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采用响应面法在固定床柱中利用水溶液中的废弃生物材料修复铅毒性。

Remediation of lead toxicity with waste-bio materials from aqueous solutions in fixed-bed column using response surface methodology.

作者信息

Manzoor Shah Aanisa, Mustafa Khan Inayat, Du Zhenjie, Rasool Rehana, Habib Kant Raihana, Mir Shakeel, Sheikh Tahir A, Jeelani Wani Fehim, Ayoub Bhat M, Bhat Javid A, Chesti M H, Ganie Mumtaz A, Hanif Mir Yasir, Dolker Tsering, Alharbi Sulaiman Ali, Alahmadi Tahani Awad, Ur Rahman Shafeeq

机构信息

Farmland Irrigation Research Institute, Chinese Academy of Agricultural Sciences, Xinxiang, 453002, China.

Division of Soil Science and Agricultural Chemistry, Sher-e-Kashmir University of Agricultural Sciences and Technology-Kashmir, Wadura, 193201, Jammu and Kashmir, India.

出版信息

Heliyon. 2024 Jul 26;10(15):e35173. doi: 10.1016/j.heliyon.2024.e35173. eCollection 2024 Aug 15.

Abstract

Heavy metal ions pose significant risks to human health, pelagic, and several other life forms due to perniciousness, tendency to accumulate, and resistance to biodegradation. Waste bio-materials extend a budding alternative as low-cost adsorbent to address the removal of noxious pollutants from wastewater on account of being cost-effective and exhibiting exceptional adsorption capacities. The current exploration was accomplished to gauge the performance of raw and modified human hair concerning lead scavenging in a down-flow fixed bed column. The appraisal of column performance under varying operational parameters encompassing bed height (15-45 cm), influent metal ion concentration (60-140 mg L), and a solution flow rate (20-40 mL min) was performed by breakthrough curve analysis. The consequences acquired were evaluated using the Yoon Nelson, Thomas, Adam-Bohart, and Bed Depth Service Time (BDST) model. Among these employed models, Bed Depth Service Time (BDST) and Thomas models exhibited the highest R-squared value compared to the Yoon Nelson and Adam-Bohart's model for most cases. In addition, the optimization of lead adsorption was followed using the Box-Behnken design of response surface methodology (RSM). The optimal conditions (desirability-1.00) for achieving a goal of maximum percent removal of lead ions were marked to be a bed height of 42.79 cm, solution flow rate of 20.92 mL min and an initial metal concentration of 139.51 mg L. Under these optimized conditions, the percent amputation of lead in a fixed bed was observed to be 82.31 %, while the results of the experiment performed approximately under these optimized conditions revealed a percent removal of 85.05 %, reflecting a reasonable conformity with values acquired through Box-Behnken design.

摘要

由于具有危害性、积累趋势和抗生物降解性,重金属离子对人类健康、远洋生物及其他多种生命形式构成重大风险。废弃生物材料作为低成本吸附剂,因具有成本效益且展现出卓越的吸附能力,为解决废水中有害污染物的去除问题提供了一种新兴的替代方案。当前的研究旨在评估生的和改性的人发在下行固定床柱中对铅的清除性能。通过穿透曲线分析,对包括床层高度(15 - 45厘米)、进水金属离子浓度(60 - 140毫克/升)和溶液流速(20 - 40毫升/分钟)等不同运行参数下的柱性能进行了评估。使用尹 - 尼尔森(Yoon Nelson)、托马斯(Thomas)、亚当 - 博哈特(Adam - Bohart)和床层深度服务时间(BDST)模型对所得结果进行了评估。在这些使用的模型中,与尹 - 尼尔森和亚当 - 博哈特模型相比,在大多数情况下,床层深度服务时间(BDST)和托马斯模型表现出最高的决定系数(R平方值)。此外,采用响应面法(RSM)的Box - Behnken设计对铅吸附进行了优化。实现铅离子最大去除率目标的最佳条件(可取性为1.00)为床层高度42.79厘米、溶液流速20.92毫升/分钟和初始金属浓度139.51毫克/升。在这些优化条件下,固定床中铅的去除率为82.31%,而在大致这些优化条件下进行的实验结果显示去除率为85.05%,这与通过Box - Behnken设计获得的值反映出合理的一致性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2133/11333888/887876c8b1fc/gr1.jpg

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