Lead-Immobilization, transformation, and induced toxicity alleviation in sunflower using nanoscale Fe°/BC: Experimental insights with Mechanistic validations.

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Bibliographic Details
Title: Lead-Immobilization, transformation, and induced toxicity alleviation in sunflower using nanoscale Fe°/BC: Experimental insights with Mechanistic validations.
Authors: Aslam, Muhammad Rizwan1,2 (AUTHOR), Waris, Muhammad3 (AUTHOR), Muhammad, Ihsan4 (AUTHOR), Ahmed, Maqbool5 (AUTHOR), Khan, Zahid6 (AUTHOR), Jabeen, Zobia3 (AUTHOR), Yakoob Zehri, Mohammad7 (AUTHOR), Arsalan, Muhammad8 (AUTHOR), Rehman, Sidra9 (AUTHOR), Alnasrawi, Abeer M.10,11 (AUTHOR), Alkahtani, Jawaher12 (AUTHOR), Elshikh, Mohamed S.12 (AUTHOR), Rizwan, Muhammad13 (AUTHOR) jsong_deng@zju.edu.cn, Raza, Shoaib14 (AUTHOR), Deng, Jinsong1 (AUTHOR) jsong_deng@zju.edu.cn, Altaf, Adnan Raza15 (AUTHOR)
Source: Journal of Plant Interactions. Dec2022, Vol. 17 Issue 1, p812-823. 12p.
Database: Academic Search Ultimate
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ISSN:17429145
DOI:10.1080/17429145.2022.2107722