来源:Sustainable Chemistry 发布时间:2026/8/7 16:32:56
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2026上半年文章荐读| MDPI Sustainable Chemistry

期刊名:Sustainable Chemistry

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

我们很高兴与您分享 Sustainable Chemistry 期刊在2026上半年发表的部分精选文章。希望能为相关领域学者提供新的思路和参考,欢迎阅读。

1. Reducing the Environmental Impact of Wet Chemical Processes for Advanced Semiconductor Manufacturing

降低先进半导体制造中湿法化学工艺对环境的影响

https://www.mdpi.com/2673-4079/7/1/8

Gocyla, M.; Boakes, L.; Struyf, H.; Chokri, R.; Vandevenne, T.; Van Caneghem, J.; Rolin, C.; De Gendt, S. Reducing the Environmental Impact of Wet Chemical Processes for Advanced Semiconductor Manufacturing. Sustain. Chem. 2026, 7, 8.

2. Optimizing an Integrated Biorefining Process for Birch Veneer Chips and Lignocellulosic Residues: Enhancing Cellulose Preservation and Maximizing Furfural and Acetic Acid Production

桦木单板碎片与木质纤维素残渣综合生物炼制工艺优化:提高纤维素保留率并最大化糠醛与乙酸产量

https://www.mdpi.com/2673-4079/7/1/11

Godina, D.; Brazdausks, P.; Puke, M. Optimizing an Integrated Biorefining Process for Birch Veneer Chips and Lignocellulosic Residues: Enhancing Cellulose Preservation and Maximizing Furfural and Acetic Acid Production. Sustain. Chem. 2026, 7, 11.

3. The Influence of Moringa oleifera Biomass and Extraction Methods on Biogenic Synthesis of Iron Nanoparticles for Inhibition of Microbial Pollutants

辣木生物质及提取方法对用于抑制微生物污染物的铁纳米颗粒生物合成的影响

https://www.mdpi.com/2673-4079/7/1/4

Medina-Ganem, L.F.; Valencia-Espinoza, N.; Ayoko, G.A.; Bandala, E.; Conejo-Davila, A.S.; Vega-Rios, A.; Goonetilleke, A.; Rodriguez-Narvaez, O.M. The Influence of Moringa oleifera Biomass and Extraction Methods on Biogenic Synthesis of Iron Nanoparticles for Inhibition of Microbial Pollutants. Sustain. Chem. 2026, 7, 4.

4. A Sustainable Circular Route for PET LDH Nanocomposites: Catalyst-Driven Polymerization and Depolymerization for a BHET-to-BHET Cycle

PET-LDH纳米复合材料的可持续循环路径:实现BHET至BHET循环的催化驱动聚合与解聚

https://www.mdpi.com/2673-4079/7/1/6

Tsai, T.-Y.; Hussain, B.; Bunekar, N. A Sustainable Circular Route for PET LDH Nanocomposites: Catalyst-Driven Polymerization and Depolymerization for a BHET-to-BHET Cycle. Sustain. Chem. 2026, 7, 6.

5. Sustainable Methods for Conversion of Cellulosic Biomass to Bio-Based Plastics: A Green Chemistry Approach

将纤维素生物质转化为生物基塑料的可持续方法:一种绿色化学途径

https://www.mdpi.com/2673-4079/7/2/20

Gaafar, M.M.; Hamza, M.; Manzoor, M.H.; Elsayed, I.; Hassan, E.b. Sustainable Methods for Conversion of Cellulosic Biomass to Bio-Based Plastics: A Green Chemistry Approach. Sustain. Chem. 2026, 7, 20.

6. Investigating the Separation Efficiency of Ultrafiltration/Diafiltration (UF/DF) of Whey by Dielectric Measurements

利用介电测量研究乳清超滤/透析滤过(UF/DF)的分离效率

https://www.mdpi.com/2673-4079/7/1/1

Dobozi, R.; Jákói, Z.P.; Beszédes, S.; Szabó, B.P.; Kertész, S. Investigating the Separation Efficiency of Ultrafiltration/Diafiltration (UF/DF) of Whey by Dielectric Measurements. Sustain. Chem. 2026, 7, 1.

7. Metol Electrochemical Sensing over LASIS Gold Nanoparticle-Modified Screen-Printed Carbon Electrodes in Adsorption Studies with Waste Biomass-Derived Highly Porous Carbon Material

基于LASIS金纳米颗粒修饰丝网印刷碳电极的对苯二酚(Metol)电化学传感:结合废弃生物质衍生高孔隙率碳材料的吸附研究

https://www.mdpi.com/2673-4079/7/1/5

Radenkovi?, M.; Lazi?, A.; Kova?evi?, M.; Ognjanovi?, M.; Stankovi?, D.; Reli?, D.; Kalijadis, A.; Dimitrijevi?, A.; ?ivkovi?, S. Metol Electrochemical Sensing over LASIS Gold Nanoparticle-Modified Screen-Printed Carbon Electrodes in Adsorption Studies with Waste Biomass-Derived Highly Porous Carbon Material. Sustain. Chem. 2026, 7, 5.

8. Synthesis, Characterization, and Performance Evaluation of Nanocrystalline Metal Oxides for Shale Inhibition in Water-Based Drilling Fluids

用于水基钻井液页岩抑制的纳米晶金属氧化物的合成、表征及性能评价

https://www.mdpi.com/2673-4079/7/1/3

Doukeh, R.; Eparu, C.N.; Prundurel, A.P.; Tudose, M.; Br?noiu, G.; Ghe?iu, I.V.; P?un, L.?.; Mihai, S.; Stan, I.G.; Stoica, D.B. Synthesis, Characterization, and Performance Evaluation of Nanocrystalline Metal Oxides for Shale Inhibition in Water-Based Drilling Fluids. Sustain. Chem. 2026, 7, 3.

