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Optimization of a Fungally Bioaugmented Biomixture for Carbofuran Removal in On-Farm Biopurification Systems

机译:在农用生物纯化系统中用于去除呋喃丹的真菌生物强化生物混合物的优化

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Biomixtures comprise the active part of biopurification systems (BPS) for the removal of pesticide-containing wastewater from agricultural origin. Considering that biomixtures contain an important amount of lignocellulosic substrates, their bioaugmentation with degrading ligninolytic fungi represents a promising way to improve BPS. The fungus Trametes versicolor was employed for the bioaugmentation of rice husk-compost-soil (GCS) biomixtures in order to optimize the removal of the highly toxic insecticideematicide carbofuran (CFN). Composition of biomixtures has not been optimized before, and usually, a volumetric composition of 50: 25: 25 (lignocellulosic substrate: humic component: soil) is employed. Optimization of the biomixture composition was performed with a central composite design, using the volumetric content of rice husk (pre-colonized by the fungus) and the volumetric ratio compost/soil as design variables. Performance of biomixtures was comprehensively assayed considering CFN removal, the production of toxic transformation products (3-hydroxycarbofuran/3-ketocarbofuran), the ability to mineralize [C-14] carbofuran, and the residual toxicity in the matrix. According to the models, the optimal volumetric composition of the GCS biomixture is 30: 43: 27, which maximizes removal and mineralization rate, and minimizes the accumulation of transformation products. Results support the value of assessing new biomixture formulations according to the target pesticide in order to obtain their optimal performance, before their use in BPS.
机译:生物混合物包括生物纯化系统(BPS)的活性部分,用于从农业中去除含农药的废水。考虑到生物混合物包含大量的木质纤维素底物,它们与降解木质素分解真菌的生物增强作用是改善BPS的一种有前途的方法。为了优化对高毒性杀虫剂/杀线虫剂呋喃丹(CFN)的去除效果,采用了杂色真菌Trametes versicolor来增强稻壳-堆肥后土壤(GCS)生物混合物。以前没有优化生物混合物的组成,通常使用50:25:25(木质纤维素基质:腐殖质成分:土壤)的体积组成。生物混合物组成的优化是通过中央复合设计进行的,其中稻壳的体积含量(由真菌预先定殖)和堆肥/土壤的体积比作为设计变量。综合考虑了CFN的去除,毒性转化产物(3-羟基碳呋喃/ 3-酮碳呋喃的生成),矿化[C-14]呋喃呋喃的能力以及基质中的残留毒性,全面评估了生物混合物的性能。根据这些模型,GCS生物混合物的最佳体积组成为30:43:27,可最大程度地提高去除和矿化速率,并最大程度减少转化产物的积累。结果支持在目标生物农药用于BPS之前根据目标农药评估新生物混合物制剂的价值,以获取其最佳性能。

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