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Adsorption and desorption variability of four herbicides used in paddy rice production

机译:水稻生产中四种除草剂的吸附和解吸变异性

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This investigation was performed to determine the effect of physicochemical soil properties on penoxsulam, molinate, bentazon, and MCPA adsorption-desorption processes. Four soils from Melozal (35° 43′ S; 71° 41′ W), Parral (36° 08′ S; 71° 52′ W), San Carlos (36° 24′ S; 71° 57′ W), and Panimavida (35° 44′ S; 71° 24′ W) were utilized. Herbicide adsorption reached equilibrium after 4 h in all soils. The Freundlich L-type isotherm described the adsorption process, which showed a high affinity between herbicides and sorption sites mainly because of hydrophobic and H-bonds interaction. Penoxsulam showed the highest adsorption coefficients (4.23 ± 0.72 to 10.69 ± 1.58 mL g−1) and were related to soil pH. Molinate showed Kd values between 1.72 ± 0.01 and 2.3 ± 0.01 mL g−1and were related to soil pH and organic matter, specifically to the amount of humic substances. Bentazon had a high relationship with pH and humic substances and its Kd values were the lowest, ranging from 0.11 ± 0.01 to 0.42 ± 0.01 mL g−1. MCPA Kd ranged from 0.14 ± 0.02 to 2.72 ± 0.01 mL g−1, however its adsorption was related to humic acids and clay content. According to these results, the soil factors that could explain the sorption process of the studied herbicides under paddy rice soil conditions, were principally humic substances and soil pH. Considering the sorption variability observed in this study and the potential risk for groundwater contamination, it is necessary to develop weed rice management strategies that limit use of herbicides that exhibit low soil adsorption in areas with predisposing conditions to soil leaching.
机译:进行这项研究是为了确定土壤物理化学性质对五氯磺草胺,草酸盐,苯达松和MCPA吸附-脱附过程的影响。四种土壤分别来自Melozal(南纬35°43;南71°41°),Parral(南纬36°08°;南71°52°),圣卡洛斯(南纬36°24°;南71°57) €²W)和Panimavida(35°S 44°S; 71°24€24 W)被利用。 4 h后所有土壤中除草剂的吸附达到平衡。 Freundlich L型等温线描述了吸附过程,该过程表明除草剂与吸附位点之间具有很高的亲和力,这主要是由于疏水和氢键相互作用。 Penoxsulam表现出最高的吸附系数(4.23±0.72至10.69±1.58 mL g ˆ1 ),并且与土壤pH值有关。 lin酸盐显示K d 值介于1.72±0.01和2.3±0.01 mL g -1> 1 之间,并且与土壤pH和有机质有关,特别是与腐殖质。 Bentazon与pH值和腐殖质高度相关,其K d 值最低,范围从0.11±0.01到0.42±0.01 mL g -1> 。 MCPA K d 的范围从0.14±0.02到2.72±0.01 mL g ˆ1 ,但是其吸附与腐殖酸和粘土含量有关。根据这些结果,可以解释所研究除草剂在水稻土壤条件下的吸附过程的土壤因素主要是腐殖质和土壤pH。考虑到本研究中观察到的吸附变异性和对地下水污染的潜在风险,有必要制定杂草水稻管理策略,以限制在土壤浸出易感地区的土壤吸附率低的除草剂的使用。

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