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中国光谷:以微光计划推进教育数字化转型探索 被引量:1
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作者 陈克斌 贺德富 +2 位作者 舒晓辉 李媛 陈细鹏 《中国教育信息化》 2023年第7期54-62,共9页
在实施教育数字化战略行动政策的指引下,武汉东湖新技术开发区通过实施微光计划,在区域推进教育数字化转型方面进行积极探索:一是部署“321行动”,将智慧教育30条工作要点整合为六大行动,即一个抓手(信息素养),两个保障(硬件与资源),三... 在实施教育数字化战略行动政策的指引下,武汉东湖新技术开发区通过实施微光计划,在区域推进教育数字化转型方面进行积极探索:一是部署“321行动”,将智慧教育30条工作要点整合为六大行动,即一个抓手(信息素养),两个保障(硬件与资源),三个核心(课堂、课程、校园);二是实施“456路径”将应用深入到三个方面,即四项比赛——通过比赛促应用,五种观摩——通过观摩促交流,六类培训——通过培训促提升;三是打造“三微两平台”,建设覆盖各学段和各学科的微课程、微习题、微辅导等学习资源库,建立光谷教学资源服务平台和个性化的自主学习平台,助力“双减”落地。 展开更多
关键词 教育数字化转型 智慧教育 微光计划 区域 双减
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Radical innovation breakthroughs of biodegradation of plastics by insects:history,present and future perspectives
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作者 Shan-Shan Yang Wei-Min Wu +19 位作者 Federica Bertocchini Mark Eric Benbow Suja P.Devipriya Hyung Joon Cha Bo-Yu Peng Meng-Qi Ding Lei he Mei-Xi Li Chen-Hao Cui Shao-Nan Shi Han-Jun Sun Ji-Wei Pang defu he Yalei Zhang Jun Yang Deyi Hou De-Feng Xing Nan-Qi Ren Jie Ding Craig S.Criddle 《Frontiers of Environmental Science & Engineering》 SCIE EI CSCD 2024年第6期127-165,共39页
Insects damaging and penetrating plastic packaged materials has been reported since the 1950s.Radical innovation breakthroughs of plastic biodegradation have been initiated since the discovery of biodegradation of pla... Insects damaging and penetrating plastic packaged materials has been reported since the 1950s.Radical innovation breakthroughs of plastic biodegradation have been initiated since the discovery of biodegradation of plastics by Tenebrio molitor larvae in 2015 followed by Galleria mellonella in 2017.Here we review updated studies on the insect-mediated biodegradation of plastics.Plastic biodegradation by insect larvae,mainly by some species of darkling beetles(Tenebrionidae)and pyralid moths(Pyralidae)is currently a highly active and potentially transformative area of research.Over the past eight years,publications have increased explosively,including discoveries of the ability of different insect species to biodegrade plastics,biodegradation performance,and the contribution of host and microbiomes,impacts of polymer types and their physic-chemical properties,and responsible enzymes secreted by the host and gut microbes.To date,almost all major plastics including polyethylene(PE),polypropylene(PP),polyvinyl chloride(PVC),polyethylene terephthalate(PET),polyurethane(PUR),and polystyrene(PS)can be biodegraded by T.molitor and ten other insect species representing the Tenebrionidae and Pyralidae families.The biodegradation processes are symbiotic reactions or performed by synergistic efforts of both host and gut-microbes to rapidly depolymerize and biodegrade plastics with hourly half-lives.The digestive ezymens and bioreagents screted by the insects play an essential role in plasatic biodegradation in certain species of Tenebrionidae and Pyralidae families.New research on the insect itself,gut microbiomes,transcriptomes,proteomes and metabolomes has evaluated the mechanisms of plastic biodegradation in insects.We conclude this review by discussing future research perspectives on insect-mediated biodegradation of plastics. 展开更多
关键词 PLASTICS BIODEGRADATION INSECTS Gut microbiomes ENZYMES
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环境中微塑料研究进展与展望 被引量:63
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作者 骆永明 施华宏 +11 位作者 涂晨 周倩 季荣 潘响亮 徐向荣 吴辰熙 安立会 孙晓霞 何德富 李艳芳 马旖旎 李连祯 《科学通报》 EI CAS CSCD 北大核心 2021年第13期1547-1562,共16页
环境微塑料污染正成为整个地球表层生态系统最严重的威胁之一,受到世界多国政府的严重关切和科技界多学科的广泛研究.本文从地球科学、化学、生物学、管理学等多学科角度,系统综述了水、土、气、沉积物、生物等环境介质中微塑料的丰度... 环境微塑料污染正成为整个地球表层生态系统最严重的威胁之一,受到世界多国政府的严重关切和科技界多学科的广泛研究.本文从地球科学、化学、生物学、管理学等多学科角度,系统综述了水、土、气、沉积物、生物等环境介质中微塑料的丰度分布和来源、分离与分析方法、陆海空迁移与预测、表面变化与吸附特征、生物吸收积累与生态风险、食物链传递与健康风险、降解与削减等方面的国内外研究进展,并展望了环境微塑料未来研究方向与关键科学问题,旨在促进环境微塑料污染的研究与治理. 展开更多
关键词 微塑料 环境介质 环境行为 生态风险
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