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Creating Novel Soil Amendments Using Class A Biosolids

机译:使用A类生物固体创造新型土壤改良剂

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摘要

By blending Class A biosolids with organic and inorganic materials, thirteen unique soil amendments were created with a goal of developing a product able to access a wider market than unblended Class A biosolids. A set of criteria were developed to assess if the developed blends could be successful general-purpose soil amendments used in a wide range of applications. These criteria included public acceptability of product odor and appearance, efficacy in improving plant growth, and ability to meet existing industry specifications for soil amendments. Several blends met all the criteria established for a successful soil amendment product.;The final properties of the blends depended on the initial properties and mixing ratios of the feedstocks and biosolids as well as biological and chemical processes blends underwent during a month long curing period. Certain properties were found to affect plant growth and odor. Blends with rates of CO2 flux from microbial respiration higher than 8 mg CO2-C g OM-1 day-1 or with a pH above 10 were both malodorous and performed poorly in plant growth trials. The five blends which performed best in the plant growth trials had C:N ratios within the range of 10:1-25:1, blends with electrical conductivity (EC5) greater than 6 dS m-1 performed poorly in plant growth trials and there appeared to be an ideal range for NH4+ levels, above and below which plant growth was reduced.
机译:通过将A类生物固体与有机和无机材料混合,创建了13种独特的土壤改良剂,目标是开发一种比未混合A类生物固体能够进入更广阔市场的产品。制定了一套标准来评估所开发的掺混物是否可以成功地用于多种用途的通用土壤改良剂。这些标准包括公众对产品气味和外观的可接受性,改善植物生长的功效以及满足现有土壤改良剂行业规范的能力。几种共混物满足为成功的土壤改良剂建立的所有标准。;共混物的最终性能取决于原料和生物固体以及在一个月的固化期中进行的生物和化学过程共混物的初始性能和混合比。发现某些特性会影响植物的生长和气味。来自微生物呼吸的CO2通量速率高于8 mg CO2-C g OM-1 day-1或pH值高于10的掺混物均具有恶臭,并且在植物生长试验中表现不佳。在植物生长试验中表现最佳的五种共混物的C:N比在10:1-25:1的范围内,电导率(EC5)大于6 dS m-1的混合物在植物生长试验中表现不佳。似乎是NH4 +水平的理想范围,高于或低于此范围则植物生长会降低。

著录项

  • 作者

    Batjiaka, Ryan.;

  • 作者单位

    University of Washington.;

  • 授予单位 University of Washington.;
  • 学科 Soil sciences.;Horticulture.
  • 学位 Masters
  • 年度 2018
  • 页码 198 p.
  • 总页数 198
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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