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电化学双阳极促进底泥中氮/硫/磷等元素转化研究
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作者 张一凡 曾庆军 +1 位作者 易苁利 冯春华 《当代化工研究》 2022年第11期1-5,共5页
氮/硫/磷等元素构成的化合物是河涌底泥中广泛存在的污染物,常引发河涌黑臭问题。近年来,利用电化学技术用于底泥修复受到广泛关注。本文以深圳铁排河实际底泥及上覆水为研究对象,构建基于铁(Fe)及混合金属氧化物(MMO)双阳极体系,实现... 氮/硫/磷等元素构成的化合物是河涌底泥中广泛存在的污染物,常引发河涌黑臭问题。近年来,利用电化学技术用于底泥修复受到广泛关注。本文以深圳铁排河实际底泥及上覆水为研究对象,构建基于铁(Fe)及混合金属氧化物(MMO)双阳极体系,实现多重污染物同步、原位修复。研究结果表明,双阳极作用下上覆水中氨氮和磷在30min内即可得到有效转化,实现初始浓度5.0mg/L NH_(4)^(+)-N以及3.2mg/L总磷的99%去除;底泥中的污染物,如NH_(4)^(+)-N、S^(2-)和总有机碳在60min内也能得到一定程度去除,去除率分别为72%、79%、39%,底泥中磷的形态从NH_(4)Cl-P向更稳定的结合态P转化。相较于单阳极体系,双阳极协同作用于底泥中氮/硫/磷等元素,展现出更优异的性能。 展开更多
关键词 底泥原位修复 氮/硫/磷 电氧化 电絮凝 双阳极
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Effects of Urea Ammonium Chloride of Different Fertilization Patterns on Maize Yield and Yield Components 被引量:1
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作者 曾林 赵盈风 +6 位作者 宋云飞 陆顺生 刘艳 单艳 钱光秀 杨久才 马丽敏 《Agricultural Science & Technology》 CAS 2015年第7期1462-1466,共5页
[Objective] To understand the application effects of urea ammonium chloride fertilizer on maize production. [Methods] A field plot experiment was conducted to study the effects of urea ammonium chloride of different f... [Objective] To understand the application effects of urea ammonium chloride fertilizer on maize production. [Methods] A field plot experiment was conducted to study the effects of urea ammonium chloride of different fertilization patterns on summer maize yield and yield components. [Results] Urea ammonium chloride had a long fertilizer effect and the same yield-increasing effect with urea, which could im- prove the agronomic traits and economic traits of maize apparently and the applica- tion of urea ammonium chloride with nutrient reduction of 40% (namely just use urea ammonium chloride equaled 60% pure nitrogen), had the same yield-increasing effect with urea of traditional fertilization patterns, and input-output ratio was high and the economic benefit was remarkable. [Conclusion] To provide scientific theoretical direc- tion for large area popularization and application of urea ammonium chloride. 展开更多
关键词 MAIZE UREA Urea ammonium chloride Calcium superphosphate Potas- sium sulphate YIELD Yield Components
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Effect of Sulphur in Rainfall, Irrigation Waterand Perco colating Water on Soil Sulphur in Jiangxi Province 被引量:4
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作者 LIU CHONGQUN CAO SHUQING and XU JUNXIANG(Institute of Soil Science, the Chinese Academy of Sciences, P.O. Box 821, Narolng 210008 China) 《Pedosphere》 SCIE CAS CSCD 2000年第2期177-182,共6页
Ten rainfall and irrigation water-collecting posts were set up in different ecotype districts of JiangxiProvince, China, to quarterly measure S content in rainfall and irrigation water. A rainwater chemicalcomposition... Ten rainfall and irrigation water-collecting posts were set up in different ecotype districts of JiangxiProvince, China, to quarterly measure S content in rainfall and irrigation water. A rainwater chemicalcomposition- collecting device was used to collect the sulphur in rainfall land the amount of sulphur adsorbedon the resin column in the device was determined. The soil percolating water was gathered using 6 lysimeters,built up according to the profile sequence of the red soil derived from red sandstone and the red soil derivedfrom Quaternary red clay, separately. On the lysimeters peanuts, soybean and radish were grown in rotation.Two treatments were designed: without S addition and with S addition at a rate of 14 kg S ha-1. The SO24contents in rainfall, irrigation water and soil percolating water were determined by the turbidimetry.The results in 1997 showed that the average annual S content in rainwater was 28.13 kg S ha-1, theaverage S content in irrigation water was 1.7 mg S L-1 , and the average content of in soil percolationwater was 2.30 kg S ha-1 year-1 and 4.70 kg S ha-l year-1 in treatments without and with sulphurapplication, respectively. In Jiangxi Province, apart from the losses by runoff and leaching, the sulphur inrainfall available to crops is 7.3 kg S ha-1 year-1 and additional S application is required. When rice isgrown , however, irrigation water can supply 6.9 kg S ha-1, which, along with the sulphur in rainfall, canalmost meet the S requirement of one cropping of rice. 展开更多
关键词 irrigation water Jiangxi Province RAINFALL soil percolation water SULPHUR
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