Optimization of phosphate oxygen isotope pretreatment measurement method based on phosphate in situ enrichment blanket

Author:

Li Sumei12,Du Chengyu1,Jin Xin134,Yang Jing15,Zhang Wei13,Li Simin13

Affiliation:

1. a School of Energy and Environmental Engineering, Hebei University of Engineering, Handan, Hebei 056038, China

2. b College of Ocean and Earth Sciences, Fujian Provincial Key Laboratory for Coastal Ecology and Environmental Studies, Xiamen University, Xiamen 361102, China

3. c Hebei Water Pollution Control and Water Ecological Restoration Technology Innovation Center, Handan, Hebei 056038, China

4. d State Key Laboratory of Environmental Water Quality, Research Center for Eco-Environmental Sciences, Chinese Academy of Sciences, Beijing 100085, China

5. e School of Water Conservancy and Hydroelectric Power, Hebei University of Engineering, Handan, Hebei 056038, China

Abstract

Abstract Phosphate oxygen isotope analysis is an effective tool for investigating phosphorus migration and transformation in water bodies. Unfortunately, current pretreatment methods for this technology are significantly limited due to their demanding sample amount requirements, complex operation, and limited scope of application. In order to enhance the efficiency of the pretreatment process, hydrated zirconia was synthesized through liquid-phase precipitation. Zeolite, D001 macroporous resin, activated carbon, and ceramsite were chosen as possible candidate materials for loading purposes. The optimal zirconium loading material was identified through a combination of field enrichment and laboratory elution experiments. The ideal in situ enrichment duration, material dosages, and elution time were ascertained using response surface methodology. The findings showed that D001 resin exhibited superior selective adsorption and elution capacity for phosphate. The response surface optimization yielded the optimal parameters for the in situ phosphate-enrichment blanket: a mass of 13 g for zirconium-loaded D001 resin, an enrichment period of 360 min, and an elution period of 853 min. The attainment of a bright yellow Ag3PO4 solid after purification served as proof of the reliability of the optimization method. The obtained results provide a fundamental basis for the preparation and application of phosphate oxygen isotope analysis in freshwater ecosystem.

Funder

National Natural Science Foundation of China

Hebei Province Graduate Innovation Funding Project

Natural Science Foundation of Hebei Province

The Central Government Guides Local Science and Technology Development Fund Projects

Science and Technology Project of Hebei Education Department

Publisher

IWA Publishing

Subject

Water Science and Technology,Environmental Engineering

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