日期:
2020 年 — 2026 年
2020
2021
2022
2023
2024
2025
2026
影响因子:

Plasma-Activated Water (PAW) Decontamination of Foodborne Bacteria in Shucked Oyster Meats Using a Compact Flow-Through Generator

利用小型流通式发生器对去壳牡蛎肉中的食源性细菌进行等离子体活化水 (PAW) 消毒

Thana, Phuthidhorn; Boonyawan, Dheerawan; Jaikua, Mathin; Promsart, Woranika; Rueangwong, Athitta; Ungwiwatkul, Sunisa; Prasertboonyai, Kanyarak; Maitip, Jakkrawut

The lysine degradation pathway analyzed with (1)H-NMR-targeted metabolomics of MG63 cells on poly(l-lactide)-based scaffolds

利用(1)H-NMR靶向代谢组学分析MG63细胞在聚乳酸支架上的赖氨酸降解途径

Ziblim, Zulka; Liu, Zhonglin; Thapsukhon, Boontharika; Jaikang, Churdsak; Konguthaithip, Giatgong; Choommongkol, Vachira; Boonyawan, Dheerawan; Ruangsuriya, Jetsada

Influence of Seed Coat Integrity on the Response of Pepper Seeds to Dielectric Barrier Discharge Plasma Treatment

种皮完整性对辣椒种子介质阻挡放电等离子体处理响应的影响

Sriruksa, Chanyanuch; Sawangrat, Choncharoen; Sansongsiri, Sakon; Boonyawan, Dheerawan; Thanapornpoonpong, Sa-Nguansak

Combating foodborne pathogens: Efficacy of plasma-activated water with supplementary methods for Staphylococcus aureus eradication on chicken, and beef

对抗食源性病原体:等离子体活化水联合辅助方法对鸡肉和牛肉中金黄色葡萄球菌的根除效果

Moonsub, Kochakon; Seesuriyachan, Phisit; Boonyawan, Dheerawan; Rachtanapun, Pornchai; Sawangrat, Choncharoen; Opassuwan, Takron; Wattanutchariya, Wassanai

Synthesis, Properties, and Techno-economic Analysis of Highly Stable Biotransformer Oil Derived from Transesterification of Palm Oil Methyl Esters and Ditrimethylolpropane

棕榈油甲酯与双三羟甲基丙烷酯交换制备高稳定性生物转化油的合成、性质及技术经济分析

Ratchayol Sornvoralop, Benjapon Chalermsinsuwan, Nathapol Pintuyothin, Boonyawan Yoosuk, Napida Hinchiranan

A Nonclinical Safety Evaluation of Cold Atmospheric Plasma for Medical Applications: The Role of Genotoxicity and Mutagenicity Studies

冷大气等离子体在医疗应用中的非临床安全性评估:遗传毒性和致突变性研究的作用

Piimwara Yarangsee, Supakit Khacha-Ananda, Pornsiri Pitchakarn, Unchisa Intayoung, Sirikhwan Sriuan, Jirarat Karinchai, Apiwat Wijaikhum, Dheerawan Boonyawan

Degradation of Pesticide Residues in Water, Soil, and Food Products via Cold Plasma Technology

利用冷等离子体技术降解水、土壤和食品中的农药残留

Sojithamporn, Phanumas; Leksakul, Komgrit; Sawangrat, Choncharoen; Charoenchai, Nivit; Boonyawan, Dheerawan

Selective Deoxygenation of Waste Cooking Oil to Diesel-Like Hydrocarbons Using Supported and Unsupported NiMoS(2) Catalysts

利用负载型和非负载型NiMoS(2)催化剂选择性脱氧废弃食用油制备柴油类烃

Prangklang, Dechpol; Tumnantong, Dusadee; Yoosuk, Boonyawan; Ngamcharussrivichai, Chawalit; Prasassarakich, Pattarapan

Comparison of plasma technology for the study of herbicide degradation

除草剂降解研究中等离子体技术的比较

Chonlada Bennett, Sawanya Ngamrung, Vithun Ano, Chanchai Umongno, Sugunya Mahatheeranont, Jaroon Jakmunee, Mudtorlep Nisoa, Komgrit Leksakul, Choncharoen Sawangrat, Dheerawan Boonyawan

Dissolution Behavior of Hydrothermally Treated Hydroxyapatite-Titanium Nitride Films Coated on PEEK: In Vitro Study

水热处理羟基磷灰石-氮化钛薄膜在PEEK基体上的溶解行为:体外研究

Boonpok, Siriwat; Koonrungsrisomboon, Kwanchanok; Suttiat, Kullapop; Yavirach, Piriya; Boonyawan, Dhreerawan