Publications by authors named "Ji-Ping Ma"

Article Synopsis
  • - Phenoxy carboxylic acid herbicides (PCAs) are persistent pollutants that can harm both the environment and human health, with strict drinking water limits set globally for compounds like 2,4-dichlorophenoxyacetic acid.
  • - Metal-organic frameworks (MOFs) are promising materials for detecting PCAs due to their high surface area and excellent adsorption abilities, but their practical use is hindered by challenges in isolating them and inefficiencies in liquid-phase mass transfer.
  • - The study explores creating a greener and more efficient method for preparing MOF aerogels, which combine the desirable properties of MOFs with aerogels' unique structure to enhance their adsorption efficiency for target molecules.
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Article Synopsis
  • Dechloranes are toxic chlorine flame retardants used in industrial products, which can accumulate in human bodies and pose significant health risks, leading to their classification as harmful substances by global authorities in 2023.
  • The development of an effective detection method for dechloranes is critical due to their environmental persistence and harmful effects on health, prompting the use of magnetic solid-phase extraction (MSPE) techniques.
  • The study created a new adsorbent, FeO@TpBD, using magnetic nanoparticles and covalent organic frameworks to efficiently analyze dechloranes in environmental water, combining MSPE with gas chromatography for better detection.
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Phenolic endocrine-disrupting chemicals (EDCs) are exogenous substances that interfere with the endocrine system and disrupt normal cell functions upon entering a living organism, leading to reproductive and developmental toxicity. Therefore, the development of a rapid and efficient analytical method for detecting phenolic EDCs in environmental waters is crucial. Owing to the low concentration of phenolic EDCs in environmental water, appropriate sample pretreatment methods are necessary to remove interferences caused by the sample matrix and enrich the target analytes before instrumental analysis.

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As a phylogenetically valuable decapoda, a complete mitochondrial genome from Stenopodidea has not been reported to date. Here, we determined the complete mitochondrial DNA sequence of Stenopus hispidus (Olivier, 1811). The 15,528 bp genome is a circular molecule and consists of 13 protein-coding genes (PCGs) and two ribosomal RNA (rRNA) genes plus the putative control region (CR).

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Abamectin is widely used in agriculture as an insecticide and in veterinary as an anti-parasitic agent, and has caused great environmental pollution by posing potential risk to non-target soil invertebrates and nearby aquatic systems. A bacterium designated GB-01, which was capable of degrading abamectin, was isolated from soil by enrichment culture method. On the basis of morphological, physiological and biochemical characteristics, combined with phylogenetic analysis of 16S rRNA gene, the bacterium GB-01 was identified as Burkholderia cepacia-like species.

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The chlorimuron-ethyl-degrading bacterium LW3 was isolated from contaminated soil and identified by 16S rRNA gene sequencing as Pseudomonas sp. When chlorimuron-ethyl was provided as the sole nitrogen source, the degradation efficiency in liquid medium was about 81.0% after 7 days of inoculation with strain LW3.

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A monocrotophos [dimethyl (E)-1-2-methylcarbamoylvinylphosphate or MCP] -degrading strain named as M-1 was isolated from sludge collected from the wastewater treatment pool of a pesticide factory and identified as Paracoccus sp. according to its morphology and biochemical properties and 16S rDNA sequence analysis. Using MCP as a sole carbon source, M-1 was able to degrade MCP(100 mg x L(-1)) by 92.

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A rapid and accurate method for determining alkaloids from Coptis chinensis Franch, and Phellodendron amurense Rupr, decocted together in Baitouweng decocta was established. Experiments were carried out on a self-assembled capillary electrophoresis system. The experimental conditions were as follows: 75 microns i.

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Solid-phase microextraction (SPME) is a technology with functions of sampling, extraction and concentration based on adsorption/absorption-desorption equilibrium between coating and sample. The recent development of SPME is reviewed. Studies on the in-tube-SPME technology, novel extraction probes and its coupling with other analytical technologies are summarized.

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