Added Biochars Promoted Nitrogen and Phosphorus Removal from Ecological Ditches at Low Temperature

Author:

Bai Guangsha1234,Pang Si345,Bi Dongsu1,Wang Siqi12,Cai Min34,Kong Lingqi12,Shen Zheng2,Zhang Yalei25

Affiliation:

1. School of Chemical and Environmental Engineering, Shanghai Institute of Technology, Shanghai 201418, China

2. Institute of New Rural Development, Tongji University, Shanghai 200092, China

3. Eco-Environmental Protection Research Institute, Shanghai Academy of Agricultural Science, Shanghai 201403, China

4. Shanghai Engineering Research Centre of Low-Carbon Agriculture, Shanghai 201403, China

5. State Key Laboratory of Pollution Control and Resource Reuse, College of Environmental Science and Engineering, Tongji University, Shanghai 200092, China

Abstract

The global issue of ecological ditches being poor in removing nitrogen and phosphorus under cold winter temperatures has been identified. This study introduced three types of biochar (reed, rice, and corn) into ecological ditch sediments via two application methods: rhizosphere and mixed addition. The purpose was to explore how these methods affect the removal of nitrogen and phosphorus, as well as their influences on microbial communities in sediments. The results indicated that the addition of biochar to ecological ditches significantly enhanced the removal of nitrogen and phosphorus. Among the three types of biochar, the mixed addition of corn biochar yielded the greatest results, achieving removal rates of 77.1% for total nitrogen (TN), 93.3% for NH4+-N, and 90.3% for total phosphorus (TP). The growth of Vallisneria natans was greatly improved by the mixed addition method, resulting in an average increase of 154%. This improvement was superior to the rhizosphere addition group, which led to a growth increase of 125%. In comparison, the control group (CK) showed a decrease of 4.8% in growth. Different methods of biochar addition resulted in changes in the physicochemical properties and stoichiometry of the plants. Microbial analyses showed that the addition of biochar reduced the diversity and abundance of the substrate microbial community.

Funder

Shanghai Science & Technology Committee

National Natural Science Foundation of China

Key Projects of Intergovernmental International Scientific and Technological Innovation Cooperation

Shanghai Agricultural Science and Technology Innovation Program

Eco-Environmental Protection Research Institute Go-Sailing Program

The Yangtze River Joint Research Phase II Program

Publisher

MDPI AG

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