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Insecticidal characteristics and mechanism of a promising natural insecticide against saw-toothed grain beetle

The prevention of grain storage pests is a universal concern all over the world. It is in high demand to explore novel, safe and green insecticidal techniques to address such concerns. In this work, both raw and calcined diatomite were used as a natural insecticide to remove common grain storage pes...

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Autores principales: Li, Chunyan, Sheng, Xueru, Li, Na, Ping, Qingwei, Lu, Peng, Zhang, Jian
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8982244/
https://www.ncbi.nlm.nih.gov/pubmed/35424651
http://dx.doi.org/10.1039/d1ra08740a
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author Li, Chunyan
Sheng, Xueru
Li, Na
Ping, Qingwei
Lu, Peng
Zhang, Jian
author_facet Li, Chunyan
Sheng, Xueru
Li, Na
Ping, Qingwei
Lu, Peng
Zhang, Jian
author_sort Li, Chunyan
collection PubMed
description The prevention of grain storage pests is a universal concern all over the world. It is in high demand to explore novel, safe and green insecticidal techniques to address such concerns. In this work, both raw and calcined diatomite were used as a natural insecticide to remove common grain storage pests with improved lethal effect on the saw-toothed grain beetle. Interestingly, the raw diatomite showed higher insecticidal efficiency than the calcined diatomite, and its associated insecticidal properties and preparation conditions were also optimized through orthogonal tests. The optimal conditions for processing the raw diatomite insecticide were identified as follows: the diatomite dust was 500 mesh (A(3)), the temperature was 25 °C (B(1)), the relative humidity was 65% (C(2)), the diatomite dosage was 20 g m(−2) (D(2)), the influence factor order was C ≥ D > A > B. The observation of surface morphology indicated that the raw diatomite had a complete, multi hole surface morphology and good adsorption performance, whereas the structure of the calcined diatomite was uncomplete with collapsed pores, resulting in poor adsorption performance. The special pore structure and excellent adsorption capacity of diatomite make the stored grain pests lose water to lethal effect. Acute toxicity and long-term toxicity tests in mice showed that diatomite has no harmful effects on mammals. The findings from our work led to a green and effective approach in producing a highly efficient and safe storage grain insecticide.
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spelling pubmed-89822442022-04-13 Insecticidal characteristics and mechanism of a promising natural insecticide against saw-toothed grain beetle Li, Chunyan Sheng, Xueru Li, Na Ping, Qingwei Lu, Peng Zhang, Jian RSC Adv Chemistry The prevention of grain storage pests is a universal concern all over the world. It is in high demand to explore novel, safe and green insecticidal techniques to address such concerns. In this work, both raw and calcined diatomite were used as a natural insecticide to remove common grain storage pests with improved lethal effect on the saw-toothed grain beetle. Interestingly, the raw diatomite showed higher insecticidal efficiency than the calcined diatomite, and its associated insecticidal properties and preparation conditions were also optimized through orthogonal tests. The optimal conditions for processing the raw diatomite insecticide were identified as follows: the diatomite dust was 500 mesh (A(3)), the temperature was 25 °C (B(1)), the relative humidity was 65% (C(2)), the diatomite dosage was 20 g m(−2) (D(2)), the influence factor order was C ≥ D > A > B. The observation of surface morphology indicated that the raw diatomite had a complete, multi hole surface morphology and good adsorption performance, whereas the structure of the calcined diatomite was uncomplete with collapsed pores, resulting in poor adsorption performance. The special pore structure and excellent adsorption capacity of diatomite make the stored grain pests lose water to lethal effect. Acute toxicity and long-term toxicity tests in mice showed that diatomite has no harmful effects on mammals. The findings from our work led to a green and effective approach in producing a highly efficient and safe storage grain insecticide. The Royal Society of Chemistry 2022-03-01 /pmc/articles/PMC8982244/ /pubmed/35424651 http://dx.doi.org/10.1039/d1ra08740a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Li, Chunyan
Sheng, Xueru
Li, Na
Ping, Qingwei
Lu, Peng
Zhang, Jian
Insecticidal characteristics and mechanism of a promising natural insecticide against saw-toothed grain beetle
title Insecticidal characteristics and mechanism of a promising natural insecticide against saw-toothed grain beetle
title_full Insecticidal characteristics and mechanism of a promising natural insecticide against saw-toothed grain beetle
title_fullStr Insecticidal characteristics and mechanism of a promising natural insecticide against saw-toothed grain beetle
title_full_unstemmed Insecticidal characteristics and mechanism of a promising natural insecticide against saw-toothed grain beetle
title_short Insecticidal characteristics and mechanism of a promising natural insecticide against saw-toothed grain beetle
title_sort insecticidal characteristics and mechanism of a promising natural insecticide against saw-toothed grain beetle
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8982244/
https://www.ncbi.nlm.nih.gov/pubmed/35424651
http://dx.doi.org/10.1039/d1ra08740a
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