Ex-situ biofilm mediated approach for bioremediation of selected heavy metals in wastewater of textile industry

Anu Kumar, S. Shivani, B. Krishan, M. Samtiya, T. Dhewa
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Abstract

Industrialization plays a major role in strengthening the economy of any country. However, these industries directly or indirectly affect the environment. Industrial wastewater discharge has been reported with certain heavy metals such as chromium, lead, cobalt, and others which are a potential hazard to the water bodies and humans as well. Biofilm is an applied method in the fields of bioremediation for reliving this emerging problem and in the efficient removal of heavy metals from wastewater. Biofilms of Escherichia coli and petroleum soil isolated microorganisms ( PSIM ) were developed at the V bottom of 96 well microtiter plate. The contaminated water sample was collected from the textile industry, Solan, Himachal Pradesh, India. The biofilms were incubated with the industrial water tested for heavy metals assuming the microbes have the potential to assimilate the heavy metals up to 5 mg/mL of concentration. After the incubation for 1–2 weeks, the microorganisms were able to reduce the level of heavy metals present in the samples which was conveyed by biomass comparison of microorganisms in the successive intervals of time. 0.74 × 10 10 cells/mL and 0.77 × 10 10 cell/mL of E. coli and PSIM biofilms were able to tolerate the metal toxicity on incubation for 2 weeks at the highest concentration due to the functional group present extracellular polymeric substance which forms complexes with heavy metals. This leads to the fact that these biofilms have assimilated the heavy metals and are potent for the removal of heavy metals from industrial wastewater.
脱位生物膜介导法处理纺织废水中重金属
工业化在加强任何国家的经济方面都起着重要作用。然而,这些行业直接或间接地影响着环境。据报道,工业废水排放中含有某些重金属,如铬、铅、钴等,对水体和人类都有潜在的危害。生物膜是解决这一新兴问题和有效去除废水中重金属的一种生物修复方法。在96孔微滴板的V底培养大肠杆菌和石油土壤分离微生物(PSIM)的生物膜。受污染的水样取自印度喜马偕尔邦索兰的纺织业。生物膜与重金属测试的工业用水孵育,假设微生物有可能吸收浓度高达5毫克/毫升的重金属。经过1-2周的培养,微生物能够降低样品中存在的重金属水平,这是通过微生物在连续时间间隔内的生物量比较来传递的。0.74 × 10 10细胞/mL和0.77 × 10 10细胞/mL的大肠杆菌和PSIM生物膜在培养2周后,由于功能基团存在与重金属形成络合物的胞外聚合物物质,在最高浓度下能够耐受金属毒性。这导致了这些生物膜已经吸收了重金属,并且对于去除工业废水中的重金属是有效的。
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