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Absorption of polycyclic aromatic hydrocarbons onto depolymerized lignocellulosic wastes by Streptomyces viridosporus T7A

机译:链霉菌T7A在解聚木质纤维素废料上吸收多环芳烃

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Preparations containing mainly lignified cell walls are effective adsorbents of hydrophobic carcinogens in vitro . Therefore, this innovative study aimed to structurally modify lignocellulosic materials in an enzymatic and environmentally friendly manner to improve the efficiency of sequestering three polycyclic aromatic hydrocarbons (PAHs) by adsorption. Submerged fermentations were performed to produce lignin peroxidase (LiP) in medium supplemented with three different lignocellulosic wastes (0.5% (w/v); a?ai seed, sugarcane bagasse, and seed coat of Brazil nut), followed by posterior hydrolysis of these three residues and subsequent adsorption to generate hydrolysate wastes. Among the three wastes, the a?ai seed was the most favourable carbon source for LiP production because a high enzyme activity peak was quickly achieved. Sugarcane bagasse residue was most readily hydrolysed (82.44%), and it had the highest increase in adsorption of the three PAHs tested dissolved in olive oil, from 15.67% of benzo[a]pyrene adsorbed before treatment to 39.45% after treatment. The depolymerisation of wastes may have increased binding sites for olive oil favouring the adsorption of PAHs on hydrolysed residues.
机译:主要包含木质素细胞壁的制剂是疏水致癌物的有效体外吸附剂。因此,这项创新研究旨在以酶促和环境友好的方式对木质纤维素材料进行结构改性,以提高通过吸附螯合三种多环芳烃(PAH)的效率。在添加了三种不同木质纤维素废料(0.5%(w / v);阿伊种子,甘蔗渣和巴西坚果的种皮)的培养基中,进行了深层发酵以产生木质素过氧化物酶(LiP),然后对它们进行后水解三个残渣并随后吸附以产生水解废料。在这三种废物中,由于很快获得了很高的酶活性峰值,因此aaai种子是生产LiP的最有利的碳源。甘蔗渣的残渣最容易水解(82.44%),在溶解于橄榄油的三种测试的多环芳烃中,其吸附的增加最高,从处理前的15.67%的苯并[a] py吸附至处理后的39.45%。废物的解聚可能增加了与橄榄油的结合位点,有利于PAHs在水解残渣上的吸附。

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