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首页> 外文期刊>Journal of Hazardous Materials >A novel egg shell-based bio formulation for remediation of RDX (hexahydro-1,3,5-trinitro-1,3,5-triazine) contaminated soil
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A novel egg shell-based bio formulation for remediation of RDX (hexahydro-1,3,5-trinitro-1,3,5-triazine) contaminated soil

机译:基于新型蛋壳的生物配方,用于修复RDX(六羟基-1,3,5-三硝基-1,3,5-三嗪)污染土壤

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摘要

Environmental contamination by secondary explosive has been posing threat to human health and the ecosystem. We investigated the potential of a novel bioformulation developed from poultry waste for the bioremediation of hexahydro-1,3,5-trinitro-1,3,5-triazine (RDX) contaminated soils. Eggshells and additives immobilized with an indigenous explosive degrading microbe Janibacter cremeus were utilized for the development of the wettable powder bioformulation. Treatments carried out under unsaturated and saturated soil conditions resulted in 62 and 73 % removal of RDX respectively in 35 days meeting the soil clean up goals. The saturated treatment sets exhibited better microbial growth during the study in terms of live cell count and total enzyme activity. The bacteria, J. cremeus was observed to exhibit significant release of nitrite under both unsaturated as well as saturated conditions. Mass spectrometric studies showed that, both the conditions lead to the formation of nitroso-derivatives of RDX. But under saturated condition, an intermediate, 5-hydroxy-4-nitro-2,4-diazapentanal was observed which is a precursor to 4-nitro-2,4-diazabuatnal ultimately leading to mineralization. An accessible bio resource from poultry waste when used as a carrier for explosive degrading microbe has proven effective for in situ remediation of explosive contaminated soils.
机译:二次爆炸物的环境污染已经对人类健康和生态系统构成威胁。我们调查了从家禽废物中发育的新型生物功能的潜力,用于六羟基-1,3,5-三硝基-1,3,5-三嗪(RDX)受污染的土壤的生物修复。用土着爆炸性降解微生物治疗的蛋壳和添加剂用于开发可湿性粉末生物侵蚀性。在不饱和和饱和的土壤条件下进行的治疗导致62%和73%的RDX分别在35天内分别去除,与土壤清洁目标进行了35天。在活细胞计数和总酶活性方面,饱和治疗组在研究期间表现出更好的微生物生长。观察到细菌,J.Remeus在不饱和以及饱和条件下表现出显着的亚硝酸盐释放。质谱研究表明,条件都导致形成RDX的亚硝基衍生物。但是在饱和条件下,观察到中间体,5-羟基-4-硝基-2,4-二氮化丹醛,这是4-硝基-2,4-diazabuatnal最终导致矿化的前体。当用作爆炸性降解微生物的载体时,从家禽浪费的可访问生物资源已经证明有效地对爆炸性污染的土壤的原因进行了有效。

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