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筛选马来西亚燃煤电厂附近具有固碳能力的本土微藻物种。

Screening of native microalgae species for carbon fixation at the vicinity of Malaysian coal-fired power plant.

机构信息

Department of Chemical and Environmental Engineering, Faculty of Engineering, Universiti Putra Malaysia, 43400, Serdang, Selangor, Malaysia.

Centre of Bioenergy and Sustainability, Renewable Energy and Green Technology, TNB Research Sdn. Bhd., No. 1, Lorong Ayer Itam, Kawasan Institusi Penyelidikan, 43000, Kajang, Selangor, Malaysia.

出版信息

Sci Rep. 2020 Dec 18;10(1):22355. doi: 10.1038/s41598-020-79316-9.

Abstract

Global warming has become a serious issue nowadays as the trend of CO emission is increasing by years. In Malaysia, the electricity and energy sector contributed a significant amount to the nation's CO emission due to fossil fuel use. Many research works have been carried out to mitigate this issue, including carbon capture and utilization (CCUS) technology and biological carbon fixation by microalgae. This study makes a preliminary effort to screen native microalgae species in the Malaysian coal-fired power plant's surrounding towards carbon fixation ability. Three dominant species, including Nannochloropsis sp., Tetraselmis sp., and Isochrysis sp. were identified and tested in the laboratory under ambient and pure CO condition to assess their growth and CO fixation ability. The results indicate Isochrysis sp. as the superior carbon fixer against other species. In continuation, the optimization study using Response Surface Methodology (RSM) was carried out to optimize the operating conditions of Isochrysis sp. using a customized lab-scale photobioreactor under simulated flue gas exposure. This species was further acclimatized and tested under actual flue gas generated by the power plant. Isochrysis sp. had shown its capability as a carbon fixer with CO fixation rate of 0.35 gCO/L day under actual coal-fired flue gas exposure after cycles of acclimatization phase. This work is the first to demonstrate indigenous microalgae species' ability as a carbon fixer under Malaysian coal-fired flue gas exposure. Thus, the findings shall be useful in exploring the microalgae potential as a biological agent for carbon emission mitigation from power plants more sustainably.

摘要

全球变暖已成为当今的一个严重问题,因为 CO 排放量的趋势逐年增加。在马来西亚,由于使用化石燃料,电力和能源部门对国家的 CO 排放做出了重大贡献。为了解决这个问题,已经开展了许多研究工作,包括碳捕获和利用(CCUS)技术以及微藻的生物固碳。本研究初步筛选了马来西亚燃煤电厂周边的本地微藻物种,以评估其固碳能力。确定并在实验室中测试了三种优势物种,包括 Nannochloropsis sp.、Tetraselmis sp.和 Isochrysis sp.,在环境和纯 CO 条件下评估它们的生长和 CO 固定能力。结果表明,Isochrysis sp.是其他物种中较好的碳固定剂。在此基础上,利用响应面法(RSM)进行了优化研究,在模拟烟气暴露下使用定制的实验室规模光生物反应器优化 Isochrysis sp.的操作条件。该物种进一步在电厂产生的实际烟气中进行驯化和测试。Isochrysis sp.在经过驯化阶段的循环后,在实际燃煤烟气暴露下显示出其作为碳固定剂的能力,CO 固定率为 0.35 gCO/L·天。这项工作首次证明了在马来西亚燃煤烟气暴露下本地微藻物种作为碳固定剂的能力。因此,这些发现将有助于探索微藻作为一种生物剂从电厂减少碳排放的潜力,从而更可持续地实现这一目标。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e38d/7749181/630bfc4a954b/41598_2020_79316_Fig1_HTML.jpg

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