来源:Toxics 发布时间:2026/9/24 14:23:42
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文献清单:毒性削减与环境修复栏目高引文章推荐 | MDPI Toxics

期刊名:Toxics

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

本期精选了2024-2026年发表于Toxics期刊“毒性削减与环境修复”栏目的15篇文章,内容涵盖重金属污染土壤修复、吸附材料开发、污染物毒性分析与降解机理等多个方向。希望能为相关领域的研究人员提供新的思路与参考,欢迎阅读与交流。

1. Research Progress on Membrane Separation Technology for Oily Wastewater Treatment

含油废水处理中膜分离技术的研究进展

https://www.mdpi.com/2305-6304/12/11/794

Wang, Y.; Zhang, Y.; Liang, L.; Tu, F.; Li, Z.; Tang, X.; Dai, L.; Li, L. Research Progress on Membrane Separation Technology for Oily Wastewater Treatment. Toxics 2024, 12, 794. https://doi.org/10.3390/toxics12110794.

2. Microbially Induced Calcium Carbonate Precipitation as a Bioremediation Technique for Mining Waste

微生物诱导碳酸钙沉淀技术用于矿山废弃物的生物修复研究

https://www.mdpi.com/2305-6304/12/2/107

Wilcox, S.M.; Mulligan, C.N.; Neculita, C.M. Microbially Induced Calcium Carbonate Precipitation as a Bioremediation Technique for Mining Waste. Toxics 2024, 12, 107. https://doi.org/10.3390/toxics12020107.

3. Sustainable Development of ZnO Nanostructure Doping with Water Hyacinth-Derived Activated Carbon for Visible-Light Photocatalysis

水葫芦基活性炭掺杂氧化锌纳米结构的可持续制备及其可见光催化性能研究

https://www.mdpi.com/2305-6304/12/3/165

Krobthong, S.; Rungsawang, T.; Khaodara, N.; Kaewtrakulchai, N.; Manatura, K.; Sukiam, K.; Wathinputthiporn, D.; Wongrerkdee, S.; Boonruang, C.; Wongrerkdee, S. Sustainable Development of ZnO Nanostructure Doping with Water Hyacinth-Derived Activated Carbon for Visible-Light Photocatalysis. Toxics 2024, 12, 165. https://doi.org/10.3390/toxics12030165.

4. Chiral Analysis of Pesticides and Emerging Contaminants by Capillary Electrophoresis—Application to Toxicity Evaluation

毛细管电泳法用于农药及新型污染物的手性分析及其毒性评价应用

https://www.mdpi.com/2305-6304/12/3/185

García-Cansino, L.; Marina, M.L.; García, M.Á. Chiral Analysis of Pesticides and Emerging Contaminants by Capillary Electrophoresis—Application to Toxicity Evaluation. Toxics 2024, 12, 185. https://doi.org/10.3390/toxics12030185.

5. Identification and Mechanistic Analysis of Toxic Degradation Products in the Advanced Oxidation Pathways of Fluoroquinolone Antibiotics

氟喹诺酮类抗生素高级氧化路径中有毒降解产物的鉴定及机理分析

https://www.mdpi.com/2305-6304/12/3/203

Sun, S.; Wang, Z.; Pu, Q.; Li, X.; Cui, Y.; Yang, H.; Li, Y. Identification and Mechanistic Analysis of Toxic Degradation Products in the Advanced Oxidation Pathways of Fluoroquinolone Antibiotics. Toxics 2024, 12, 203. https://doi.org/10.3390/toxics12030203.

6. Sustainable Bio-Based Adsorbents for Simultaneous and Efficient Removal of Hazardous Dyes from Aqueous Solutions

可持续生物基吸附剂用于水溶液中有害染料的同步高效去除

https://www.mdpi.com/2305-6304/12/4/266

Vara, D.; Jha, S.; Bisht, S.; Shahabuddin, S.; Gaur, R.; Suhas; Tyagi, I. Sustainable Bio-Based Adsorbents for Simultaneous and Efficient Removal of Hazardous Dyes from Aqueous Solutions. Toxics 2024, 12, 266. https://doi.org/10.3390/toxics12040266.

