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Soil remediation of degraded coastal saline wetlands by irrigation with paper mill effluent and plowing

机译:造纸废水和耕作灌溉对退化沿海盐渍湿地的土壤修复

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摘要

Combined with anti-waterlogging ditches,irrigation with treated paper mill effluent (TPME) and plowing were applied in this study to investigate the effects of remediation of degraded coastal saline-alkaline wetlands.Three treatments were employed,viz.,control (CK),irrigated with 10 cm depth of TPME (I),and plowing to 20 cm deep before irrigating 10 cm depth of TPME (IP).Results show that both I-treatment and IP-treatment could improve soil structure by decreasing bulk density by 5% and 8%.Irrigation with TPME containing low salinity stimulated salts leaching instead of accumulating.With anti-waterlogging ditches,salts were drained out of soil.Irrigation with 10 cm depth of TPME lowered total soluble salts in soil and sodium adsorption ration by 33% and 8%,respectively,but there was no significant difference compared with CK,indicating that this irrigation rate was not heavy enough to remarkably reduce soil salinity and sodicity.Thus,irrigation rate should be enhanced in order to reach better effects of desalinization and desodication.Irrigation with TPME significantly increased soil organic matter,alkali-hydrolyzable nitrogen and available phosphorus due to the abundant organic matmr in TPME.Plowing increased soil air circulation,so as to enhance mineralization of organic matter and lead to the loss of organic matter; however,plowing significantly improved soil alkali-hydrolyzable nitrogen and available phosphorus.Improvements of physicochemical properties in I-treatment and IP-treatment both boosted soil microbial population and activity.Microbial biomass carbon increased significantly by 327% (I-treatment) and 451% (IP-treatment),while soil respiration increased significantly by 316% (I-treatment) and 386% (IP-treatment).Urease and dehydrogenase activities in both I-treatment and IP-treatment were significantly higher than that in CK.Phosphatase in IP-treatment was significantly higher than that in CK.Compared to I-treatment,IP-treatment improved all of the soil properties except for soil organic matter.The key to remediation of degraded saline-alkaline wetlands is to decrease soil salinity and sodicity; thus,irrigation plus plowing could be an ideal method of soil remediation.
机译:结合防涝沟,采用经处理的造纸废水(TPME)灌溉和耕作的方法,研究了退化的沿海盐碱湿地的修复效果。采用了三种处理方法,即对照,对照,用10 cm深的TPME(I)灌溉,然后在深10 cm深的TPME(IP)灌溉之前犁至20 cm深。结果表明,I处理和IP处理均可通过使体积密度降低5%来改善土壤结构。含低盐度的TPME灌溉导致盐分渗出而不是积聚。通过防涝沟渠,盐分从土壤中排出。TPME深度为10 cm的灌溉使土壤中的总可溶性盐和钠的吸收率降低了33%分别为8%和8%,但与CK相比无显着差异,表明该灌溉速率不足以显着降低土壤盐分和碱度。因此,应提高灌溉速率以达到由于TPME中有机物含量丰富,TPME灌溉显着增加了土壤有机质,碱解性氮和速效磷。耕作增加了土壤空气流通,从而增强了有机质的矿化作用并导致土壤有机质的增加。有机物损失; I处理和IP处理的理化性质的改善均提高了土壤微生物的数量和活性。微生物生物量碳分别显着增加了327%(I处理)和451%。 (IP处理),土壤呼吸显着增加316%(I处理)和386%(IP处理).I处理和IP处理的脲酶和脱氢酶活性均显着高于CK。 IP处理比CK处理显着提高。与I处理相比,IP处理改善了除土壤有机质以外的所有土壤性质。退化盐碱湿地的修复关键是降低土壤盐度和碱度。 ;因此,灌溉加耕作可能是土壤修复的理想方法。

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  • 来源
    《林业研究(英文版)》 |2012年第2期|267-274|共8页
  • 作者单位

    Institute of Restoration Ecology, School of Chemical and Environmental Engineering, China University of Mining and Technology, Beijing 100083, China;

    Chongqing Institute of Green and Intelligent Technology, Chinese Academy of Sciences.85 Jinyu Road, Yubei District, Chongqing 410022, China;

    Institute of Restoration Ecology, School of Chemical and Environmental Engineering, China University of Mining and Technology, Beijing 100083, China;

    Key Lab of Eco-environmental Science for Yellow River Delta in Shandong Province, Binzhou, Shandong 256600,China;

  • 收录信息 中国科学引文数据库(CSCD);
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类
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