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Toxicity evaluation of textile dyeing effluent and its possible relationship with chemical oxygen demand

机译:纺织印染废水的毒性评价及其与化学需氧量的可能关系

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Textile dyeing wastewater was the focus of much research because of its adverse effect on aquatic biota. In the present research, textile dyeing influent and effluent samples were collected from four textile dyeing wastewater treatment plants (TDPs) in Guangdong province, China, and their conventional indicators and toxicity were examined to reveal relationships. The relationship between toxicity and chemical oxygen demand (COD) was clearly established at individual TDPs. Results indicated the highest removal efficiencies of 94.4%, 90.6%, 91.9%, 94.6%, 92.8% and 97.5% for TOC, mixed-liquor volatile suspended solids (MLVSS), COD, ammonia nitrogen (NH3-N), total phosphorus (TP) and colour, respectively. The primary clarifier used in TDP3 and TDP4 was beneficial for removing macromolecular organic substances, and membrane filtration and sedimentation basin employed at TDP1 and TDP2, respectively, helped to remove toxic substances. Toxicity to V. fischeri or D. subspicatus was found to be related to certain conventional indicators such as TOC, COD, TP, colour, and MLVSS, and was positively correlated with COD in different textile dyeing effluents (R-2 > 0.84). It was recommended that the relationship between toxicity and COD in wastewater should be established individually at each plant. Therefore, this study could be useful in providing suggestions for guiding effluent management when no toxicity experiments were conducted.
机译:纺织印染废水由于对水生生物群有不利影响而成为许多研究的重点。在本研究中,从中国广东省的四个纺织印染废水处理厂(TDP)收集了纺织印染进水和出水样品,并检查了它们的常规指标和毒性以揭示它们之间的关系。毒性和化学需氧量(COD)之间的关系已在各个TDP上明确建立。结果表明,TOC,混合液挥发性悬浮固体(MLVSS),COD,氨氮(NH3-N)和总磷()的最高去除效率分别为94.4%,90.6%,91.9%,94.6%,92.8%和97.5%。 TP)和颜色。 TDP3和TDP4中使用的主要澄清剂有利于去除大分子有机物,TDP1和TDP2分别使用的膜过滤和沉淀池有助于去除有毒物质。发现对费氏弧菌或D. subspicatus的毒性与某些常规指标(例如TOC,COD,TP,颜色和MLVSS)有关,并且在不同的纺织品染色废水中与COD呈正相关(R-2> 0.84)。建议在每个工厂分别建立废水中毒性和化学需氧量之间的关系。因此,这项研究可能在不进行毒性实验时为指导废水管理提供建议。

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