Thallium pollution in China and removal technologies for waters: A review

Загрязнение таллием в Китае и технологии его удаления из воды: обзор
Juan Liu, Xuwen Luo, Yuqing Sun, Daniel C.W. Tsang, Jianying Qi, Weilong Zhang, Nuo Li, Meiling Yin, Jin Wang, Holger Lippold, Yongheng Chen, Guodong Sheng
2019-03-15

Industrial wastewater treatmentMicrobial fuel cellsNanomaterial adsorptionThallium pollutionThallium removal
Thallium (Tl) is a typical toxic metal, which poses a great threat to human health through drinking water and the food chain (biomagnification). China has rich Tl-bearing mineral resources, which have been extensively explored and utilized, leading to release of large amounts of Tl into the environment. However, research on Tl pollution and removal techniques is relatively limited, because Tl has not been listed within the scope of environmental monitoring in China for several decades. This paper reviewed Tl pollution in wastewater arising from various industries in China, as well as the latest available methods for treating Tl-containing industrial wastewater, in order to give an outlook on effective technologies for controlling Tl pollution. Conventional physical and chemical treatment technologies are efficient at removing trace amounts of Tl, but it proved to be difficult to achieve the stringent environmental standard (≤0.1-5 μg/L) cost-effectively. Adsorption by using newly developed nanomaterials, and metal oxide modified polymer materials and microbial fuel cells are highly promising and expected to become next-generation technologies for remediation of Tl pollution. With the potential for greater Tl contamination in the environment under accelerated growth of industrialization, researches based on lab-scale implementation of such promising treatment technologies should be further expanded to pilot and industrial scale, ensuring environmental protection and the safety of drinking water for sustainable development. Comprehensive insights into experiences of Tl pollution in China and in-depth perspectives on new frontier technologies of Tl removal from wastewaters will also benefit other nations/regions worldwide, which are susceptible to high exposure to Tl likewise.
1
Conventional physical and chemical treatments remove trace thallium but struggle to meet stringent standards of ≤0.1–5 μg/L cost-effectively.
2
Nanomaterial-based adsorbents, metal-oxide-modified polymers, and microbial fuel cells are identified as promising next-generation technologies for thallium wastewater remediation.
3
Promising laboratory-scale technologies require expansion to pilot and industrial scales to address increasing industrial thallium contamination and protect drinking-water safety.
4
Research and monitoring of thallium pollution in China have been limited because thallium was excluded from environmental monitoring for several decades.
5
Thallium pollution in China is linked to extensive exploitation of Tl-bearing mineral resources and threatens health through drinking water and biomagnification.

Thallium pollution in industrial wastewater and the technologies used to remove thallium from waters in China

The occurrence and environmental risks of thallium pollution, and the effectiveness and prospects of wastewater treatment technologies for achieving stringent Tl discharge limits

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2019-03-15
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Juan Liu
Xuwen Luo
Yuqing Sun
Daniel C.W. Tsang
Jianying Qi
Weilong Zhang
Nuo Li
Meiling Yin
Jin Wang
Holger Lippold
Yongheng Chen
Guodong Sheng
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