7. Electrokinetic Remediation of Cu- and Zn-Contaminated Soft Clay with Electrolytes Situated above Soil Surfaces

电解液地表布设下铜和锌污染软黏土的电动修复研究

https://www.mdpi.com/2305-6304/12/8/563

Sun, Z.; Geng, J.; Zhang, C.; Du, Q. Electrokinetic Remediation of Cu- and Zn-Contaminated Soft Clay with Electrolytes Situated above Soil Surfaces. Toxics 2024, 12, 563. https://doi.org/10.3390/toxics12080563.

8. . Surfactant-Based Chemical Washing to Remediate Oil-Contaminated Soil: The State of Knowledge

表面活性剂化学淋洗修复石油污染土壤:研究进展

https://www.mdpi.com/2305-6304/12/9/648

Zhao, Y.; Sun, Y.; Sun, H.; Zuo, F.; Kuang, S.; Zhang, S.; Wang, F. Surfactant-Based Chemical Washing to Remediate Oil-Contaminated Soil: The State of Knowledge. Toxics 2024, 12, 648. https://doi.org/10.3390/toxics12090648.

9. Enhanced Tetracycline Adsorption Using KOH-Modified Biochar Derived from Waste Activated Sludge in Aqueous Solutions

KOH改性废弃活性污泥生物炭对水溶液中四环素的强化吸附

https://www.mdpi.com/2305-6304/12/10/691

Ding, J.; Liang, J.; Wang, Q.; Tan, X.; Xie, W.; Chen, C.; Li, C.; Li, D.; Li, J.; Chen, X. Enhanced Tetracycline Adsorption Using KOH-Modified Biochar Derived from Waste Activated Sludge in Aqueous Solutions. Toxics 2024, 12, 691. https://doi.org/10.3390/toxics12100691.

10. The Dual Role of Natural Organic Matter in the Degradation of Organic Pollutants by Persulfate-Based Advanced Oxidation Processes: A Mini-Review

天然有机物在过硫酸盐高级氧化降解有机污染物中的双重作用:综述

https://www.mdpi.com/2305-6304/12/11/770

Luo, D.; Lin, H.; Li, X.; Wang, Y.; Ye, L.; Mai, Y.; Wu, P.; Ni, Z.; Lin, Q.; Qiu, R. The Dual Role of Natural Organic Matter in the Degradation of Organic Pollutants by Persulfate-Based Advanced Oxidation Processes: A Mini-Review. Toxics 2024, 12, 770. https://doi.org/10.3390/toxics12110770.

11. Advances in Soil Amendments for Remediation of Heavy Metal-Contaminated Soils: Mechanisms, Impact, and Future Prospects

重金属污染土壤修复改良剂的研究进展:机理、影响及未来展望

https://www.mdpi.com/2305-6304/12/12/872

Nie, X.; Huang, X.; Li, M.; Lu, Z.; Ling, X. Advances in Soil Amendments for Remediation of Heavy Metal-Contaminated Soils: Mechanisms, Impact, and Future Prospects. Toxics 2024, 12, 872. https://doi.org/10.3390/toxics12120872.

12. Efficient Adsorption of Lead on Hydro-Pyrochar Synthesized by Two-Step Conversion of Corn Cob in Magnesium Chloride Medium

氯化镁介质中玉米秸秆两步转化制备水热热解炭及其对铅的高效吸附性能

https://www.mdpi.com/2305-6304/13/6/459

Simic, M.; Petrovic, J.; Koprivica, M.; Ercegovic, M.; Dimitrijevic, J.; Vukovic, N.S.; Fiol, N. Efficient Adsorption of Lead on Hydro-Pyrochar Synthesized by Two-Step Conversion of Corn Cob in Magnesium Chloride Medium. Toxics 2025, 13, 459. https://doi.org/10.3390/toxics13060459.

