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常规生长介质与新开发的纳米乳液介质中小藻类生物质生产的生命周期比较评估。

Comparative Life-Cycle assessment of microalgal biomass production in conventional growth media versus newly developed nanoemulsion media.

机构信息

Applied Microbiology Laboratory, Centre for Rural Development and Technology, Indian Institute of Technology Delhi, Hauz Khas New Delhi 110016, India.

Department of Chemical Engineering, Indian Institute of Technology Delhi, Hauz Khas New Delhi 110016, India.

出版信息

Bioresour Technol. 2022 May;352:127069. doi: 10.1016/j.biortech.2022.127069. Epub 2022 Mar 31.

Abstract

Microalgae biomass is a potential feedstock for biodiesel, animal feed, biofertilizer, and other products such as bioactive compounds. Most of the reported studies describe microalgae as a green process, however, the impacts associated with its growth media and cultivation have seldom been studied. With an aim to analyze the environmental impacts, the present study compares the life-cycle assessment of microalgal cultivation in two growth media. The data used was obtained from the experimental sets where microalgaeC. pyrenoidosawas cultivated in BG11 (control or SC-1) and silicone oil nanoemulsion (previously developed medium or SC-2) on a lab scale. The environmental impacts were evaluated using the ReCiPe midpoint and endpoint method using Sima Pro 9.0 software based on a "cradle-to-gate" approach. The total environmental score for 1 kg microalgal biomass production was 99.25Pt in SC-1, and 53.39Ptin SC-2, concluding greater environmental burden by SC-1. The photobioreactor construction material along with the operation led to maximum emissions, human toxicity, and resource depletion. In summary, the newly developed nanoemulsion medium was found to be eco-friendly that has the potential to minimize the usage of conventional nutrients and resources.

摘要

微藻生物质是生物柴油、动物饲料、生物肥料和其他产品(如生物活性化合物)的潜在原料。大多数报道的研究都将微藻描述为一种绿色过程,但很少研究其生长介质和培养相关的影响。本研究旨在分析环境影响,比较了两种生长介质中微藻培养的生命周期评估。使用的数据来自于实验设置,其中在实验室规模下用 BG11(对照或 SC-1)和硅酮油纳米乳液(先前开发的培养基或 SC-2)培养了 C. pyrenoidosa 微藻。使用 Sima Pro 9.0 软件基于“摇篮到大门”方法,使用 ReCiPe 中点和终点方法评估环境影响。在 SC-1 中,每公斤微藻生物质生产的总环境得分为 99.25Pt,在 SC-2 中为 53.39Pt,表明 SC-1 的环境负担更大。光生物反应器的建筑材料以及运行导致了最大的排放、人类毒性和资源枯竭。总之,新开发的纳米乳液培养基被发现是环保的,有可能最大限度地减少传统营养物质和资源的使用。

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