGy)辐照甲壳素(CT)粉末,然后使用 40% 氢氧化钠(NaOH)在 100 °C 下脱乙酰基 1 小时,制备出 CS 粉末。然后将制备出的 CS 粉末与不同含量的天然橡胶胶乳(NRL)(每百份橡胶重量的 0、3、6 和 9 份;phr)混合,并使用邓禄普技术进行处理,制备出泡沫样品。实验结果表明,随着伽马射线剂量达到 60 kGy,CS 粉末的脱乙酰度(%DD)开始上升,但在 80 和 100 kGy 时又开始下降。此外,当把 CS 粉末加入到 NRF 样品中时,随着伽马剂量和 CS 含量的增加,总表面积、密度、压缩永久变形和硬度(邵氏 OO)都有所增加。此外,重金属铜、铅、锌和镉吸附性能的测定结果表明,所开发的 NRF 样品具有很高的吸附能力。例如,在含有 9 个 60 kGy CS 的 NRF 中,它们的去除率分别达到 94.9%、82.5%、91.4% 和 97.0%。值得注意的是,所有吸附测量都是使用浸没在各自金属溶液中的 3 cm × 3 cm × 2.5 cm 试样测定的,初始浓度为 25 mg/L。不过,样品单位质量的去除能力(毫克/克)对 CS 含量的依赖性较小,这可能是由于 CS/NRF 复合材料的密度高于原始 NRF,导致前者浸没在溶液中的体积较小,从而抑制了 CS 对吸附的影响。最后,对开发的 NRF 的可重复使用性进行的测试表明,样品可重复使用长达三个周期,在含有 9 phr of 60 kGy CS 的样品中,铜去除能力保持在相对较高的水平(83%)。总体结果表明,所开发的添加了伽马合成 CS 的 NRF 不仅提供了有效和环保的重金属吸附能力,改善了工业废水中的公共卫生安全和环境,而且还促进了通过辐射技术合成/改性类似物质的更绿色、更安全的程序。
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