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首页> 外文期刊>Journal of Cleaner Production >Microalgae based biofertilizers: A biorefinery approach to phycoremediate wastewater and harvest biodiesel and manure
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Microalgae based biofertilizers: A biorefinery approach to phycoremediate wastewater and harvest biodiesel and manure

机译:基于微藻的生物肥料:以生物精炼方法处理藻类废水,并收获生物柴油和肥料

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The most important requirement of the agrarian advancement is resilient nutrient source for agriculture without jeopardizing the environmental assets and economy of the country. An algal biorefinery approach is the prime requirement for the sustainable production of biodiesel and biofertilizers after remediation of wastewater. In the present study, the microalgae Chlorella minutissima, Scendesmus spp and Nostoc muscorum and their consortium were used for the biorefinery approach. C minutissima has shown maximum phycoremediation potential when compared to other possible microalga and their consortium. Experimental results showed that removal of NH4+-N, NO3--N, PO4-3-P, TDS, BOD5 and COD were found to be 92, 87, 85, 96, 90 and 81% respectively. The maximum dry biomass was observed in C minutissima followed by Scendesmus spp, and N. muscorum, i.e., 0.45 +/- 0.01 g L-1, 0.44 +/- 0.02 g L-1, 0.14 +/- 0.03 g L-1 respectively. The nutrient fraction of nitrogen and phosphorus were maximum in C. minutissima, i.e., 5.46 +/- 0.27 and 0.85 +/- 0.03 respectively. The lipid productivity recorded maximum in Scendesmus (81.23 +/- 4.5 mg L-1) followed by N. muscorum (14.29 +/- 8.7 mg L-1) and C minutissima (11.33 +/- 5.6 mg L-1). Using this biomass as manure one can save the chemical fertilizer of worth about 5584 $ (US Dollar) ha(-1) yr(-1). The present study not only supports the sustainable phytoremediation, biodiesel production, and organic manure utilization directly but indirectly to combat climate change scenario through minimizing greenhouse gases production. (C) 2018 Elsevier Ltd. All rights reserved.
机译:促进农业发展的最重要要求是在不损害该国环境资产和经济的前提下,恢复农业的营养源。藻类生物精炼方法是废水处理后可持续生产生物柴油和生物肥料的主要要求。在本研究中,将微藻小球藻,Scendesmus spp和Nostoc muscorum及其财团用于生物精炼方法。与其他可能的微藻类及其财团相比,Cututissima已显示出最大的phycoremediation潜力。实验结果表明,NH4 + -N,NO3--N,PO4-3-P,TDS,BOD5和COD的去除率分别为92%,87%,85%,96%,90%和81%。在C.ututtissima,Scendesmus spp和N.muscorum中观察到最大的干燥生物量,即0.45 +/- 0.01 g L-1、0.44 +/- 0.02 g L-1、0.14 +/- 0.03 g L-1分别。短纤梭菌中氮和磷的养分含量最高,分别为5.46 +/- 0.27和0.85 +/- 0.03。脂生产力在Scendesmus(81.23 +/- 4.5 mg L-1)中最大,其次是粘液猪笼草(14.29 +/- 8.7 mg L-1)和Minutissima C(11.33 +/- 5.6 mg L-1)。使用这种生物质作为肥料,可以节省价值约5584 $(美元)ha(-1)yr(-1)的化肥。本研究不仅直接支持可持续的植物修复,生物柴油生产和有机肥料的利用,而且通过最大限度地减少温室气体的产生来间接地应对气候变化的情况。 (C)2018 Elsevier Ltd.保留所有权利。

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