Cellulose-Based Hydrogel as a Natural Medium for Paddy Seed Germination

被引:3
|
作者
Jong, Shu-Jun [1 ]
KarunaKaran, Kanchana [1 ]
Wasli, Mohd Effendi [1 ]
Musa, Zaki [2 ]
Chin, Suk-Fun [1 ]
机构
[1] Univ Malaysia Sarawak, Fac Resource Sci & Technol, Kota Samarahan 94300, Sarawak, Malaysia
[2] Malaysian Agr Res & Dev Inst MARDI, Jalan Santubong, Kuching 93050, Sarawak, Malaysia
来源
STARCH-STARKE | 2024年 / 76卷 / 1-2期
关键词
cellulose-based hydrogel; germination media; paddy plant; seed germination rate; SUPERABSORBENT HYDROGEL; NANOPARTICLES; WASTE;
D O I
10.1002/star.202200234
中图分类号
TS2 [食品工业];
学科分类号
0832 ;
摘要
Cellulose hydrogel derived from cellulose fibers extracted from printed paper waste is prepared. The hydrogel derived from 3 wt% of the cellulose concentration exhibits a maximum water absorption capacity of 465.5%. The effects of the cellulose hydrogel on the soil moisture are evaluated using four types of soils namely river sand, clayey soil, loamy soil, and gley soil (the wetland soil). The potential application of cellulose-based hydrogel as an eco-friendly seed germination media of the paddy seeds under the soil-less condition is evaluated. This study shows that paddy seeds exhibit a higher seed germination rate of 53% when cellulose hydrogel is used as a seed germination media as compared to seed germination rate ranging from 14% to 35% when various types of soil are used as the germination media. The prepared cellulose hydrogel could be applied as an eco-friendly and cost-effective seed germination media to enhance the paddy seeds' germination rate.
引用
收藏
页数:8
相关论文
共 50 条
  • [41] Transformation of Lignocellulosic Biomass to Cellulose-Based Hydrogel and Agriglass to Improve Beans Yield
    Abou-Baker, Nesreen H.
    Ouis, Mona
    Abd-Eladl, Mostafa
    Ibrahim, Maha M.
    WASTE AND BIOMASS VALORIZATION, 2020, 11 (07) : 3537 - 3551
  • [42] Autologous nasal chondrocytes and a cellulose-based hydrogel for the repair of articular cartilage defects
    Vinatier, C.
    Gauthier, O.
    Merceron, C.
    Masson, M.
    Moreau, A.
    Weiss, P.
    Guicheux, J.
    TISSUE ENGINEERING PART A, 2008, 14 (05) : 701 - 701
  • [43] Transformation of Lignocellulosic Biomass to Cellulose-Based Hydrogel and Agriglass to Improve Beans Yield
    Nesreen H. Abou-Baker
    Mona Ouis
    Mostafa Abd-Eladl
    Maha M. Ibrahim
    Waste and Biomass Valorization, 2020, 11 : 3537 - 3551
  • [44] Transparent multifunctional cellulose-based conductive hydrogel for wearable strain sensors and arrays
    Gao, Jianliang
    Li, Xiaomeng
    Xu, Lina
    Yan, Manqing
    Bi, Hong
    Wang, Qiyang
    CARBOHYDRATE POLYMERS, 2024, 329
  • [45] Pectin and mucin modified cellulose-based superabsorbent hydrogel for controlled curcumin release
    Farhana Islam
    Siew Yee Wong
    Xu Li
    M. Tarik Arafat
    Cellulose, 2022, 29 : 5207 - 5222
  • [46] Hydroxyethyl cellulose-based stretchable, antifreeze, ion-conductive hydrogel sensor
    Li, Yuanlong
    Chen, Chaojie
    Cui, Guoqing
    Liu, Li
    Zhou, Chao
    Wu, Guangfeng
    EUROPEAN POLYMER JOURNAL, 2024, 202
  • [47] Cellulose-based thermosensitive supramolecular hydrogel for phenol removal from polluted water
    Guo, Ming
    Wang, Jue
    Zhang, Cheng
    Zhang, Xinyu
    Xia, Changlei
    Lin, Hongfei
    Lin, Chin Yik
    Lam, Su Shiung
    ENVIRONMENTAL RESEARCH, 2022, 214
  • [48] A comprehensive review on cellulose-based hydrogel and its potential application in the food industry
    Thivya, P.
    Akalya, S.
    Sinija, V. R.
    APPLIED FOOD RESEARCH, 2022, 2 (02):
  • [49] Factors influencing the adhesive behavior of carboxymethyl cellulose-based hydrogel for food applications
    Dong, Shiliang
    Feng, Sirui
    Liu, Feng
    Li, Ran
    Li, Wenhua
    Liu, Fengfeng
    Shi, Gang
    Chen, Lin
    Zhang, Yue
    INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES, 2021, 179 : 398 - 406
  • [50] Cellulose-based aerogels
    Fischer, F.
    Rigacci, A.
    Pirard, R.
    Berthon-Fabry, S.
    Achard, P.
    POLYMER, 2006, 47 (22) : 7636 - 7645