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利用水热液化技术将废水用于大规模微藻培养和生物燃料生产的可行性:综述

Feasibility of Utilizing Wastewaters for Large-Scale Microalgal Cultivation and Biofuel Productions Using Hydrothermal Liquefaction Technique: A Comprehensive Review.

作者信息

Bagchi Sourav Kumar, Patnaik Reeza, Prasad Ramasare

机构信息

Department of Bioscience and Bioengineering, Indian Institute of Technology Roorkee, Roorkee, India.

DBT-IOC Centre for Advanced Bioenergy Research, Research and Development Centre, Indian Oil Corporation Limited (IOCL), Faridabad, India.

出版信息

Front Bioeng Biotechnol. 2021 Nov 19;9:651138. doi: 10.3389/fbioe.2021.651138. eCollection 2021.

Abstract

The two major bottlenecks faced during microalgal biofuel production are, (a) higher medium cost for algal cultivation, and (b) cost-intensive and time consuming oil extraction techniques. In an effort to address these issues in the large scale set-ups, this comprehensive review article has been systematically designed and drafted to critically analyze the recent scientific reports that demonstrate the feasibility of microalgae cultivation using wastewaters in outdoor raceway ponds in the first part of the manuscript. The second part describes the possibility of bio-crude oil production directly from wet algal biomass, bypassing the energy intensive and time consuming processes like dewatering, drying and solvents utilization for biodiesel production. It is already known that microalgal drying can alone account for ∼30% of the total production costs of algal biomass to biodiesel. Therefore, this article focuses on bio-crude oil production using the hydrothermal liquefaction (HTL) process that converts the wet microalgal biomass directly to bio-crude in a rapid time period. The main product of the process, i.e., bio-crude oil comprises of C16-C20 hydrocarbons with a reported yield of 50-65 (wt%). Besides elucidating the unique advantages of the HTL technique for the large scale biomass processing, this review article also highlights the major challenges of HTL process such as update, and purification of HTL derived bio-crude oil with special emphasis on deoxygenation, and denitrogenation problems. This state of art review article is a pragmatic analysis of several published reports related to algal crude-oil production using HTL technique and a guide towards a new approach through collaboration of industrial wastewater bioremediation with rapid one-step bio-crude oil production from chlorophycean microalgae.

摘要

微藻生物燃料生产过程中面临的两个主要瓶颈是

(a)藻类培养的培养基成本较高,以及(b)成本高昂且耗时的油提取技术。为了在大规模生产中解决这些问题,本文撰写了这篇全面的综述文章,系统地设计并起草,以批判性地分析近期的科学报告。第一部分阐述了利用废水在室外跑道池中培养微藻的可行性。第二部分描述了直接从湿藻生物质生产生物原油的可能性,绕过了如脱水、干燥以及用于生物柴油生产的溶剂使用等能源密集型和耗时的过程。众所周知,微藻干燥 alone 就可占藻类生物质转化为生物柴油总成本的约30%。因此,本文重点关注使用水热液化(HTL)工艺生产生物原油,该工艺可在短时间内将湿微藻生物质直接转化为生物原油。该工艺的主要产物,即生物原油,由C16 - C20烃类组成,报道的产率为50 - 65(wt%)。除了阐明HTL技术在大规模生物质处理方面的独特优势外,这篇综述文章还强调了HTL工艺的主要挑战,如HTL衍生生物原油的升级和纯化,特别强调脱氧和脱氮问题。这篇综述文章是对几篇与使用HTL技术生产藻类原油相关的已发表报告的务实分析,也是通过将工业废水生物修复与从绿藻微藻快速一步生产生物原油相结合,迈向新方法的指南。

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