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检测和鉴定沼气发酵液中难生物降解的有机和无机污染物及其特性,并利用菜豆和洋葱评估其对植物的毒性、细胞毒性和遗传毒性。

Detection and characterization of refractory organic and inorganic pollutants discharged in biomethanated distillery effluent and their phytotoxicity, cytotoxicity, and genotoxicity assessment using Phaseolus aureus L. and Allium cepa L.

机构信息

Department of Botany, School of Life Science, Guru Ghasidas Vishwavidyalaya, Bilaspur, Chhattisgarh, 495009, India.

Department of Botany, School of Life Science, Guru Ghasidas Vishwavidyalaya, Bilaspur, Chhattisgarh, 495009, India.

出版信息

Environ Res. 2021 Oct;201:111551. doi: 10.1016/j.envres.2021.111551. Epub 2021 Jun 27.

DOI:10.1016/j.envres.2021.111551
PMID:34192556
Abstract

The color effluent discharged by alcohol distilleries comprises very high pollution loads due to the plethora of refractory chemicals even after anaerobic treatment and causing adverse effects to the environment. The present study aimed to examine the phytotoxic, cytotoxic, and genotoxic potential of the identified refractory organic and inorganic pollutants discharged in bio-methanated distillery effluent (BMDE). Physico-chemical analyses revealed that BMDE retains high BOD, COD, TDS along with heavy metals like Fe (572.64 mg L), Mn (4.269 mg L), Cd (1.631 mg L), Zn (2.547 mg L), Pb (1.262 mg L), (Cr 1.257 mg L), and Ni (0.781 mg L) beyond the permissible limits for effluent discharge. GC-MS analysis revelaed the presence of hexadecanoic acid, TMS ester; octadecanoic acid, TMS ester; 2,3 bis[(TMS)oxy]propyl ester; stigmasterol TMS ether; β-sitosterol TMS ester; hexacosanoic acid; and tetradecanoic acid, TMS ester as major refractory organic pollutants, which are listed as potential endocrine disruptor chemicals (EDCs) as per USEPA. Furthermore, phytotoxicity assessment with Phaseolus aureus L. showed the toxic nature of BMDE as it inhibited various seedling growth parameters, seed germination, and suppression of α-amylase activity in seed germination experiment. Moreover, genotoxicity and cytotoxicity evaluation of the discharged BMDE evidenced in root-tip meristematic cells of Allium cepa L. where chromosomal aberration such as disturbed metaphase, c-mitosis, laggard chromosomes, sticky chromosomes, prolonged prophase, polyploid cells, and apoptotic bodies etc. were observed. Thus, this study's results suggested that BMDE discharged without adequate treatment poses potential risk to environment and may cause a variety of serious health threats in living beings upon exposure.

摘要

酒精厂排放的有色废水即使经过厌氧处理,仍含有大量的难处理化学物质,污染负荷极高,对环境造成不利影响。本研究旨在检测生物甲烷化酒精厂废水中鉴定出的难处理有机和无机污染物的植物毒性、细胞毒性和遗传毒性。理化分析表明,BMDE 仍然含有高 BOD、COD、TDS 以及重金属如 Fe(572.64mg/L)、Mn(4.269mg/L)、Cd(1.631mg/L)、Zn(2.547mg/L)、Pb(1.262mg/L)、(Cr 1.257mg/L)和 Ni(0.781mg/L),超过了废水排放的允许限值。GC-MS 分析表明,存在十六烷酸,TMS 酯;十八烷酸,TMS 酯;2,3 双[(TMS)氧基]丙酯;豆甾醇 TMS 醚;β-谷甾醇 TMS 酯;二十六烷酸;和十四烷酸,TMS 酯作为主要的难处理有机污染物,根据美国环保署的规定,这些物质被列为潜在的内分泌干扰化学物质 (EDC)。此外,用 Phaseolus aureus L. 进行的植物毒性评估表明,BMDE 具有毒性,因为它抑制了各种幼苗生长参数、种子萌发和抑制种子萌发实验中的α-淀粉酶活性。此外,排放的 BMDE 的遗传毒性和细胞毒性评估在 Allium cepa L. 的根尖分生细胞中得到了证明,其中观察到染色体畸变,如中期紊乱、c-有丝分裂、滞后染色体、粘性染色体、延长前期、多倍体细胞和凋亡小体等。因此,本研究结果表明,未经充分处理排放的 BMDE 对环境构成潜在风险,并可能在暴露于生物时造成各种严重的健康威胁。

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