Insights into conventional and recent technologies for arsenic bioremediation: A systematic review

被引:0
作者
Sana Irshad
Zuoming Xie
Sajid Mehmood
Asad Nawaz
Allah Ditta
Qaisar Mahmood
机构
[1] China University of Geosciences,School of Environmental Studies
[2] China University of Geosciences,State Key Laboratory of Biogeology and Environmental Geology
[3] Guangzhou University,Guangdong Provincial Key Laboratory for Radionuclides Pollution Control and Resources, School of Environmental Science and Engineering
[4] Yangzhou University,Jiangsu Key Laboratory of Crop Genetics and Physiology, Key Laboratory of Plant Functional Genomics of the Ministry of Education, College of Agriculture
[5] Shaheed Benazir Bhutto University Sheringal,Department of Environmental Sciences
[6] The University of Western Australia,School of Biological Sciences
[7] COMSATS University Islamabad,Department of Environmental Sciences
[8] Abbottabad Campus,School of Biotechnology and Food Engineering
[9] Huanghuai University,undefined
来源
Environmental Science and Pollution Research | 2021年 / 28卷
关键词
Arsenic; Bioremediation; Phytobial; Phytosuction separation; Constructed wetlands; Simultaneous biosorption and bioaccumulation;
D O I
暂无
中图分类号
学科分类号
摘要
Arsenic (As) bioremediation has been an economical and sustainable approach, being practiced widely under several As-contaminated environments. Bioremediation of As involves the use of bacteria, fungi, yeast, plants, and genetically modified organisms for detoxification/removal of As from the contaminated site. The understanding of multi-factorial biological components involved in these approaches is complex and more and more efforts are on their way to make As bioremediation economical and efficient. In this regard, we systematically reviewed the recent literature (n=200) from the last two decades regarding As bioremediation potential of conventional and recent technologies including genetically modified plants for phytoremediation and integrated approaches. Also, the responsible mechanisms behind different approaches have been identified. From the literature, it was found that As bioremediation through biosorption, bioaccumulation, phytoextraction, and volatilization involving As-resistant microbes has proved a very successful technology. However, there are various pathways of As tolerance of which the mechanisms have not been fully understood. Recently, phytosuction separation technology has been introduced and needs further exploration. Also, integrated approaches like phytobial, constructed wetlands using As-resistant bacteria with plant growth–promoting activities have not been extensively studied. It is speculated that the integrated bioremediation approaches with practical applicability and reliability would prove most promising for As remediation. Further technological advancements would help explore the identified research gaps in different approaches and lead us toward sustainability and perfection in As bioremediation.
引用
收藏
页码:18870 / 18892
页数:22
相关论文
共 1016 条
[51]  
Wallschläger D(2016)Phytoremediation of arsenic-contaminated water by Environ Pollut 216 215-8761
[52]  
Banerjee A(2000): an optimization study Plant Cell Physiol 41 77-419
[53]  
Hazra A(2020)Comparative efficacy of rock phosphate enriched organic fertilizer vs. mineral phosphatic fertilizer for nodulation, growth and yield of lentil Environ Sci Pollut Res 27 36789-284
[54]  
Das S(2015)Rock phosphate enriched organic fertilizer with phosphate solubilizing microorganisms improves nodulation, growth and yield of legumes Chemosphere 134 1-683
[55]  
Sengupta C(2008)Application of rock phosphate enriched composts increases nodulation, growth and yield of chickpea Mutat Res 659 293-1942
[56]  
Batool K(2011)Waste walnut shell valorization to iron loaded biochar and its application to arsenic removal Bioresour Technol 102 8756-372
[57]  
Tuz Zahra F(2018)Extractive recovery and valorisation of arsenic from contaminated soil through phytoremediation using Chemosphere 211 407-490
[58]  
Rehman Y(2018)Tolerancia a arsénico de cianobacterias con usos biotecnológicos Ecotox Environ Safe 151 279-229
[59]  
Barbafieri M(2018)Understanding and exploiting plant beneficial microbes Ecotox Environ Safe 148 675-35
[60]  
Pedron F(2016)Uptake and metabolism of arsenate by anexic cultures of the microalgae Dunaliella tertiolecta and Phaeodactylum tricornutum Chemosphere 144 1937-814