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701.
Goel Abhishek Kumar Singh Shailendra Narayan 《Environmental science and pollution research international》2021,28(16):19958-19958
Environmental Science and Pollution Research - A Correction to this paper has been published: https://doi.org/10.1007/s11356-021-12458-z 相似文献
702.
Manoj S. RamyaPriya R. Elango L. 《Environmental science and pollution research international》2021,28(4):4276-4288
Environmental Science and Pollution Research - Disposal of industrial waste is of great concern because it releases toxic metals resulting into the degradation of environments and consequently... 相似文献
703.
Gupta Ankit Kumar Bafna Minal Srivastava Subodh Khanna Rajendra Kumar Vijay Yogesh Kumar 《Environmental science and pollution research international》2021,28(4):3880-3887
Environmental Science and Pollution Research - In this paper, we present the studies on electromagnetic interference (EMI) shielding effectiveness (SE) of K2CrO4-PMMA composites developed by two... 相似文献
704.
Chandana Aggarapu Mallick Sarada Prasanna Dikshit Pritam Kumar Singh Bhisham Narayan Sahi Ajay Kumar 《Journal of Polymers and the Environment》2022,30(10):4040-4067
Journal of Polymers and the Environment - Cellulose, the most abundant polysaccharide on earth, can be obtained from various sources including the cell wall of plants and woods, bacteria, algae,... 相似文献
705.
Grewal Jyotika Kumar Vijay Rawat Hemant Gandhi Yashika Singh Ravindra Singh Arjun Babu Gajji Srikanth Narayanam Mishra Sujeet K. 《Environmental Chemistry Letters》2022,20(4):2487-2507
Environmental Chemistry Letters - Cancer is one of the most fatal diseases causing deaths of millions of people worldwide. Since actual cancer treatments are rarely efficient and often toxic, there... 相似文献
706.
Shafiqah Mohd-Nasir Nor Siang Tan Ji Kumar Ponnusamy Senthil Ahmad Zainal Jalil A. A. Bahari Mahadi B. Van Le Quyet Xiao Leilei Mofijur M. Xia Changlei Ahmed Shams Forruque Vo Dai-Viet N. 《Environmental Chemistry Letters》2022,20(3):1695-1718
Environmental Chemistry Letters - There is actually an intense research in ethanol dry reforming because bioethanol and carbon dioxide, a greenhouse gas, can be converted into syngas and,... 相似文献
707.
Lahiri Sandip Kumar Chowdhury Somnath Hens Abhiram Ghanta Kartik Chandra 《Environmental science and pollution research international》2022,29(14):20035-20047
Environmental Science and Pollution Research - The present work emphasizes the development of a generic methodology that addresses the core issue of any running chemical plant, i.e., how to... 相似文献
708.
Mohanty Trupti Rani Tiwari Nitish Kumar Kumari Suman Ray Archisman Manna Ranjan Kumar Bayen Supriti Roy Shreya Das Gupta Subhadeep Ramteke Mitesh Hiradas Swain Himanshu Sekhar Bhor Manisha Das Basanta Kumar 《Environmental science and pollution research international》2022,29(25):37498-37512
Environmental Science and Pollution Research - Aulacoseira granulata (Ehrenberg) Simonsen 1979 are considered as the eco-variable species which varies in density and diversity along with their... 相似文献
709.
Fernandes Neha Benedicta Shenoy Raghavendra Udaya Kumar Kajampady Mandira Kashi DCruz Cleona E. M. Shirodkar Rupesh K. Kumar Lalit Verma Ruchi 《Environmental science and pollution research international》2022,29(39):58607-58627
Environmental Science and Pollution Research - Cancer is a most common cause of mortality globally. Available medicines possess severe side effects owing to their non-specific targeting. Hence,... 相似文献
710.
Vikas Kumar T. K. Das Dhruba Jyoti Sarkar Shashi Bala Singh Rashmi Dhaka 《Journal of environmental science and health. Part. B》2017,52(6):402-409
Controlled release formulations of imazethapyr herbicide have been developed employing guar gum-g-cl-polyacrylate/bentonite clay hydrogel composite (GG-HG) and guar gum-g-cl-PNIPAm nano hydrogel (GG-NHG) as carriers, to assess the suitability of biopolymeric hydrogels as controlled herbicide release devices. The kinetics of imazethapyr release from the developed formulations was studied in water and it revealed that the developed formulations of imazethapyr behaved as slow release formulations as compared to commercial formulation. The calculated diffusion exponent (n) values showed that Fickian diffusion was the predominant mechanism of imazethapyr release from the developed formulations. Time for release of half of the loaded imazethapyr (t1/2) ranged between 0.06 and 4.8 days in case of GG-NHG and 4.4 and 12.6 days for the GG-HG formulations. Weed control index (WCI) of GG-HG and GG-NHG formulations was similar to that of the commercial formulation and the herbicidal effect was observed for relatively longer period. Guar gum-based biopolymeric hydrogels in both macro and nano particle size range can serve as potential carriers in developing slow release herbicide formulations. 相似文献