4.7 Article

Quaternary herbicides retention by the amendment of acid soils with a bentonite-based waste from wineries

期刊

JOURNAL OF HAZARDOUS MATERIALS
卷 164, 期 2-3, 页码 769-775

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.jhazmat.2008.08.071

关键词

Winery organic wastes; Bentonite; Soil amendment; Quaternary ammonium herbicides

资金

  1. INOU program
  2. Spanish Ministry of Science and Technology [AGL2006-04231/AGR]
  3. Galician Council of Innovation and Industry

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The agronomic utility of a solid waste, waste bentonite (WB), from wine companies was assessed. In this sense, the natural characteristics of the waste were measured, followed by the monitoring of its effects on the adsorption/desorption behaviour of three quaternary herbicides in acid soils after the addition of increasing levels of waste. This was done with the intention of studying the effect of the added organic matter on their adsorption. The high content in C (294g kg(-1)), N (28 g kg(-1)), P (584 mg kg(-1)) and K (108 g kg(-1)) of WB turned it into an appropriate amendment to increase soil fertility, solving at the same time its disposal. WB also reduced the potential Cu phytotoxicity due to a change in Cu distribution towards less soluble fractions. The adsorption of the herbicides paraquat, diquat and difenzoquat by acid soils amended with different ratios of WB was measured. In all cases, Langmuir equation was fitted to the data. Paraquat (PQ) and diquat (DQ) were adsorbed and retained more strongly than difenzoquat (DFQ) in the acid soil studied. However, the lowest retention of DFQ in an acid soil can be increased by amendment with organic matter through a solid waste from wineries, and it is enough for duplicate retention a dosage rate of 10t/ha. Anyway, detritivores ecology can still be affected. Detritivores are the organisms that consume organic material, and in doing so contribute to decomposition and the recycling of nutrients. The term can also be applied to certain bottom-feeders in wet environments, which play a crucial role in benthic ecosystems, forming essential food chains and participating in the nitrogen cycle. (C) 2008 Elsevier B.V. All rights reserved.

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