When one steps inside Caoxian’s Youai Cloud Warehouse,a livestreaming base dedicated to hanfu,it feels less like a clothing warehouse and more like a time capsule.Thousands of intricately embroidered garments line th...When one steps inside Caoxian’s Youai Cloud Warehouse,a livestreaming base dedicated to hanfu,it feels less like a clothing warehouse and more like a time capsule.Thousands of intricately embroidered garments line the racks-from elegant horse-face skirts to modernised editions of traditional Chinese clothing.展开更多
As the global textile market continues to expand, demand for sewing threads-a critical auxiliary material-is rising. In recent years, automotive interiors, smart outdoor equipment, and medical and ecofriendly products...As the global textile market continues to expand, demand for sewing threads-a critical auxiliary material-is rising. In recent years, automotive interiors, smart outdoor equipment, and medical and ecofriendly products have emerged as new growth engines for the textile industry. This has propelled specialized niche markets for sewing threads designed for these applications, revealing significant and undeniable potential.展开更多
文摘When one steps inside Caoxian’s Youai Cloud Warehouse,a livestreaming base dedicated to hanfu,it feels less like a clothing warehouse and more like a time capsule.Thousands of intricately embroidered garments line the racks-from elegant horse-face skirts to modernised editions of traditional Chinese clothing.
文摘As the global textile market continues to expand, demand for sewing threads-a critical auxiliary material-is rising. In recent years, automotive interiors, smart outdoor equipment, and medical and ecofriendly products have emerged as new growth engines for the textile industry. This has propelled specialized niche markets for sewing threads designed for these applications, revealing significant and undeniable potential.
文摘自来水基中性电解水(tap water-based neutral electrolyzed water, TNEW)是一种具有广阔应用前景的温和果蔬减菌剂,但其杀菌机制不清楚,且缺少对果蔬减菌效果的系统评价。鉴于此,该研究以大肠杆菌(Escherichia coli)和金黄色葡萄球菌(Staphylococcus aureus)等典型果蔬腐败微生物为对象,考察了TNEW处理对2种菌杀菌效果的动态影响,结合细胞壁与细胞膜完整性、内容物外泄及形态变化等多角度深入解析其杀菌机制。结果表明,TNEW处理E.coli菌悬液12 min,处理S.aureus菌悬液6 min,处理组中存活菌数均已低于检测限(<1.0 lg CFU/mL)。TNEW处理可显著破坏E.coli和S.aureus的细胞膜完整性,导致核酸、蛋白质及碱性磷酸酶等胞内物质的持续外泄,降低胞内三磷酸腺苷水平并破坏细胞形态。在蓝莓和生菜的应用中发现,TNEW处理9 min可使二者菌落总数分别减少0.60、2.00 lg CFU/g,E.coli载量分别减少1.12、1.18 lg CFU/g,S.aureus载量分别减少1.99、1.35 lg CFU/g,且对其抗坏血酸含量无显著影响(P>0.05)。该研究为开发新型果蔬非热杀菌技术提供了理论依据和技术参数,为其他食品原料杀菌提供了新思路。