首页> 外文期刊>Acta tropica: Journal of Biomedical Sciences >Photostabilization of Bacillus thuringiensis fermented wastewater and wastewater sludge based biopesticides using additives.
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Photostabilization of Bacillus thuringiensis fermented wastewater and wastewater sludge based biopesticides using additives.

机译:苏云金芽孢杆菌发酵废水和废水污泥基生物农药使用添加剂的光稳定作用。

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摘要

Photoprotection (against UV-A and UV-B radiations) of the active components of Bacillus thuringiensis var. kurstaki obtained from the fermentation of various culture media was investigated. The culture media comprised: starch industry wastewater; secondary wastewater sludge (non-hydrolyzed and hydrolyzed) and soya (used as a reference). Photoprotection was carried out by using various UV-protection additives, namely, para-aminobenzoic acid, lignosulfonic acid and molasses at different concentrations (0.1%, 0.15% and 0.2%, w/w). In the absence of UV-protection agents, secondary sludge demonstrated natural UV protection with half-lives ranging from 3.25 to 3.4 d. The half-life for soya and starch industry wastewater was 1.9 and 1.8 d, respectively. Para-amino-benzoic acid as a UV-protection agent at 0.20% (w/w) gave excellent UV-protection for soya and starch industry wastewater with half-lives being 5.9 and 7 d, respectively. Likewise, lignosulfonic acid at 0.20% (w/w) was an effective photostabilizer for hydrolyzed and non-hydrolyzed secondary sludge with half-lives of 7.25 and 8 d, respectively. Hence, when similar concentration of the UV-protection additives was used, photoprotection was higher for the alternative media than the conventional soya medium, validating the technical feasibility of using three additives.
机译:苏云金芽孢杆菌变种活性成分的光防护(针对UV-A和UV-B辐射)。研究了从各种培养基发酵获得的苦瓜卷。培养基包括:淀粉工业废水;二次废水污泥(未水解和水解)和大豆(用作参考)。通过使用各种紫外线保护添加剂,即不同浓度(0.1%,0.15%和0.2%,w / w)的对氨基苯甲酸,木质素磺酸和糖蜜进行光保护。在没有紫外线防护剂的情况下,次生污泥表现出自然的紫外线防护能力,半衰期为3.25至3.4 d。大豆和淀粉工业废水的半衰期分别为1.9和1.8 d。对氨基苯甲酸为0.20%(w / w)的紫外线防护剂,对大豆和淀粉工业废水的半衰期分别为5.9和7 d,具有出色的紫外线防护作用。同样,木质素磺酸的0.20%(w / w)是水解的和非水解的二级污泥的有效光稳定剂,半衰期分别为7.25和8 d。因此,当使用相似浓度的紫外线防护添加剂时,替代介质的光防护性要高于常规大豆介质,这证明了使用三种添加剂的技术可行性。

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