Using UV–Vis differential absorbance spectra of tropical peat water DOM fraction to determine trihalomethanes formation potential and its estimated cytotoxicity

Q1 Environmental Science Water Cycle Pub Date : 2023-01-01 DOI:10.1016/j.watcyc.2023.10.003
Muammar Qadafi , Diana Rahayuning Wulan , Raden Tina Rosmalina , Retno Wulandari , Wisnu Prayogo , Rosetyati Retno Utami , Yusuf Eka Maulana , Suprihanto Notodarmojo , Yuniati Zevi
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Abstract

Absorbance differential spectra could be utilized to identify dissolved organic matter (DOM) characteristics such as the disinfection by products (DBPs) formation. This research purposed to establish the relationship between absorbance differential spectra and trihalomethanes-4 (THM4) formation potential, as well as the estimated cytotoxicity of tropical peat water DOM percentage. The ion exchange resin was used to separate the DOM components from peat water. In addition, the UV–Vis spectrum was examined between 200 and 700 nm. The hydrophobic-acid (HPOA) fraction contains the highest concentration of dissolved organic carbon (DOC), THM4 production potential, and calculated cytotoxicity. On the other hand, the hydrophilic-neutral (HPIN) fraction has the lowest potential THM4 production. The UV–Vis absorbance spectra of all DOM fractions showed a comparable peak at 277 nm. The differential spectra of 277 nm (ΔA277) indicated a significant association with DOC concentration (99.6 %), trichloromethane (TCM) creation (86.6 %), total-THM4 (TTHM4) (81.3 %) formation, THM4 estimated cytotoxicity (89.7 %), and a moderate correlation with bromodichloromethane (BDCM) formation (55.6 %). Meanwhile, ΔA277 had a poor correlation with brominated THM4 formation potential (chlorodibromomethane (CDBM): 2.59, tribromomethane (TBM): 2.78 %). The absorbance differential spectra might be employed as a surrogate measure for the peat water DOM fraction and its precursor properties to form THM4 during the chlorination process, as well as its estimated cytotoxicity.

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利用热带泥炭水DOM组分的紫外-可见差分吸收光谱测定三卤甲烷的形成潜力及其估计的细胞毒性
吸光度差分光谱可用于鉴定溶解有机物(DOM)的特征,如消毒副产物(DBPs)的形成。本研究旨在建立吸光度差分光谱与三卤甲烷-4 (THM4)形成势之间的关系,以及对热带泥炭水DOM百分比的细胞毒性估计。采用离子交换树脂分离泥炭水中的DOM组分。此外,在200 ~ 700 nm范围内进行了紫外-可见光谱测试。疏水酸(HPOA)部分含有最高浓度的溶解有机碳(DOC)、THM4生产潜力和计算的细胞毒性。另一方面,亲水中性组分(HPIN)的THM4产量潜力最低。各DOM组分的紫外可见吸收光谱在277 nm处有一个相似的峰。277 nm (ΔA277)的差异光谱显示,与DOC浓度(99.6%)、三氯甲烷(TCM)产生(86.6%)、总THM4 (TTHM4)形成(81.3%)、THM4估计细胞毒性(89.7%)和溴二氯甲烷(BDCM)形成(55.6%)有显著相关性。ΔA277与溴化THM4地层电位相关性较差(氯二溴甲烷(CDBM): 2.59,三溴甲烷(TBM): 2.78%)。吸光度差分光谱可以作为泥炭水中DOM组分及其在氯化过程中形成THM4的前体性质及其估计的细胞毒性的替代测量。
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来源期刊
Water Cycle
Water Cycle Engineering-Engineering (miscellaneous)
CiteScore
9.20
自引率
0.00%
发文量
20
审稿时长
45 days
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