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Evaluation of some nitrification inhibitors at different temperatures under laboratory conditions

机译:在实验室条件下在不同温度下评估某些硝化抑制剂

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Effect of eight compounds on nitrification of the applied (NH4)2 SO4 was studied in two soils incubated at high (35°C) and moderate (16°C) temperatures. The tested compounds included: 1H-benzotriazole; 4-amino-1,2,4-triazole; benzothiazole; 3-methylpyrazole-1-carboxamide; 4-bromo-3-methylpyrazole; pyrazole; lignosulfonic acid, molecular weight 52000, 6% S; and lignosulfonic acid, molecular weight 12000, 2% S. In the absence of inhibitors, nitrification of the applied ammonium was complete within one week at 35°C, whereas it took two to three weeks at 16°C. At 35°C, ATC was the most effective compound causing 44-71% inhibition up to four weeks when applied at 10 mg kg.1. The inhibitory effect of ATC increased with increasing application rate to 30 mg kg.1 (92–94% inhibition for four weeks). Although another compound viz. PZ applied at 10 mg kg.1 was also effective at 35°C, the inhibitory effect persisted up to three weeks (44-48% inhibition). At 16 °C, six of the test compounds (BTr, ATC, BTh, MPC, BMP and PZ) effectively inhibited nitrification at least up to four weeks. At 16 °C also, ATC was the most effective compound causing 84-90% inhibition for four weeks when applied at 10 mg kg.1. The results suggested that ATC can be a potential nitrification inhibitor for agricultural use under summer as well as under winter soil temperatures prevailing in the Indo-Gangetic Plains of the South Asia.
机译:在高温(35°C)和中度(16°C)孵育的两种土壤中研究了八种化合物对所施用(NH4)2 SO4硝化的影响。测试的化合物包括:1H-苯并三唑; 4-氨基-1,2,4-三唑;苯并噻唑3-甲基吡唑-1-羧酰胺; 4-溴-3-甲基吡唑;吡唑木质素磺酸,分子量52000,6%S;分子量为12000,分子量为2%S的​​木质素磺酸。在没有抑制剂的情况下,所施加铵的硝化作用在35°C的一周内完成,而在16°C的条件下需要2-3周。在35°C下,ATC是最有效的化合物,当以10 mg / kg.1的剂量使用时,在长达4周的时间内其抑制率达44-71%。 ATC的抑制作用随着施用量的增加而增加,达到30 mg kg.1(4周的抑制率为92–94%)。虽然另一个化合物即。以10 mg kg.1施用PZ在35°C时也有效,抑制作用持续长达三周(44-48%抑制)。在16°C下,六种测试化合物(BTr,ATC,BTh,MPC,BMP和PZ)有效抑制硝化作用,至少持续4周。同样在16°C时,以10 mg kg.1的剂量使用ATC也是最有效的化合物,在4周内产生84-90%的抑制作用。结果表明,在南亚的印度恒河平原盛行的夏季和冬季土壤温度下,ATC可能是潜在的农业硝化抑制剂。

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