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Ji-Wei Pang

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Articles 32
Citations 48
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Recent Articles
1.
Dai W, Pang J, Ding J, Wang J, Xu C, Zhang L, et al.
Water Res . 2025 Jan; 274:123099. PMID: 39799906
Both mechanical models and machine learning-based models are widely utilized for real-time dynamic control; however, their implementation in the water sector often incurs significant data and computational costs. To address...
2.
Zhao Z, Yang S, Luo G, Sun H, Liu B, Cao G, et al.
Biotechnol Adv . 2024 Dec; 79:108508. PMID: 39740753
Lignocellulosic biomass (LCB) is expected to play a critical role in achieving the goal of biomass-to-bioenergy conversion because of its wide distribution and low price. Biomass fermentation is a promising...
3.
Yu X, Ding J, Yang S, Pang J, Lu M, Zhao X, et al.
Environ Int . 2024 Nov; 193:109124. PMID: 39531978
The carbon-neutral target presents a significant challenge for the sewage sludge treatment and disposal (SSTD) industry, necessitating strategic planning for a low-carbon transition. However, flexible and comprehensive carbon emission analysis...
4.
Wu T, Ding J, Sun H, Pang J, Zhong L, Zhao L, et al.
J Environ Manage . 2024 Sep; 370:122567. PMID: 39303598
Integrated fixed-film activated sludge (IFAS) system, an improvement of the activated sludge process, combines the advantages of both attached sludge (AS) and suspended sludge (SS). This study aimed to fully...
5.
Chen C, Yang S, Pang J, He L, Zang Y, Ding L, et al.
Environ Sci Ecotechnol . 2024 Aug; 22:100449. PMID: 39104553
In recent years, there has been significant interest in photocatalytic technologies utilizing semiconductors and photosensitizers responsive to solar light, owing to their potential for energy and environmental applications. Current efforts...
6.
Zhong L, Sun H, Pang J, Ding J, Zhao L, Xu W, et al.
J Hazard Mater . 2024 May; 473:134579. PMID: 38761761
Ciprofloxacin (CIP) has received considerable attention in recent decades due to its high ecological risk. However, little is known about the potential response of macrophytes and microbes to varying levels...
7.
Wu T, Ding J, Wang S, Pang J, Sun H, Zhong L, et al.
Sci Total Environ . 2024 May; 932:173033. PMID: 38723954
Microplastics (MPs) pollution has emerged as a global concern, and wastewater treatment plants (WWTPs) are one of the potential sources of MPs in the environment. However, the effect of polyethylene...
8.
Wu T, Ding J, Zhao Y, Ding L, Zang Y, Sun H, et al.
Sci Total Environ . 2024 Apr; 929:172651. PMID: 38653406
The widespread use of microplastics (MPs) has led to an increase in their discharge to wastewater treatment plants. However, the knowledge of impact of MPs on macro-performance and micro-ecology in...
9.
Zhong L, Yang S, Sun H, Cui C, Wu T, Pang J, et al.
Water Res . 2024 Apr; 256:121600. PMID: 38640563
A limited understanding of microbial interactions and community assembly mechanisms in constructed wetlands (CWs), particularly with different substrates, has hampered the establishment of ecological connections between micro-level interactions and macro-level...
10.
Ding M, Ding J, Zhang Z, Li M, Cui C, Pang J, et al.
J Environ Manage . 2024 Apr; 358:120832. PMID: 38599089
Polyethylene (PE) is the most productive plastic product and includes three major polymers including high-density polyethylene (HDPE), linear low-density polyethylene (LLDPE) and low-density polyethylene (LDPE) variation in the PE depends...