مقاله انگلیسی رایگان در مورد برداشت کارآمد میکرو جلبک – الزویر 2019

 

مشخصات مقاله
ترجمه عنوان مقاله برداشت کارآمد میکرو جلبک به واسطه تعامل پلی ساکاریدها با کلسیم و فسفات باقیمانده در محیط رشد
عنوان انگلیسی مقاله Efficient microalgae harvesting mediated by polysaccharides interaction with residual calcium and phosphate in the growth medium
انتشار مقاله سال 2019
تعداد صفحات مقاله انگلیسی 7 صفحه
هزینه دانلود مقاله انگلیسی رایگان میباشد.
پایگاه داده نشریه الزویر
نوع نگارش مقاله
مقاله پژوهشی (Research Article)
مقاله بیس این مقاله بیس نمیباشد
نمایه (index) Scopus – Master Journals List – JCR
نوع مقاله ISI
فرمت مقاله انگلیسی  PDF
ایمپکت فاکتور(IF)
7.096 در سال 2018
شاخص H_index 150 در سال 2019
شاخص SJR 1.620 در سال 2018
شناسه ISSN 0959-6526
شاخص Quartile (چارک) Q1 در سال 2018
مدل مفهومی ندارد
پرسشنامه ندارد
متغیر ندارد
رفرنس دارد
رشته های مرتبط زیست، شیمی
گرایش های مرتبط بیوشیمی
نوع ارائه مقاله
ژورنال
مجله / کنفرانس مجله تولید پاک – Journal of Cleaner Production
دانشگاه  Advanced Biomass R&D Center, Korea Advanced Institute of Science and Technology (KAIST), Daejeon, 305-701, Republic of Korea
کلمات کلیدی میکروجلبک، برداشت، لخته شدن خودکار، پلی ساکاریدها، کلسیم، فسفات
کلمات کلیدی انگلیسی Microalgae، Harvesting، Auto-flocculation، PSAs، Calcium، Phosphate
شناسه دیجیتال – doi
https://doi.org/10.1016/j.jclepro.2019.06.154
کد محصول  E12819
وضعیت ترجمه مقاله  ترجمه آماده این مقاله موجود نمیباشد. میتوانید از طریق دکمه پایین سفارش دهید.
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فهرست مطالب مقاله:
Abstract
Graphical abstract
1. Introduction
2. Material and methods
3. Results
4. Discussion
5. Extensibility of PSAs-based auto-flocculation concept
6. Economic and environmental sustainability
7. Conclusions
Declaration of interest
Acknowledgments
Appendix A. Supplementary data
References

 

بخشی از متن مقاله:
Abstract

This study sets out to harvest microalgae through auto-flocculation by manipulating the interactive effect of calcium, phosphate, and polysaccharides (PSAs). The harvesting efficiency (H.E) of 91 ± 2.7% was achieved for Ettlia sp. through auto-flocculation. The H.E was attributed to the chelation of calcium and PSAs present in microalgae medium. In the absence of PSAs, the H.E reduced to 64 ± 05% only. The addition of phosphate (34 ± 0.13 mg L1 ) increased the H.E to 73 ± 1.5%. Zeta-potential measurements showed that the harvesting was induced by charge neutralization and inter-particle bridging. The PSAsbased auto-flocculation was tested for Chlorella sp. too but it turned out the H.E of 51 ± 1.3% only. The flocculation did not take place when the co-harvesting of Ettlia sp. and Chlorella sp. was carried out. It is concluded that each microalgae specie shows different auto-flocculation mechanism due to variation in their PSAs characteristics. It triggers up the need for setting up a distinct protocol for different microalgae species to assess their auto-flocculation potential.

Introduction

Harvesting or dewatering is a critical step of microalgae bioprocessing (Gejji and Fernando, 2018; Pradhan et al., 2019). Harvesting accounts for 20e30% of the total cost of microalgae bioprocessing (Sahoo et al., 2017a; Yoo et al., 2013). So far, various methods for microalgae harvesting including centrifugation, dissolved air flotation, and filtration have been developed; however, none of them is cost-effective yet (Sahoo et al., 2017b). To address this challenge, auto-flocculation has been recognized as an alternative method for microalgae harvest (Raheem et al., 2018). Autoflocculation is a cheap and efficient method (Lai et al., 2016; Mathimani et al., 2018; Wang et al., 2018). It demands less resource input than any other method of microalgae harvest (Ding et al., 2017; Jimenez et al., 2017 ). Auto-flocculation is based on the principle of the well-known chemical flocculation process; however, it does not involve the addition of expensive chemicals. Autoflocculation is mainly driven by the interaction of polysaccharides (PSAs), calcium, and phosphate (Tran et al., 2017; Ummalyma et al., 2017; Vandamme et al., 2012). PSAs are the form of polymeric carbohydrates, which are produced by microalgae under specific cultivation conditions. PSAs are composed of glucose, arabinose, galactose, xylose, mannose, and fructose. Each sugar group has a different role in cell metabolism. For example, arabinose controls cell aggregation properties, and galactose is responsible for providing energy. It is widely known that microalgae produce PSAs under light and nutrients stress condition. The yield and the characteristics of PSAs depend on the microalgal species (Lee et al., 2016; Vandamme et al., 2012).

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