Modification of tamarind fruit shell powder with in situ generated copper nanoparticles by single step hydrothermal method
Tóm tắt
Từ khóa
Tài liệu tham khảo
Alekseeva, 2011, Copper nanoparticle composites based on cellulose derivatives, Chem. Chem. Tech., 5, 447, 10.23939/chcht05.04.447
Ashok, 2019, Preparation and characterization of tamarind nut powder with in situ generated copper nanoparticles using one-step hydrothermal method, Int. J. Polym. Anal. Charact., 24, 548, 10.1080/1023666X.2019.1626546
Ashok, 2018, Modification of natural fibers from Thespesia lampas plant by in situ generation of silver nanoparticles in single-step hydrothermal method, Int. J. Polym. Anal. Charact., 23, 509, 10.1080/1023666X.2018.1486270
El-Fadel, 1997, Environmental impacts of solid waste landfilling, J. Environ. Manag., 50, 1, 10.1006/jema.1995.0131
Giusti, 2009, A review of waste management practices and their impact on human health, Waste Manag., 29, 2227, 10.1016/j.wasman.2009.03.028
Hamer, 2003, Solid waste treatment and disposal: effects on public health and environmental safety, Biotechnol. Adv., 22, 71, 10.1016/j.biotechadv.2003.08.007
Harrison, 2007
Li, 2019, Modification of agricultural waste tamarind fruit shell powder by in situ generation of silver nanoparticles for antibacterial filler applications, Int. J. Polym. Anal. Charact., 24, 421, 10.1080/1023666X.2019.1602319
Luo, 2012, Fabrication and characterization of copper nanoparticles in PVA/PAAm IPNs and swelling of the resulting nanocomposites, Met. Mater. Int., 18, 899, 10.1007/s12540-012-5024-5
Manas, 2012, Carbon dioxide gating in silk cocoon, Biointerphases, 7, 1
Pavia, 1996
Sadanand, 2017, Preparation and properties of low-cost cotton nanocomposite fabrics with in situ-generated copper nanoparticles by simple hydrothermal method, Int. J. Polym. Anal. Charact., 22, 587, 10.1080/1023666X.2017.1344916
Sadanand, 2016, Preparation of cellulose composites with in situ generated copper nanoparticles using leaf extract and their properties, Carbohydr. Polym., 150, 32, 10.1016/j.carbpol.2016.04.121
Senthil Muthu Kumar, 2018, Preparation and properties of cellulose/tamarind nut powder green composites, J. Nat. Fibers, 15, 11, 10.1080/15440478.2017.1302386
Senthil Muthu Kumar, 2017, Utilization of chemically treated municipal solid waste (spent coffee bean powder) as reinforcement in cellulose matrix for packaging applications, Waste Manag, 69, 445, 10.1016/j.wasman.2017.07.035
Senthil Muthu Kumar, 2017, Development and analysis of biodegradable poly(propylene carbonate)/tamarind nut powder composite films, Int. J. Polym. Anal. Charact., 22, 415, 10.1080/1023666X.2017.1313483
Sivasankar, 2012, Tamarind (Tamarindus indica) fruit shell carbon: a calcium-rich promising adsorbent for fluoride removal from groundwater, J. Hazard. Mater., 225, 164, 10.1016/j.jhazmat.2012.05.015
Suguna, 2010, Removal of divalent manganese from aqueous solution using Tamarindus indica Fruit Nut Shell, J. Chem. Pharm. Res., 2, 7
Sukumar, 2020, Green-synthesized rice-shaped copper oxide nanoparticles using Caesalpinia bonducella seed extract and their applications, ACS Omega, 5, 1040, 10.1021/acsomega.9b02857
Tsai, 1998, A low cost adsorbent from agricultural waste corn cob by zinc chloride activation, Bioresour. Technol., 64, 211, 10.1016/S0960-8524(97)00168-5
Wang, 2002, Low density particleboard from wheat straw and corn pith, Ind. Crop. Prod., 15, 43, 10.1016/S0926-6690(01)00094-2
