Zhu Guocheng, Wang Chuang, Dong Xingwei
a College of Civil Engineering , Hunan University of Science & Technology , Xiangtan , People's Republic of China.
b Huajie Environmental Protection Engineering Co., Ltd. , Yibin , People's Republic of China.
Environ Technol. 2017 Jun;38(12):1489-1497. doi: 10.1080/09593330.2016.1234510. Epub 2016 Sep 29.
Landfill leachate contains a variety of organic matters, some of which can be excited and emit fluorescence signal. In order to degrade these organic matters, the pretreatment of the leachate is needed, which can improve the degradation performance of post-treatment process. Coagulation-flocculation is one of the important pretreatment processes to treat landfill leachate. Assessing the chemical compositions of landfill leachate is helpful in the understanding of their sources and fates as well as the mechanistic behaviors in the water environment. The present work aimed to use fluorescence excitation-emission matrix spectroscopy (EEMs) to characterize the chemical fractions of landfill leachate dissolved organic matter (DOM) in conjunction with parallel factor analysis (PARAFAC). Results showed that the DOM of landfill leachate tested in this study was identified resulting from microbial input, which included five typical characteristic peaks and four kinds of PARAFAC fractions. These fractions were mainly composed of hydrophobic macromolecule humic acid-like (HM-HA), hydrophilic intermediate molecular fulvic acid-like (HIM-FA), and hydrophilic small molecule protein-like substances (HSM-PS). HM-HA and HIM-FA were found to be easier to remove than HSM-PS. Further research on HSM-PS removal by coagulation-flocculation still needs to be improved.
垃圾渗滤液含有多种有机物,其中一些能够被激发并发出荧光信号。为了降解这些有机物,需要对渗滤液进行预处理,这可以提高后续处理工艺的降解性能。混凝絮凝是处理垃圾渗滤液的重要预处理工艺之一。评估垃圾渗滤液的化学成分有助于了解其来源、归宿以及在水环境中的作用机制。本研究旨在利用荧光激发-发射矩阵光谱(EEMs)结合平行因子分析(PARAFAC)来表征垃圾渗滤液溶解有机物(DOM)的化学组分。结果表明,本研究中测试的垃圾渗滤液中的DOM是由微生物输入产生的,包括五个典型特征峰和四种PARAFAC组分。这些组分主要由疏水性大分子类腐殖酸(HM-HA)、亲水性中等分子类富里酸(HIM-FA)和亲水性小分子类蛋白质物质(HSM-PS)组成。发现HM-HA和HIM-FA比HSM-PS更容易去除。通过混凝絮凝去除HSM-PS的进一步研究仍有待改进。