Health Protection Using Clay Minerals: A Case Study Based on the Removal of BPA and BPS from Water

被引:0
作者
Giora Rytwo
Shem Levy
Yuval Shahar
Ido Lotan
Arye Lev Zelkind
Tomer Klein
Chen Barak
机构
[1] Tel Hai College,Department of Environmental Sciences and Department of Water Sciences
[2] MIGAL – Galilee Research Institute,Environmental Physical Chemistry Laboratory
来源
Clays and Clay Minerals | 2021年 / 69卷
关键词
Adsorption; Bisphenol-A; Bisphenol-S; Clays and health; EDC; Organo-clays; Photocatalysis; TiO; -impregnated clay;
D O I
暂无
中图分类号
学科分类号
摘要
Anthropogenic activity releases hazardous contaminants and pollutants that are not removed fully by water treatments. Among such pollutants, bisphenol-A (BPA) and bisphenol-S (BPS) are included in a series of Endocrine Disruptive Compounds, which may cause disruption due to hormone blockage or mimicking. Thus, even though those pollutants are not considered lethal, they are hazardous to health due to their similarity to 17β-estradiol, and they have been shown to cause developmental malformation in Zebrafish and breast and prostate tumors in rodents. Both BPA and BPS have been found in water sources at concentrations >30 μg L–1 and since water treatment plants are ineffective at removing them, their concentration is constantly increasing. The purpose of the present study, using a collection of experiments performed by B.Sc. and M.Sc. students, was to apply clay-based materials to the removal of such health hazards from water. Specifically adapted modified clays as neutral organoclays can optimize the interaction between pollutants and the matrix to achieve efficient adsorption. Such an approach is very effective for relatively insoluble pollutants such as BPA, but less so for the more soluble BPS. On the other hand, BPS can be photodegraded catalytically using raw clay or TiO2-impregnated clay. At low catalyst concentration, the modified clay was as effective as a commercial TiO2 catalyst, whereas combining it with H2O2 yielded considerably better results. In summary, clay minerals offer solutions for the removal of health-hazardous pollutants from water, based on different procedures and mechanisms. The versality of clay minerals allows 'tailoring' specifically adapted materials that might improve their efficiency based on such very specific pollutant-matrix interactions.
引用
收藏
页码:641 / 653
页数:12
相关论文
共 239 条
  • [21] Kashiwada S(2013)In vitro and in vivo estrogenic activity of BPA, BPF and BPS in zebrafish-specific assays Water Research 47 6475-6487
  • [22] Rosenfeldt EJ(2015)Endocrine disruptors in the environment (IUPAC Technical Report) Journal of Environmental Engineering and Science 10 92-102
  • [23] Kullman SW(2011)EU-wide monitoring survey on emerging polar organic contaminants in wastewater treatment plant effluents Journal of Food Process Engineering 34 1220-1233
  • [24] Chong MN(2011)Advanced oxidative degradation of bisphenol A and bisphenol S Journal of Xenobiotics 1 3-12805
  • [25] Jin B(2005)Bootstrap confidence intervals for the kinetic parameters of degradation of anthocyanins in grape pomace Journal of ASTM International 2 12931-1508
  • [26] Chow CWK(2017)Occurrence of bisphenol A in wastewater and wastewater sludge of CUQ treatment plant Environmental Science and Technology 51 12796-182
  • [27] Saint C(2014)A New Test Method for Porosity Measurements of Portland Cement Pervious Concrete CLEAN - Soil, Air, Water 42 1500-4262
  • [28] Danzl E(2010)Acute Toxicity, Teratogenic, and Estrogenic Effects of Bisphenol A and Its Alternative Replacements Bisphenol S, Bisphenol F, and Bisphenol AF in Zebrafish Embryo-Larvae Journal of Photochemistry and Photobiology A: Chemistry 216 179-204
  • [29] Sei K(2017)Organoclays as Sorbent Material for Phenolic Compounds: A Review Green Chemistry 19 4234-263
  • [30] Soda S(2010)What is Degussa (Evonik) P25? Crystalline composition analysis, reconstruction from isolated pure particles and photocatalytic activity test Water, Air, and Soil Pollution 205 187-56