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Detoxification of pulping black liquor with Pleurotus ostreatus or recombinant Pichia pastoris followed by CuO/TiO2/visible photocatalysis

机译:平菇或重组毕赤酵母对制浆黑液的解毒然后进行CuO / TiO2 /可见光催化

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摘要

Cellulose-pulping requires chemicals such as Cl2, ClO2, H2O2, and O2. The black liquor (BL) generated exhibits a high chemical oxygen demand (COD), five-day biochemical oxygen demand (BOD5), and chlorophenol content, along with an augmented colour and increased pH. BL is often discharged into water bodies, where it has a negative impact on the environment. Towards that end, laccases are of great interest for bioremediation, since they can degrade aromatic and non-aromatic compounds while reducing O2 to water instead of H2O2. As such, we evaluated Pleurotus ostreatus and Pichia pastoris (which produces rPOXA 1B laccase) in the treatment of synthetic BL (SBL) in an “in vitro” modified Kraft process followed by CuO/TiO2/visible light photocatalysis. Treating SBL with P. ostreatus viable biomass (VB) followed by CuO/TiO2/visible light photocatalysis resulted in 80.3% COD removal and 70.6% decolourisation. Toxic compounds such as 2-methylphenol, 4-methylphenol, and 2-methoxyphenol were eliminated. Post-treated SBL exhibited low phytotoxicity, as evidenced by a Lactuca sativa L seed germination index (GI) > 50%. Likewise, SBL treatment with P. pastoris followed by VB/CuO/TiO2/visible light photocatalysis resulted in 63.7% COD removal and 46% decolourisation. Moreover, this treatment resulted in the elimination of most unwanted compounds, with the exception of 4-chlorophenol. The Lactuca sativa L seed GI of the post-treated SBL was 40%, indicating moderate phytotoxicity.
机译:纤维素制浆需要使用化学物质,例如Cl2,ClO2,H2O2和O2。产生的黑液(BL)表现出较高的化学需氧量(COD),五天生化需氧量(BOD5)和氯酚含量,以及颜色增加和pH升高。 BL通常排放到水体中,对环境有负面影响。为此,漆酶对于生物修复具有重大意义,因为它们可以降解芳香族和非芳香族化合物,同时将O2还原为水而不是H2O2。因此,我们评估了平菇和毕赤酵母(产生rPOXA 1B漆酶)在合成的BL(SBL)处理中的“体外”改良Kraft工艺,然后是CuO / TiO2 /可见光光催化。先用P. ostreatus活生物质(VB)处理SBL,然后用CuO / TiO2 /可见光光催化处理,可去除80.3%的COD和70.6%的脱色。消除了2-甲基苯酚,4-甲基苯酚和2-甲氧基苯酚等有毒化合物。后处理的SBL表现出低的植物毒性,这由Lactuca sativa L种子发芽指数(GI)> 50%所证明。同样,用巴斯德毕赤酵母进行SBL处理,然后进行VB / CuO / TiO2 /可见光光催化处理,可去除63.7%的COD和46%的脱色。此外,该处理导​​致除4-氯苯酚外,消除了大多数不需要的化合物。后处理的SBL的紫花苜蓿种子GI为40%,表明中等的植物毒性。

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