College of Environmental Science and Engineering, Donghua University, Shanghai, 201620, China.
Textile Pollution Controlling Engineering Center of Ministry of Environmental Protection, Donghua University, Shanghai, 201620, China.
Environ Sci Pollut Res Int. 2021 Aug;28(29):38689-38697. doi: 10.1007/s11356-021-13488-3. Epub 2021 Mar 18.
The metals used in textile wet processing are of significant concern for the environment and human health. However, our understanding of metals released by the Chinese textile industry and their potential risks to ecology is limited. This work quantified the concentrations of seven metals in 199 wastewater samples from 77 textile enterprises in the southeastern coastal area of China. In the water discharged after end-of-pipe treatment, the mean concentrations of Sb, Hg, Fe, Mn, Zn, Cr, and As were 0.289, 0.009, 0.579, 0.277, 0.035, 0.016, and 0.013 mg/L, respectively. Alkali deweighting effluents, dyeing effluents, and influents into regulation tanks were observed to be "hotspots" for metal distributions. Among the seven target metals, only Sb was found to be significantly correlated with COD, NH-N, TN, and TP. The results of one-way ANOVA suggested that the Sb mainly came from the processing of polyester fibers. Overall, the majority of discharged wastewater samples were at safe levels, according to six health indicators. Sb posed elevated risks in comparison to other elements, which necessitated further concern. The findings can help decision-makers prevent hazardous metal contamination in the textile and dyeing industry, and provide a basis for the further study of the mechanisms of metal migration in the environment.
纺织湿加工中使用的金属对环境和人类健康具有重要意义。然而,我们对中国纺织业释放的金属及其对生态的潜在风险的了解是有限的。本研究定量测定了中国东南沿海地区 77 家纺织企业 199 个废水样品中 7 种金属的浓度。在末端处理后的排放水中,Sb、Hg、Fe、Mn、Zn、Cr 和 As 的平均浓度分别为 0.289、0.009、0.579、0.277、0.035、0.016 和 0.013mg/L。碱性减重废水、染色废水和调节池进水被认为是金属分布的“热点”。在所研究的 7 种目标金属中,只有 Sb 与 COD、NH-N、TN 和 TP 呈显著相关性。单因素方差分析的结果表明,Sb 主要来自聚酯纤维的加工过程。总体而言,根据六项健康指标,大多数排放废水样品处于安全水平。与其他元素相比,Sb 构成了更高的风险,需要进一步关注。这些发现有助于决策者防止纺织和染整行业的有害金属污染,并为进一步研究金属在环境中的迁移机制提供了基础。