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Processes期刊2024-2025“生物过程和系统”方向文章精选 MDPI编辑荐读

  Processes期刊2024-2025“生物过程和系统”方向文章精选 MDPI编辑荐读。期刊名:Processes

   期刊主页:https://www.mdpi.com/journal/processes

   本期文献清单为您精选了Processes期刊2024–2025年发表的15篇文章,内容涵盖生物修复过程,发酵技术、酶技术,生物塑料和生物表面活性剂等研究。希望能为相关领域学者提供新的研究思路和参考,欢迎大家阅读。

   文章1

   An Experimental Investigation of Hydrogen Production through Biomass Electrolysis

   生物质电解制氢的实验研究

   https://www.mdpi.com/2227-9717/12/1/112

   Umer, M.; Brandoni, C.; Jaffar, M.; Hewitt, N.J.; Dunlop, P.; Zhang, K.; Huang, Y. An Experimental Investigation of Hydrogen Production through Biomass Electrolysis. Processes 2024, 12, 112.

   文章2

   Effect of Recycling on Thermomechanical Properties of Zein and Soy Protein Isolate Bioplastics

   回收利用对玉米醇溶蛋白和大豆分离蛋白生物塑料的热机械性能的影响

   https://www.mdpi.com/2227-9717/12/2/302

   Alsadat-Seyedbokaei, F.; Felix, M.; Bengoechea, C. Effect of Recycling on Thermomechanical Properties of Zein and Soy Protein Isolate Bioplastics. Processes 2024, 12, 302.

   文章3

   Enzymatic Pretreatment of Slaughterhouse Wastewater: Application of Whole Lipolytic Cells of Rhizopus oryzae Produced from Residual Vegetable Oil

   利用废弃植物油培养的米根霉全脂解细胞对屠宰场废水的酶法预处理

   https://www.mdpi.com/2227-9717/12/3/500

   Reis, W.S.M.; Bento, H.B.S.; Carvalho, A.K.F.; Pereira, E.B. Enzymatic Pretreatment of Slaughterhouse Wastewater: Application of Whole Lipolytic Cells of Rhizopus oryzae Produced from Residual Vegetable Oil. Processes 2024, 12, 500.

   文章4

   Hybrid Modeling for On-Line Fermentation Optimization and Scale-Up: A Review

   用于在线发酵优化与放大的混合建模研究综述

   https://www.mdpi.com/2227-9717/12/8/1635

   Albino, M.; Gargalo, C.L.; Nadal-Rey, G.; Albæk, M.O.; Krühne, U.; Gernaey, K.V. Hybrid Modeling for On-Line Fermentation Optimization and Scale-Up: A Review. Processes 2024, 12, 1635.

   文章5

   Physical Cell Disruption Technologies for Intracellular Compound Extraction from Microorganisms

   用于从微生物中提取细胞内化合物的物理细胞破碎技术

   https://www.mdpi.com/2227-9717/12/10/2059

   Zhao, F.; Wang, Z.; Huang, H. Physical Cell Disruption Technologies for Intracellular Compound Extraction from Microorganisms. Processes 2024, 12, 2059.

   文章6

   Kombucha Fermentation in Coffee: Application of Constant Air Flow Reactor

   恒流气升式反应器应用在咖啡基质中康普茶的发酵过程

   https://www.mdpi.com/2227-9717/12/10/2159

   Blaszak, B.; Dorawa, P.; Sudo?, P.; Fabiszak, K.; Swiadek, M.; Witucka, K.; Zimnicka, J.; Brudnicki, M.; Maciejewski, B.; Bovkun, D.; et al. Kombucha Fermentation in Coffee: Application of Constant Air Flow Reactor. Processes 2024, 12, 2159.

   文章7

   Production, Characterization and Application of Biosurfactant for Cleaning Cotton Fabric and Removing Oil from Contaminated Sand

   用于棉织物清洁和去除受污染沙子中油污的生物表面活性剂的生产、表征和应用

   https://www.mdpi.com/2227-9717/12/11/2584

   Silva, R.R.; Caldas, M.C.F.; Lima, C.V.A.; Meira, H.M.; Sarubbo, L.A.; Luna, J.M. Production, Characterization and Application of Biosurfactant for Cleaning Cotton Fabric and Removing Oil from Contaminated Sand. Processes 2024, 12, 2584.

   文章8

   Lipid Production from Palm Acid Oil (PAO) as a Sole Carbon Source by Meyerozyma guilliermondii

   吉氏梅耶酵母以棕榈酸油(PAO)为唯一碳源生产油脂

   https://www.mdpi.com/2227-9717/13/2/311

   Zain, N.-A.A.; Tan, K.L.; Kahar, P.; Ogino, C. Lipid Production from Palm Acid Oil (PAO) as a Sole Carbon Source by Meyerozyma guilliermondii. Processes 2025, 13, 311.

