利用微藻将废水处理与生物刺激剂和生物炭生成相结合,促进植物生长

IF 3.7 3区 生物学 Q2 BIOCHEMISTRY & MOLECULAR BIOLOGY Process Biochemistry Pub Date : 2024-06-29 DOI:10.1016/j.procbio.2024.06.031
Jyoti Rawat , Manisha Nanda , Sanjay Kumar , Nishesh Sharma , Rohit Sharma , Harish Chandra Joshi , Mikhail S. Vlaskin , Afzal Hussain , Vinod Kumar
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引用次数: 0

摘要

水中污染物水平的升高凸显了有效处理废水的紧迫性。因此,人们开始关注微藻作为一种经济上和环境上可持续的废水处理方法的潜力。利用微藻处理废水后,微污染物的化学需氧量(COD)和生物需氧量(BOD)显著减少了 82%。铁(Fe)浓度降低了 99%,钙(Ca)浓度降低了 25%。从废水中获得的藻类生物质可用于生产生物炭和制备生物刺激剂。与对照组相比,生物刺激剂处理显著提高了玉米(Zea mays)和豆类(Phaseolus vulgaris)的种子发芽率,并增加了芽和根的长度。相反,在有生物炭的情况下,玉米和豆类的种子萌发完全受到抑制。气相色谱-质谱和核磁共振分析研究显示,微藻提取物中存在对植物生长有重大贡献的关键化合物。因此,这项研究总结了微藻作为可持续修复和生物刺激剂的多方面潜在应用。
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Integrating wastewater treatment to bio-stimulant & biochar generation for plant growth promotion using microalgae

The elevated level of pollutants in water highlights the urgency of effective wastewater treatment. Hence, the concern about the potential of microalgae as an economically and environmentally sustainable for wastewater treatment is addressed. Wastewater treatment using microalgae resulted in significant reductions in micropollutants by 82 % for chemical oxygen demand (COD) and biological oxygen demand (BOD). Iron (Fe) concentration was reduced by 99 %, while calcium (Ca) decreased by 25 %. Algal biomass obtained from wastewater is executed for biochar production and bio-stimulant preparation. Bio-stimulant treatment significantly enhanced seed germination and increased shoot and root lengths in maize (Zea mays) and beans (Phaseolus vulgaris) compared to the control. Conversely, seed germination was completely suppressed in both maize and beans in the presence of biochar of bio-stimulant treatment. The GC-MS and NMR analysis study revealed the presence of key compounds in the microalgal extract that have a great contribution to plant growth. Hence, the study concludes the multifaceted and potential application of microalgae as a remediation and bio-stimulant in a sustainable way.

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来源期刊
Process Biochemistry
Process Biochemistry 生物-工程:化工
CiteScore
8.30
自引率
4.50%
发文量
374
审稿时长
53 days
期刊介绍: Process Biochemistry is an application-orientated research journal devoted to reporting advances with originality and novelty, in the science and technology of the processes involving bioactive molecules and living organisms. These processes concern the production of useful metabolites or materials, or the removal of toxic compounds using tools and methods of current biology and engineering. Its main areas of interest include novel bioprocesses and enabling technologies (such as nanobiotechnology, tissue engineering, directed evolution, metabolic engineering, systems biology, and synthetic biology) applicable in food (nutraceutical), healthcare (medical, pharmaceutical, cosmetic), energy (biofuels), environmental, and biorefinery industries and their underlying biological and engineering principles.
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