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A novel process for biodegradation and effective utilization of chrome shavings, a solid waste generated in tanneries, using chromium resistant Bacillus subtilis P13

机译:使用抗铬枯草芽孢杆菌P13进行生物降解和有效利用铬屑的新工艺,铬屑是制革厂产生的固体废物

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摘要

Present work deals with the development of an efficient and value-added process for the management of chrome shavings, a protein-rich, chromium-containing solid waste, produced in large quantities during the post-tanning operations in the leather industry, using Bacillus subtilis P13, a hot spring isolate. This bacterium was able to effectively degrade and grow using chrome shavings as the protein source and produce in the spent medium high levels of a keratinolytic serine protease that can be proficiently applied for the pre-tanning processing step of hide dehairing. The bacterium was moderately chromium resistant tolerating up to 35 ppm and 350 ppm of Cr(Ⅵ) and Cr(Ⅲ) salts, respectively and showed bioaccumulation and bio-sorption of Cr(Ⅲ) and Cr(Ⅵ). Growth profile and enzyme production were comparable in basal and production media containing chrome shavings. An efficient waste management process is described using solid substratum column reactor, leading to the liquefaction of the proteinaceous waste and the recovery of dehairing protease as concentrated product as well as Cr recovery for reuse in tanning. A continuous reactor scheme is proposed, where the biomass can be reused as the seed for chrome shaving hydrolysis for in-house waste management and by-product recovery in the tannery industry.
机译:目前的工作涉及开发一种高效,高附加值的工艺,以管理铬屑,铬屑是一种富含蛋白质的含铬固体废物,在皮革工业中的制革后工序中使用枯草芽孢杆菌大量产生。 P13,温泉隔离物。该细菌能够使用铬屑作为蛋白质源有效地降解和生长,并在用过的培养基中产生高水平的角蛋白水解的丝氨酸蛋白酶,该蛋白酶可有效地用于生皮脱毛的鞣制前处理步骤。该细菌具有中等耐铬性,分别耐受高达35 ppm和350 ppm的Cr(Ⅵ)和Cr(Ⅲ)盐,并显示了Cr(Ⅲ)和Cr(Ⅵ)的生物富集和生物吸附。在含有铬屑的基础培养基和生产培养基中,其生长曲线和酶的产量相当。描述了使用固体基质柱反应器的有效废物管理方法,其导致蛋白质废物的液化和作为浓缩产物的脱毛蛋白酶的回收以及Cr的回收以用于鞣制。提出了一个连续反应器方案,该方案中的生物质可作为种子用于铬的水解,用于制革厂的室内废物管理和副产品回收。

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