13. Low-Temperature Pyrolysis of PFOS-Contaminated Soil Enhanced by Additives: Thermodynamic Insights, Transformation Products, and Remediation Implications

添加剂强化下PFOS污染土壤的低温热解:热力学见解、转化产物及修复启示

https://www.mdpi.com/2305-6304/14/6/465

Yao, M.; Li, X.; Liu, C.; Xiang, Y.; Shen, J.; Kong, L.; Sun, Z.; Zhang, D.; Ma, F.; Gu, Q.; et al. Low-Temperature Pyrolysis of PFOS-Contaminated Soil Enhanced by Additives: Thermodynamic Insights, Transformation Products, and Remediation Implications. Toxics 2026, 14, 465. https://doi.org/10.3390/toxics14060465.

14. Field Application of Layered Double Hydroxides to Reduce Cd Bioavailability and Uptake in Artemisia argyi Grown in Severely Contaminated Soil

层状双氢氧化物在降低严重污染土壤中生长的艾草镉生物有效性与吸收的田间应用

https://www.mdpi.com/2305-6304/14/6/476

Qiu, W.; Huang, Y.; Tu, C.; Yang, S.; Wang, Y.; Zhu, X.; Luo, Y. Field Application of Layered Double Hydroxides to Reduce Cd Bioavailability and Uptake in Artemisia argyi Grown in Severely Contaminated Soil. Toxics 2026, 14, 476. https://doi.org/10.3390/toxics14060476.

15. Mechanistic Insights into the Photocatalytic Degradation of Chlorophenols in Aqueous Systems via Nonlinear Kinetic Modeling

基于非线性动力学模型对水体系中氯酚光催化降解机理的深入解析

https://www.mdpi.com/2305-6304/14/6/480

Bobirica, L.; Orbeci, C.; Ionica, G.-I.; Bobirica, C. Mechanistic Insights into the Photocatalytic Degradation of Chlorophenols in Aqueous Systems via Nonlinear Kinetic Modeling. Toxics 2026, 14, 480. https://doi.org/10.3390/toxics14060480.

栏目介绍:毒性削减与环境修复栏目 (Toxicity Reduction and Environmental Remediation)

栏目链接:https://www.mdpi.com/journal/toxics/sections/Engineering_Remediation_and_Restoration

“毒性削减与环境修复”栏目 (Section “Toxicity Reduction and Environmental Remediation”)是 Toxics 期刊12个学科栏目之一,旨在应对环境污染对生态系统和人类健康所带来的现实挑战,推动减轻污染物对生物与环境的有害影响。我们诚挚邀请相关领域的研究者投稿高质量的原创研究、综述与评论文章,来稿可涵盖土壤修复、水净化、生物降解等方向,尤其欢迎涉及纳米材料应用、生物吸附剂及生物炭等新兴技术的研究成果。这些前沿技术有望高效去除有毒污染物,助力生态系统健康的恢复。

栏目主编:本栏目由上海交通大学龙明策教授担任栏目主编。龙教授系上海交通大学研究员、博士生导师,研究方向为环境功能材料和高级氧化原理与技术。

Toxics 期刊介绍

期刊名:Toxics (ISSN: 2305-6304)

主编:Demetrio Raldúa, IDAEA-CSIC, Spain

期刊发表与有毒有害化学物质和材料相关的学术文章,主题范围涵盖毒理学、生态毒理学、环境科学、环境工程、环境化学和流行病学等学科。期刊已被Web of Science、PubMed和Scopus等多个数据库收录。目前期刊位于JCR毒理学一区和环境科学二区。

2025 Impact Factor
4.9
2025 CiteScore
7.8
Time to First Decision
17.8 Days
Acceptance to Publication
2.4 Days
 
 
 
 
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