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Microalgae based biofertilizer: A life cycle approach

机译:基于微藻的生物元度:生命周期方法

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摘要

Waste, especially biomass in general, is a large reservoir of nutrients that can be recovered through different technologies and used to produce biofertilizers. In the present study, environmental impacts of the production of microalgae biomass-based phosphate biofertilizer compared to triple superphosphate through life-cycle assessment conducted in the Simapro~R software were investigated. The functional unit of the analysis was 163 g of P for both fertilizers. Phosphorus was recovered from a meat processing industry effluent in a high-rate algal pond. Impacts related to the entire biofertilizer chain impacted mainly on climate changes (3.17 kg CO_2eq). Microalgae biofertilizer had higher environmental impact than conventional fertilizer in all impact categories, highlighting climate change and terrestrial ecotoxicity. An ideal scenario was created considering that: all energy used comes from photovoltaic panels; in the separation step a physical method will be used, without energy expenditure (i.e. gravimetric sedimentation) and; biomass will be dried in a drying bed instead of the thermal drying. In this scenario, the impact of biofertilizer approached considerably those of triple superphosphate. When impacts of biomass cultivation and concentration stages were disregarded, drying step was of great relevance, contributing to increase biofertilizer impacts. More research is needed to optimize the algae production chain and determine the possibility of obtaining higher added value products more environmental attractive.
机译:浪费,特别是生物量一般,是一种营养素的大储层,可以通过不同的技术恢复并用于生产生物元化器。在本研究中,研究了通过在Simapro〜R软件中进行的生命周期评估的微藻基生物量磷酸盐生物元度的环境影响通过SimaPro〜R软件中进行的生命周期评估相比。两种肥料的分析功能单元为163克P.在高速藻类池中从肉类加工行业的流出物中回收磷。主要对整个生物曝光链相关的影响主要受气候变化(3.17kg CO_2EQ)。微藻生物元ilizer比常规肥料在所有影响类别中具有更高的环境影响,突出了气候变化和陆地生态毒性。考虑到一个理想的情景,考虑到:所使用的所有能量来自光伏电池板;在分离步骤中,将使用物理方法,没有能量消耗(即重量沉降)和;生物质将在干燥床中干燥而不是热干燥。在这种情况下,Biofertiilizer的影响大大接近三磷酸三倍磷酸盐。当忽略生物质培养和浓缩阶段的影响时,干燥步骤具有很大的相关性,有助于增加生物分析器的影响。需要更多的研究来优化藻类生产链,并确定获得更高附加值产品的可能性更具环境吸引力。

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  • 来源
    《The Science of the Total Environment》 |2020年第jul1期|138138.1-138138.10|共10页
  • 作者单位

    Department of Civil Engineering Federal University of Vicosa Av. Peter Henry Rolfs s Campus da Universidade Federal de Vicosa Vicosa Minas Gerais 36570-900 Brazil;

    Department of Civil Engineering Federal University of Vicosa Av. Peter Henry Rolfs s Campus da Universidade Federal de Vicosa Vicosa Minas Gerais 36570-900 Brazil;

    Department of Civil Engineering Federal University of Vicosa Av. Peter Henry Rolfs s Campus da Universidade Federal de Vicosa Vicosa Minas Gerais 36570-900 Brazil;

    Department of Water Resources and Sanitation Federal University of Lavras Campus Universitario 37200-900 Lavras Minas Gerais Brazil;

    Department of Civil Engineering Federal University of Vicosa Av. Peter Henry Rolfs s Campus da Universidade Federal de Vicosa Vicosa Minas Gerais 36570-900 Brazil;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Effluent treatment; Algal biomass; High rate algal ponds; Biofertilizer; Nutrient recovery;

    机译:流出处理;藻类生物量;高利率藻类池塘;生物元化器;营养回收;

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