Style | Citing Format |
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MLA | Ghalhari MR, et al.. "Cellulose-Based Hydrogel Beads Derived From Wastepapers: Application for Organic Dye Adsorption." Cellulose, vol. 30, no. 15, 2023, pp. 9669-9691. |
APA | Ghalhari MR, Sanaei D, Nabizadeh R, Mahvi AH (2023). Cellulose-Based Hydrogel Beads Derived From Wastepapers: Application for Organic Dye Adsorption. Cellulose, 30(15), 9669-9691. |
Chicago | Ghalhari MR, Sanaei D, Nabizadeh R, Mahvi AH. "Cellulose-Based Hydrogel Beads Derived From Wastepapers: Application for Organic Dye Adsorption." Cellulose 30, no. 15 (2023): 9669-9691. |
Harvard | Ghalhari MR et al. (2023) 'Cellulose-Based Hydrogel Beads Derived From Wastepapers: Application for Organic Dye Adsorption', Cellulose, 30(15), pp. 9669-9691. |
Vancouver | Ghalhari MR, Sanaei D, Nabizadeh R, Mahvi AH. Cellulose-Based Hydrogel Beads Derived From Wastepapers: Application for Organic Dye Adsorption. Cellulose. 2023;30(15):9669-9691. |
BibTex | @article{ author = {Ghalhari MR and Sanaei D and Nabizadeh R and Mahvi AH}, title = {Cellulose-Based Hydrogel Beads Derived From Wastepapers: Application for Organic Dye Adsorption}, journal = {Cellulose}, volume = {30}, number = {15}, pages = {9669-9691}, year = {2023} } |
RIS | TY - JOUR AU - Ghalhari MR AU - Sanaei D AU - Nabizadeh R AU - Mahvi AH TI - Cellulose-Based Hydrogel Beads Derived From Wastepapers: Application for Organic Dye Adsorption JO - Cellulose VL - 30 IS - 15 SP - 9669 EP - 9691 PY - 2023 ER - |