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从城市固体废物中生产生物燃料和化学品的健壮微生物。

Robust microorganisms for biofuel and chemical production from municipal solid waste.

机构信息

Centre for Novel Agricultural Products (CNAP), Department of Biology, University of York, Heslington, YO10 5DD, York, UK.

Department of Biology, University of York, Heslington, YO10 5DD, York, UK.

出版信息

Microb Cell Fact. 2020 Mar 16;19(1):68. doi: 10.1186/s12934-020-01325-0.

Abstract

BACKGROUND

Worldwide 3.4 billion tonnes of municipal solid waste (MSW) will be produced annually by 2050, however, current approaches to MSW management predominantly involve unsustainable practices like landfilling and incineration. The organic fraction of MSW (OMSW) typically comprises ~ 50% lignocellulose-rich material but is underexplored as a biomanufacturing feedstock due to its highly inconsistent and heterogeneous composition. This study sought to overcome the limitations associated with studying MSW-derived feedstocks by using OMSW produced from a realistic and reproducible MSW mixture on a commercial autoclave system. The resulting OMSW fibre was enzymatically hydrolysed and used to screen diverse microorganisms of biotechnological interest to identify robust species capable of fermenting this complex feedstock.

RESULTS

The autoclave pre-treated OMSW fibre contained a polysaccharide fraction comprising 38% cellulose and 4% hemicellulose. Enzymatic hydrolysate of OMSW fibre was high in D-glucose (5.5% w/v) and D-xylose (1.8%w/v) but deficient in nitrogen and phosphate. Although relatively low levels of levulinic acid (30 mM) and vanillin (2 mM) were detected and furfural and 5-hydroxymethylfurfural were absent, the hydrolysate contained an abundance of potentially toxic metals (0.6% w/v). Hydrolysate supplemented with 1% yeast extract to alleviate nutrient limitation was used in a substrate-oriented shake-flask screen with eight biotechnologically useful microorganisms (Clostridium saccharoperbutylacetonicum, Escherichia coli, Geobacillus thermoglucosidasius, Pseudomonas putida, Rhodococcus opacus, Saccharomyces cerevisiae, Schizosaccharomyces pombe and Zymomonas mobilis). Each species' growth and productivity were characterised and three species were identified that robustly and efficiently fermented OMSW fibre hydrolysate without significant substrate inhibition: Z. mobilis, S. cerevisiae and R. opacus, respectively produced product to 69%, 70% and 72% of the maximum theoretical fermentation yield and could theoretically produce 136 kg and 139 kg of ethanol and 91 kg of triacylglycerol (TAG) per tonne of OMSW.

CONCLUSIONS

Developing an integrated biorefinery around MSW has the potential to significantly alleviate the environmental burden of current waste management practices. Substrate-oriented screening of a representative and reproducible OMSW-derived fibre identified microorganisms intrinsically suited to growth on OMSW hydrolysates. These species are promising candidates for developing an MSW biorefining platform and provide a foundation for future studies aiming to valorise this underexplored feedstock.

摘要

背景

到 2050 年,全球每年将产生 34 亿吨城市固体废物(MSW),然而,目前的 MSW 管理方法主要涉及填埋和焚烧等不可持续的做法。MSW 的有机部分(OMSW)通常包含约 50%的富含木质纤维素的物质,但由于其高度不一致和异质的组成,作为生物制造原料尚未得到充分探索。本研究旨在克服与研究 MSW 衍生原料相关的限制,使用在商业高压釜系统中从实际且可重复的 MSW 混合物中产生的 OMSW 来实现这一目标。所得 OMSW 纤维经过酶水解,用于筛选各种具有生物技术兴趣的微生物,以鉴定能够发酵这种复杂原料的健壮物种。

结果

高压釜预处理的 OMSW 纤维含有一种多糖部分,包含 38%的纤维素和 4%的半纤维素。OMSW 纤维的酶水解产物中 D-葡萄糖(5.5%w/v)和 D-木糖(1.8%w/v)含量较高,但氮和磷含量不足。尽管检测到相对较低水平的乙酰丙酸(30mM)和香草醛(2mM),且不存在糠醛和 5-羟甲基糠醛,但水解物中含有丰富的潜在有毒金属(0.6%w/v)。在补充有 1%酵母提取物以缓解营养限制的水解物中,使用 8 种具有生物技术用途的微生物(产丁醇梭菌、大肠杆菌、嗜热解糖梭菌、恶臭假单胞菌、费氏丙酸杆菌、酿酒酵母、酿酒酵母和运动发酵单胞菌)进行了基于底物的摇瓶筛选。对每个物种的生长和生产力进行了表征,并鉴定出三种能够在不产生显著底物抑制的情况下高效发酵 OMSW 纤维水解物的物种:运动发酵单胞菌、酿酒酵母和费氏丙酸杆菌,分别达到最大理论发酵产率的 69%、70%和 72%,理论上可从每吨 OMSW 中生产 136 公斤、139 公斤乙醇和 91 公斤三酰基甘油(TAG)。

结论

围绕 MSW 开发综合生物精炼厂有潜力显著减轻当前废物管理实践的环境负担。对代表性和可重复的 OMSW 衍生纤维进行基于底物的筛选,鉴定出了固有适合在 OMSW 水解物上生长的微生物。这些物种是开发 MSW 生物精炼平台的有前途的候选者,并为进一步研究旨在提高这种未充分探索的原料的价值提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8e8a/7077162/480af6b6ab28/12934_2020_1325_Fig1_HTML.jpg

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