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author:

Wang, Shiping (Wang, Shiping.) [1] | Huang, Rui (Huang, Rui.) [2] | Ren, Kun (Ren, Kun.) [3] | Shen, Lushen (Shen, Lushen.) [4] | Li, Xiang (Li, Xiang.) [5] | Lei, Ganchang (Lei, Ganchang.) [6] | Shen, Lijuan (Shen, Lijuan.) [7] | Zhan, Yingying (Zhan, Yingying.) [8] | Zheng, Ying (Zheng, Ying.) [9] | Jiang, Lilong (Jiang, Lilong.) [10]

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EI

Abstract:

Although controlled-release fertilizer (CRF) is a safer and more efficient strategy to administer nutrients for plant growth, it is still a daunting task to reduce the cost and improve the degradability of the synthetic resin coatings. In this paper, an inorganic/organic composite coating for urea fertilizer was prepared from a biodegradable castor oil-based polyurethane (PU) filled with the layered Na-bentonite (Na-BT), which was ultrasonically treated by a series of green PEG surfactants. Synergistically influenced by various intercalation ability, cation-hosting ability and hydrophilicity of the PEGs, the porous structures of the modified Na-BT (MBT) fillers were simply tuned by varying the Mn molecular weights of the PEGs, resulting in the adjustable water swelling and mechanical properties of the MBT/PU composites. Moreover, it was confirmed that the water swelling property played a critical role in controlling the early stage of nutrient release, and the mechanical properties were important for the longevity of nutrient release from the CRFs. The best MBT/PU composite supported a CRF with a long-term release of 75 % in 38 days, which was much longer than the one based on pure PU (20 days). © 2023

Keyword:

Bentonite Composite coatings Hydrophilicity Hydroxyapatite Polyurethanes Resins Urea Vegetable oils

Community:

  • [ 1 ] [Wang, Shiping]National Engineering Research Center of Chemical Fertilizer Catalyst, Fuzhou University, Fuzhou; 350002, China
  • [ 2 ] [Wang, Shiping]Qingyuan Innovation Laboratory, Fujian, Quanzhou; 362801, China
  • [ 3 ] [Huang, Rui]National Engineering Research Center of Chemical Fertilizer Catalyst, Fuzhou University, Fuzhou; 350002, China
  • [ 4 ] [Ren, Kun]National Engineering Research Center of Chemical Fertilizer Catalyst, Fuzhou University, Fuzhou; 350002, China
  • [ 5 ] [Shen, Lushen]National Engineering Research Center of Chemical Fertilizer Catalyst, Fuzhou University, Fuzhou; 350002, China
  • [ 6 ] [Li, Xiang]National Engineering Research Center of Chemical Fertilizer Catalyst, Fuzhou University, Fuzhou; 350002, China
  • [ 7 ] [Lei, Ganchang]National Engineering Research Center of Chemical Fertilizer Catalyst, Fuzhou University, Fuzhou; 350002, China
  • [ 8 ] [Shen, Lijuan]College of Environmental Science and Engineering, Fujian Normal University, Fuzhou; 350007, China
  • [ 9 ] [Zhan, Yingying]National Engineering Research Center of Chemical Fertilizer Catalyst, Fuzhou University, Fuzhou; 350002, China
  • [ 10 ] [Zhan, Yingying]Qingyuan Innovation Laboratory, Fujian, Quanzhou; 362801, China
  • [ 11 ] [Zheng, Ying]Department of Chemical and Biochemical Engineering, Western University, 1151 Richmond Street, London, Canada
  • [ 12 ] [Jiang, Lilong]National Engineering Research Center of Chemical Fertilizer Catalyst, Fuzhou University, Fuzhou; 350002, China
  • [ 13 ] [Jiang, Lilong]Qingyuan Innovation Laboratory, Fujian, Quanzhou; 362801, China

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Source :

Progress in Organic Coatings

ISSN: 0300-9440

Year: 2023

Volume: 178

6 . 5

JCR@2023

6 . 5 0 0

JCR@2023

ESI HC Threshold:49

JCR Journal Grade:1

CAS Journal Grade:2

Cited Count:

WoS CC Cited Count: 0

SCOPUS Cited Count: 3

ESI Highly Cited Papers on the List: 0 Unfold All

WanFang Cited Count:

Chinese Cited Count:

30 Days PV: 1

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