   文章9

   Biosurfactant Production by Yarrowia lipolytica in Corn Steep Liquor-Based Media for Hydrocarbon Bioremediation

   利用解脂耶氏酵母在玉米浸液培养基中生产生物表面活性剂并用于烃类生物修复过程

   https://www.mdpi.com/2227-9717/13/2/412

   Lopes, J.M.; Macedo, B.P.; Sodré, T.S.; Cayres, C.A.; Ferreira, R.M.; Fraga, J.L.; Coelho, M.A.Z.; Amaral, P.F.F.; Ferreira, T.F. Biosurfactant Production by Yarrowia lipolytica in Corn Steep Liquor-Based Media for Hydrocarbon Bioremediation. Processes 2025, 13, 412.

   文章10

   Bacterial-Retted Hemp Fiber/PLA Composites

   细菌沤制大麻纤维/PLA复合材料

   https://www.mdpi.com/2227-9717/13/4/1000

   Smith, L.M.; Fu, Y.; Pittala, R.K.; Wang, X.; Jabel, C.; Masignag, K.; Arellanes, J.; Ghosh, M.; Shi, S.Q.; Ecker, M.; et al. Bacterial-Retted Hemp Fiber/PLA Composites. Processes 2025, 13, 1000.

   文章11

   Transcriptomic Response of Azospirillum brasilense Co-Cultured with Green Microalgae Chlorella sp. and Scenedesmus sp. During CO2 Biogas Fixation

   巴西固氮螺菌与绿藻小球藻和栅藻在二氧化碳沼气固定过程中共培养的转录组响应

   https://www.mdpi.com/2227-9717/13/7/2177

   Garciglia-Mercado, C.; Palacios, O.A.; Contreras-Godínez, C.A.; Torres-Velázquez, J.R.; Choix, F.J. Transcriptomic Response of Azospirillum brasilense Co-Cultured with Green Microalgae Chlorella sp. and Scenedesmus sp. During CO2 Biogas Fixation. Processes 2025, 13, 2177.

   文章12

   Influence of Polyester and Denim Microfibers on the Treatment and Formation of Aerobic Granules in Sequencing Batch Reactors

   聚酯和牛仔布微纤维对序批式反应器中好氧颗粒处理和形成的影响

   https://www.mdpi.com/2227-9717/13/7/2272

   Onyedibe, V.O.; Waseem, H.; Aqeel, H.; Liss, S.N.; Gilbride, K.A.; Sühring, R.; Hamza, R. Influence of Polyester and Denim Microfibers on the Treatment and Formation of Aerobic Granules in Sequencing Batch Reactors. Processes 2025, 13, 2272.

   文章13

   Edible Mushroom Cultivation in Liquid Medium: Impact of Microparticles and Advances in Control Systems

   液体培养基中食用菌栽培过程中微粒的影响以及控制系统方面的研究进展

   https://www.mdpi.com/2227-9717/13/8/2452

   Romero, J.C.F.; Oprea, O.B.; Gaceu, L.; Más Diego, S.M.; Morris Quevedo, H.J.; Galindo Alonso, L.; Rivero Ramírez, L.; Badea, M. Edible Mushroom Cultivation in Liquid Medium: Impact of Microparticles and Advances in Control Systems. Processes 2025, 13, 2452.

   文章14

   Immobilized Pseudomonas fluorescens Lipase on Eggshell Membranes for Sustainable Lipid Structuring in Cocoa Butter Substitute

   固定在蛋壳膜上的荧光假单胞菌脂肪酶用于可可脂替代品中脂质结构的可持续构建

   https://www.mdpi.com/2227-9717/13/8/2548

   Ostojcic, M.; Stjepanovic, M.; Bilic Rajs, B.; Strelec, I.; Velic, N.; Brekalo, M.; Hessel, V.; Budzaki, S. Immobilized Pseudomonas fluorescens Lipase on Eggshell Membranes for Sustainable Lipid Structuring in Cocoa Butter Substitute. Processes 2025, 13, 2548.

   文章15

   Efficient Bio-Oxidation of Cellobiose with Engineered Gluconobacter oxydans to Provide Highly Concentrated Cellobionic Acid

   利用工程化氧化葡萄糖酸杆菌对纤维二糖进行高效生物氧化,以制备高浓度的纤维二糖酸

   https://www.mdpi.com/2227-9717/12/7/1464

   Bieringer, E.; Pütthoff, L.; Zimmermann, A.; de Souza Góes, M.; Yilmaz, U.; Ehrenreich, A.; Liebl, W.; Weuster-Botz, D. Efficient Bio-Oxidation of Cellobiose with Engineered Gluconobacter oxydans to Provide Highly Concentrated Cellobionic Acid. Processes 2024, 12, 1464.

   Processes 期刊介绍

   主编:Giancarlo Cravotto, University of Turin, Italy

   期刊主题涵盖化学、生物、材料、能源、环境、食品、制药、制造等相关过程工程领域。目前已被Scopus、SCIE (Web of Science)、Ei Compendex、Inspec等数据库收录。

   2025 Impact Factor 3.4 2025 CiteScore 5.7 Time to First Decision 14.7 Days Median Publication Time 36 Days
来源:Processes

Processes期刊2024-2025“生物过程和系统”方向文章精选 MDPI编辑荐读

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