Ecotoxicological response surface analysis of salt and pH in textile effluent on Bacillus subtilis and Lactuca sativa.

IF 1.7 4区 医学 Q3 PUBLIC, ENVIRONMENTAL & OCCUPATIONAL HEALTH Toxicology and Industrial Health Pub Date : 2023-10-01 Epub Date: 2023-08-02 DOI:10.1177/07482337231191160
Pedro H Mainardi, Ederio D Bidoia
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引用次数: 0

Abstract

Textile effluents, although their composition can vary considerably, typically contain high levels of dissolved salts and exhibit wide variations in pH. Ecotoxicological studies regarding the effects of these parameters, however, have been limited owing to the need for sensitive and easy-to-handle bioindicators that require low amounts of sampling, are cost-effective, time-efficient, and ethically endorsed. This kind of study, additionally, demands robust multi-factorial statistical designs that can accurately characterize the individual and combined relationship between variables. In this research, Response Surface Methodology (RSM) was used to calculate the individual and interaction effects of NaCl concentration and pH value of a Simulated Textile Effluent (STE) on the development rate (DR) of the bioindicators: Bacillus subtilis bacteria and Lactuca sativa lettuce. The results demonstrated that the bioindicators were sensitive to both NaCl and pH factors, where the relative sensitivity relationship was B. subtilis > L. sativa. The quadratic equations generated in the experiments indicated that increased concentrations of 50-250 mg L-1 of NaCl caused a perturbance of 1.40%-34.40% on the DR of B. subtilis and 0.50%-12.30% on L. sativa. The pH factor at values of 3-11 caused an alteration of 27.00%-64.78% on the DR of the B. subtilis and 51.37%-37.37% on the L. sativa. These findings suggest that the selected bioindicators could serve as effective tools to assess the ecotoxicological effects of textile effluents on different ecological systems, and the RSM was an excellent tool to consider the ecotoxicological effects of the parameters and to describe the behavior of the results. In conclusion, the NaCl and pH factors may be responsible for disrupting different ecosystems, causing imbalances in their biodiversity and biomass. Before discharge or reuse, it is suggested to remove salts and neutralize pH from textile effluents and, mostly, develop novel, eco-friendlier textile processing techniques.

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纺织废水中盐分和pH对枯草芽孢杆菌和莴苣的生态毒性响应面分析。
纺织废水,尽管其组成可能有很大变化,但通常含有高水平的溶解盐,并表现出广泛的pH变化。然而,关于这些参数影响的生态毒理学研究受到限制,因为需要敏感且易于处理的生物指示剂,这些生物指示剂需要少量的采样,具有成本效益、时效性,并得到伦理认可。此外,这类研究需要稳健的多因子统计设计,能够准确地描述变量之间的个体和组合关系。在本研究中,使用响应面方法(RSM)计算了模拟纺织品废水(STE)的NaCl浓度和pH值对生物指示剂枯草芽孢杆菌和莴苣发育速率(DR)的个体和相互作用影响。结果表明,生物指示剂对NaCl和pH因子均敏感,相对敏感关系为枯草芽孢杆菌>紫花苜蓿。实验中产生的二次方程表明,增加浓度50-250mg L-1的NaCl对枯草芽孢杆菌的DR和对L.sativa的干扰分别为1.40%-34.40%和0.50%-12.30%。pH因子在3-11的范围内对枯草芽孢杆菌的DR和L.sativa的DR分别造成27.00%至64.78%和51.37%至37.37%的变化。这些发现表明,所选的生物指示剂可以作为评估纺织废水对不同生态系统的生态毒理学影响的有效工具,RSM是考虑参数生态毒理学影响和描述结果行为的极好工具。总之,NaCl和pH因素可能是破坏不同生态系统的原因,导致其生物多样性和生物量失衡。在排放或重复使用之前,建议从纺织品废水中去除盐并中和pH值,主要是开发新的、更环保的纺织品加工技术。
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来源期刊
CiteScore
3.50
自引率
5.30%
发文量
72
审稿时长
4 months
期刊介绍: Toxicology & Industrial Health is a journal dedicated to reporting results of basic and applied toxicological research with direct application to industrial/occupational health. Such research includes the fields of genetic and cellular toxicology and risk assessment associated with hazardous wastes and groundwater.
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