Experimental modeling design to study the effect of different soil treatments on the dissipation of metribuzin herbicide with effect on dehydrogenase activity

Q2 Chemistry Current Chemistry Letters Pub Date : 2023-01-01 DOI:10.5267/j.ccl.2022.12.001
Mohamed R. Fouad, M. Badawy, A. F. El-Aswad, M. Aly
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引用次数: 3

Abstract

The dissipation and side-effect of metribuzin (MBZ) were studied with various factors; two soil types (clay loam and sandy loam), soil amendment (wheat straw and without amendment), two temperature levels (25 and 50°C), sterilization (sterilized and unsterilized soil) and time of incubation (15 and 30 days) and designed by Windows version of MINITAB software package to reduce the time and the cost as well as increased the precision. Determination of MBZ by HPLC with recoveries ranged from 50.85 to 108.09%. The MBZ residues were detected in all samples up to 60 days of storage, respectively with decline in their concentrations with the time of incubation. The clay loam soil showed higher dissipation than the sandy loam soil. The different factors in the present study confirmed that the wheat straw amendment, non-sterilization and incubation at 50°C caused higher dissipation of MBZ than without wheat straw, sterilization and incubation at 25°C. The dissipation was described mathematically by a first order equation with t0.5 was ranged from 9.62 to 16.82 days in clay loam soil and from 10.01 to 16.04 days in sandy loam soil. The side-effect of MBZ was tested on soil dehydrogenase activity that can be considered as an indicator of the biological activity and microbial degradation. The result proved that the enzyme activity was significantly decreased in all treatments compared with the controls at 1 and 3 days of incubation then it was gradually increased at 7, 10, 15 and 30 days of incubation. Treatments of wheat straw, non-sterilized and incubated at 25°C or 50°C showed the lowest enzyme inhibition among all treatments.
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设计实验模型,研究不同土壤处理对甲曲霉嗪除草剂耗散及脱氢酶活性的影响
研究了不同因素对甲曲霉嗪(metrizin, MBZ)的耗散和副反应;两种土壤类型(粘壤土和砂壤土),土壤改良剂(麦秸土和未改良剂),两种温度水平(25℃和50℃),灭菌(灭菌土和未灭菌土)和孵育时间(15天和30天),采用MINITAB软件包的Windows版本设计,减少了时间和成本,提高了精度。高效液相色谱法测定MBZ,加样回收率为50.85 ~ 108.09%。在贮藏60天的所有样品中均检测到MBZ残留,其浓度随孵育时间的延长而下降。粘壤土比砂壤土具有更高的耗散性。本研究的不同因素证实,小麦秸秆改性、未灭菌和50℃孵育对MBZ的耗散作用高于未处理、灭菌和25℃孵育。粘壤土的t0.5范围为9.62 ~ 16.82 d,砂壤土的t0.5范围为10.01 ~ 16.04 d。测定了MBZ对土壤脱氢酶活性的影响,该活性可作为土壤生物活性和微生物降解的指标。结果表明,与对照相比,各处理的酶活性在培养1和3 d时显著降低,在培养7、10、15和30 d时逐渐升高。在25°C和50°C条件下,未灭菌的麦秸处理对酶的抑制作用最低。
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来源期刊
Current Chemistry Letters
Current Chemistry Letters Chemistry-Chemistry (all)
CiteScore
4.90
自引率
0.00%
发文量
27
审稿时长
20 weeks
期刊介绍: The "Current Chemistry Letters" is a peer-reviewed international journal which aims to publish all the current and outstanding research articles, reviews and letters in chemistry including analytical chemistry, green chemistry, inorganic chemistry, organic chemistry, physical chemistry, etc. This journal is dedicated to serve all academic and industrial researchers and scientists who are expert in all major advances in chemistry research. The journal aims to provide the most complete and reliable source of information on current developments in these fields. The emphasis will be on publishing quality articles rapidly and openly available to researchers worldwide. Please note readers are free to read, download, copy, distribute, print, search, or link to the full texts of articles published on this journal. Current Chemistry Letters is an open access journal, which provides instant access to the full text of research papers without any need for a subscription to the journal where the papers are published. Therefore, anyone has the opportunity to copy, use, redistribute, transmit/display the work publicly and to distribute derivative works, in any sort of digital form for any responsible purpose, subject to appropriate attribution of authorship. Authors who publish their articles may also maintain the copyright of their articles.
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