Ameli Fateme, Hashemi Hassan, Samaei Mohammad Reza, Asgari Esrafil, Mohammadian Fazli Mehran
Department of Environmental Health Engineering, School of Public Health, Zanjan University of Medical Sciences, Zanjan, Iran.
Research Center for Health Sciences, Institute of Health, Department of Environmental Health Engineering, School of Health, Shiraz University of Medical Sciences, Shiraz, Iran.
Heliyon. 2024 Sep 19;10(18):e38134. doi: 10.1016/j.heliyon.2024.e38134. eCollection 2024 Sep 30.
Addressing the urgent need to effectively manage landfill leachate as a harmful flow for human health and the environment, this research investigates how electrocoagulation (EC) processes could alleviate the pollution potential of leachate. So far, no experimental study has been carried out on reducing the leachate pollution index (LPI) under the EC process. For this purpose, in this novel research, the LPI was utilized as a key metric to evaluate the efficiency of the treatment process. Central Composite Design (CCD) as a subset of Response Surface Methodology (RSM) was applied to enhance the LPI parameters decreasing percentage. The data were analyzed by analysis of variance and multivariate regression and 3D plots assessed variable interactions. Under optimal conditions, it showed removal of 97.48 % for COD, 91.42 % for BOD, 98.52 % for N-NH, and 91.6 % for TDS. Significant reductions were observed in 94.81 % TKN, 87.20 %, 82.80 %, 96.66 %, and 99.28 %, 99.18 %, and 96.56 % for TKN, Cl, CN, As, Cr, Zn, and Ni, respectively. Moreover, the kinetics of COD removal indicated that it follows a first-order model. Thus, based on experimental results, the LPI of raw leachate decreased from 38.06 to 7.22 (81 % decrease) under the EC treatment method. The study indicated that the EC treatment method successfully reduced leachate pollution and met the leachate discharge standard.
为满足有效管理垃圾渗滤液这一对人类健康和环境有害的水流的迫切需求,本研究调查了电凝聚(EC)工艺如何减轻渗滤液的污染潜力。到目前为止,尚未有关于在EC工艺下降低渗滤液污染指数(LPI)的实验研究。为此,在这项新研究中,LPI被用作评估处理工艺效率的关键指标。作为响应面方法(RSM)子集的中心复合设计(CCD)被用于提高LPI参数的降低百分比。通过方差分析和多元回归分析数据,并通过三维图评估变量间的相互作用。在最佳条件下,化学需氧量(COD)的去除率为97.48%,生化需氧量(BOD)为91.42%,氨氮(N-NH)为98.52%,总溶解固体(TDS)为91.6%。总凯氏氮(TKN)、氯离子(Cl)、氰化物(CN)、砷(As)、铬(Cr)、锌(Zn)和镍(Ni)的去除率分别显著降低了94.81%、87.20%、82.80%、96.66%以及99.28%、99.18%和96.56%。此外,COD去除动力学表明其遵循一级模型。因此,基于实验结果,在EC处理方法下,原渗滤液的LPI从38.06降至7.22(降低了81%)。该研究表明,EC处理方法成功降低了渗滤液污染并达到了渗滤液排放标准。