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The pride of Chinese velvet fabric: JBL's innovative global journey
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作者 Zhong Mengxia 《China Textile》 2025年第3期12-12,共1页
In JBL's sample room in Haining,China,a piece of velvet fabric glimmers softly under the lights.This light-blocking fabric,crafted with thermally bonded TPU technology,is quietly becoming a hot item of the Europea... In JBL's sample room in Haining,China,a piece of velvet fabric glimmers softly under the lights.This light-blocking fabric,crafted with thermally bonded TPU technology,is quietly becoming a hot item of the European home furnishing market.As global textile supply chains reshape,this velvet fabric specialist is exploring the course of Chinese textiles'global expansion with its unique products. 展开更多
关键词 jbls sample room European home furnishing market supply chains textile global expansion Chinese velvet fabric velvet fabric global textile supply chains thermally bonded tpu technologyis
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2D hetero-nanostructured reduced-CuNiFe-oxides with self-produced H_(2)O_(2)Fenton-like photocatalysis for tetracycline degradation
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作者 Lin Fu Dandan Wu +4 位作者 Ming Wen Yuanzheng Zhu Qingsheng Wu Tao Zhou Yongqing Fu 《Inorganic Chemistry Frontiers》 2023年第2期567-578,共12页
Fenton-like photocatalysis,an advanced oxidation technology,is considered a promising method by which to degrade tetracycline antibiotic(TC)pollutants,but it remains a challenge to achieve a high degradation efficienc... Fenton-like photocatalysis,an advanced oxidation technology,is considered a promising method by which to degrade tetracycline antibiotic(TC)pollutants,but it remains a challenge to achieve a high degradation efficiency in an environmental friendly way.Herein,cluster structures assembled by 2D nanosheets of reduced CuNiFe mixed-metal-oxides(re-CuNiFe-MMOs)have been synthesized through a combined hydrothermal and polyols-solvothermal reduction process.The synergistic effect induced by multiphases of MMOs and the CuNi alloy endows the obtained re-CuNiFe-MMOs with superior Fenton-like photocatalytic activity for the degradation of TCs without the use of any additional oxidants,which is mainly attributed to the reactive oxygen species(of which·O_(2)-is dominant)generated under visible light based on the synergy of the multiphases.The degradation rate of TC reaches 100%in just 4 minutes with a constant reaction rate of 1.65 min^(-1),and this can be maintained at 95.5%after 12 cycles.This study provides an environmentally friendly approach for the treatment of antibiotic pollutants directly using visible light. 展开更多
关键词 Reactive oxygen species Tetracycline degradation Fenton photocatalysis Reduced cunife mixed metal oxides Visible light photocatalysis Environmental friendly technology advanced oxidation technologyis synergistic effect
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