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6篇 您的检索式:作者名="Rethinam"
    题名 作者 年代 出处 被引量
1Coconut hispine beetle Brontispa longissima(Gestro)(Coleoptera:Chrysomelidae)显示文摘Singh S P Rethinam P 2004Cord2004,20,1:1
2Chemopreventive and therapeutic modulation of green tea polyphenols on drug metabolizing enzymes in 4-Nitroquinoline 1-oxide induced oral cancer显示文摘Periasamy Srinivasan Subramaniyan Suchalatha Pon Velayutham Anandh Babu Rethinam Sundaresan Devi Shoba Narayan Kuruvimalai Ekambaram Sabitha Chennam Srinivasulu Shyamala Devi 2008Chemico-Biological Interactions2008,,3:1
3Using Multilevel Analyses to Study the Effectiveness of Science Curriculum Materials显示文摘Vasuki Rethinam Curtis Pyke Sharon Lynch etal 2008Evaluation & Research in Education2008,,1:1
4Coconut hispine beetle Brontispa longissima (Gestro) (Coleoptera : Chrysomelidae) 显示文摘SINGH S P RETHINAM P 2004Cord2004,20,1:1
5Utilization of leather fibrous wastes for the production of reconstituted fibric materials:heavy metal determination and removal显示文摘Incomprehension concerning heavy metal containing finished solid leather wastes leads to environmental pollution.Conversion of these solid leather waste into energy and resource efficient products proves to be challenging.However,leather microfibres(LMF)were isolated from these heavy metal containing finished solid leather wastes.These heavy metal contain LMF further processed into metal reduction LMF.The metal reduction LMF were investigated for their heavy metal removal efficiency and toxicity analysis.The Cr(III)and Cr(VI)content of LMF was<1000μg/mL and<800μg/mL,respectively.Toxicity estimation was proved that the LMF had less than 1%.The study attempt to prepare reconstituted fibric materials(RFM)from metal reduction LMF and cellulose nanofibres(CNF).RFM were characterized for their physicochemical and mechanical properties.Hence,the study has proved a novel concept of RFM production which is recyclable,environmental friendly and cost effective.Rethinam Senthil Serdar Batıkan Kavukcu A.Wilson Aruni Urana Dandar Bahri Basaran Vijayan Sumathi 2022Waste Disposal and Sustainable Energy2022,4,1:0
6一种新颖的成品革废弃物回收利用方法显示文摘以成品革废弃物为原料制备再生革(RGL)既经济又利于减少环境污染。将植物纤维(PFs)与RGL相结合增强它的力学性能。植物纤维作为增强材料成本低廉,具有相当好的力学性能、高强度、耐磨、生态友好且可生物降解。皮革废弃物纤维与PFs以不同比例混合制备再生革复合材料(RLCs)。植物纤维(椰子、甘蔗、香蕉、玉米丝)用于本研究。RGL和RLCs采用傅里叶变换红外光谱、热重分析和显微扫面电镜进行物理化学表征。结果显示,PFs能显著提高RLCs的力学性能和热性能。在复合材料中,用皮革废弃物和椰子纤维以50∶40比例制备的RLC被证明是一种性能优良的复合材料。RLCs可望作为皮革制品和鞋类的原料,而且性价比高,可减少环境污染。Rethinam Senthil Thiagarajan Hemalatha 周婷婷 2015西部皮革2015,0,16:0
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