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1.
Psych J ; 11(5): 767-773, 2022 Oct.
Article in English | MEDLINE | ID: mdl-36114625

ABSTRACT

Recent ecological developments and in particular the risks of climate change have led to the emergence of new scientific challenges and fields. One field that has gained momentum over the past decades is environmental psychology. Researching and analyzing environmental phenomena it faces the challenges of connecting conceptual problems, the interdisciplinary use of languages and definitions, different understandings and the use of different methodologies, and the scientific explanation of such phenomena. This paper reflects on the challenges and also the opportunities for establishing a sustainable future from a psychological point of view. The topics addressed are a selection of criteria for adapting to changing environments, perspectives on how to harvest insights from different fields of scientific endeavor and ideas how to make use of the necessary interdisciplinarity. Furthermore, questions are raised concerning personal identity, cultural and spiritual values, the ethical aspects of decision-making in a changing world, and the conceptual challenges facing sustainable ecological development.


Subject(s)
Environmental Psychology , Forecasting , Humans
2.
Bioresour Technol ; 352: 127079, 2022 May.
Article in English | MEDLINE | ID: mdl-35367324

ABSTRACT

To apply the anammox processes into the mainstream of domestic wastewater treatment plants, two laboratory-scale sequence batch reactors have been developed and used with two different activated sludges seeded in each sequence batch reactors with gradually increases influent total nitrogen concentrations under low nitrogen loading rates. During 320 days of operation, both sequence batch reactors showed high specific anammox activity (0.68 - 0.75 kgN kg-1VSS d-1) and a nitrogen removal efficiency of 97.50%. To monitor changes in microbial community dynamics during enrichment, high-throughput sequencing analysis was performed. Members taxonomically affiliated with Candidatus Jettenia were markedly enriched and predominant in both sequence batch reactors in response to the increasing influent total nitrogen concentrations. These results suggest that Candidatus Jettenia might be a prominent anammox genus under low nitrogen loading rate with high total nitrogen concentration conditions and could be suitably applied to the mainstream process of domestic wastewater treatment systems.


Subject(s)
Bioreactors , Nitrogen , Anaerobiosis , Nitrogen/analysis , Oxidation-Reduction , Sewage , Wastewater/analysis
3.
J Hazard Mater ; 418: 126365, 2021 09 15.
Article in English | MEDLINE | ID: mdl-34329019

ABSTRACT

As the most widely used anionic surfactant, linear alkylbenzene sulfonate (LAS) requires biological alkane degradation when it is treated using an activated sludge (AS) process in a wastewater treatment plant because of its structural carboxylic unavailability. As consumption of LAS is gradually increasing, LAS loading into the WWTP is accordingly increasing. However, fewer studies have examined the involvement of the AS microbial community in the LAS degradation. In this study, metagenomic approaches were used to define microbiomes involved in LAS degradation in AS, with a particular focus on ω-hydroxylation. The abundance and diversity of alkane-degrading genes were investigated, and these genes were integrated with reconstructed metagenome-assembled genomes (MAGs). Additionally, the association of functional genes and MAGs with respect to LAS degradation was investigated. The results showed that alkB and cytochrome P450 genes were only shared within specific MAGs. Unique sets of genes with diverse abundances were detected in each sample. The MAGs with the alkB and cytochrome P450 genes were strongly associated with the other MAGs and involved in positive commensal interactions. The findings provided significant insights into how the AS microbiomes, which have continuously treated anionic surfactants for decades, potentially metabolize LAS and interact with commensal bacteria.


Subject(s)
Alkanesulfonic Acids , Microbiota , Metagenome , Microbiota/genetics , Sewage , Surface-Active Agents
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