9. Valorization of Used Frying Oils via Enzymatic Alcoholysis

利用酶促醇解技术实现废弃煎炸油的增值利用

https://www.mdpi.com/2673-4079/7/1/12

Bouaid, A. Valorization of Used Frying Oils via Enzymatic Alcoholysis. Sustain. Chem. 2026, 7, 12.

10. Amorphous Anodized Porous Titania as IrO2 Substrate for the Electrochemical Oxygen Evolution Reaction

用于电化学析氧反应的非晶态阳极氧化多孔二氧化钛 IrO2 载体

https://www.mdpi.com/2673-4079/7/1/2

Mitrousi, E.; Kokkinou, T.; Zografaki, M.; Nikopoulou, M.; Banti, A.; Lambropoulou, D.A.; Sotiropoulos, S. Amorphous Anodized Porous Titania as IrO2 Substrate for the Electrochemical Oxygen Evolution Reaction. Sustain. Chem. 2026, 7, 2.

11. Cleaner Chemistry for Clean Energy: PFAS-Free Materials in PEM Electrochemical Technologies

面向清洁能源的更清洁化学:质子交换膜(PEM)电化学技术中的无PFAS材料

https://www.mdpi.com/2673-4079/7/2/21

Napolitano, E.S.; Rosati, A.; Bezzon, A.; Moretti, I.; Suárez-Vega, A.; Brusciotti, F.; Meduri, A. Cleaner Chemistry for Clean Energy: PFAS-Free Materials in PEM Electrochemical Technologies. Sustain. Chem. 2026, 7, 21.

12. Sustainable Intensification of AOPs by Hydrodynamic Cavitation: A Critical Review

利用流体动力空化技术实现高级氧化工艺(AOPs)的可持续强化——评述

https://www.mdpi.com/2673-4079/7/2/26

Albanese, L. Sustainable Intensification of AOPs by Hydrodynamic Cavitation: A Critical Review. Sustain. Chem. 2026, 7, 26.

13. From Agricultural Food Waste to Edible and Biodegradable Films: A Smart and Sustainable Approach to Meat Packaging

从农业食品废弃物到可食用生物降解膜:一种肉类包装的智能且可持续方案

https://www.mdpi.com/2673-4079/7/2/23

Alam, A.M.M.N.; Kim, S.-H.; Kim, C.-J.; Samad, A.; Kumari, S.; An, S.-H.; Ali, M.S.; Habib, M.; Muazzam, A.; Hwang, Y.-H.; et al. From Agricultural Food Waste to Edible and Biodegradable Films: A Smart and Sustainable Approach to Meat Packaging. Sustain. Chem. 2026, 7, 23.

14. Trade-Offs Between Antioxidant Functionality and Physical Properties of Glycerol-Plasticized Chitosan Nanocomposite Films Containing Different-Sized Lignin Nanoparticles

含不同粒径木质素纳米粒子的甘油增塑壳聚糖纳米复合膜:抗氧化功能与物理性能之间的权衡

https://www.mdpi.com/2673-4079/7/1/15

Witayakran, S.; Djajadi, D.T.; Martens, H.J.; Risbo, J.; Andersen, M.L.; Thygesen, L.G. Trade-Offs Between Antioxidant Functionality and Physical Properties of Glycerol-Plasticized Chitosan Nanocomposite Films Containing Different-Sized Lignin Nanoparticles. Sustain. Chem. 2026, 7, 15.

15. Water-Based Pretreatment Combined with Severity-Optimized Organosolv Enables Near-Complete Enzymatic Hydrolysis of Wheat Straw at Reduced Energy Demand

水基预处理结合强度优化的有机溶剂法,实现了小麦秸秆在低能耗条件下的近完全酶解。

https://www.mdpi.com/2673-4079/7/2/17

Guo, T.; Thielen, D.; Aydin, M.; Tippkötter, N. Water-Based Pretreatment Combined with Severity-Optimized Organosolv Enables Near-Complete Enzymatic Hydrolysis of Wheat Straw at Reduced Energy Demand. Sustain. Chem. 2026, 7, 17.

期刊介绍

主编:Prof. Dr. Matthew Jones, University of Bath, UK

Sustainable Chemistry (ISSN 2673-4079) 是一个国际型开放获取英文学术期刊,旨在为化学工程中可替代的绿色可持续技术提供国际化的学术交流平台。期刊研究领域涵盖绿色工艺、绿色试剂和原料、可再生能源、绿色合成、可持续化学的应用以及绿色化学的影响。其中包括工艺设计、分离纯化技术,绿色溶剂、可再生原料、废物回收利用、二氧化碳的捕获储存,可替代能源、生物质燃料、电池、能源存储、能源效率,有机无机催化合成,仿生和生物传感器的应用、绿色吸附剂、生物质基材料,生命周期评估、污染防治和减少、生态毒理等具体研究问题。我们鼓励科学家尽可能详细地发表实验和理论研究,这些研究既可以是具有学报特色的创造性研究论文,也可以是具有通报特色的综述文章。

2025 Impact Factor:5.0

2025 CiteScore:7.8

Time to First Decision:19.8 Days

Acceptance to Publication:6.9 Days

 
 
 
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