Characterization of the Water Soluble Organic Fraction Extracted from a Sewage Sludge Amended Soil

Sewage Sludge를 시용(施用)한 토양(土壤)에서 추출(抽出)한 수용성유기물(水溶性有機物)의 화학구조적(化學構造的) 특성(特性)

  • Lim, Hyungsik (Deparment of Agricultural Chemistry, Kangweon National University) ;
  • Volk, V.V. (Department of Soil Science, Oriegon State University) ;
  • Baham, J. (Department of Soil Science, Oriegon State University)
  • 임형식 (강원대학교 농화학과) ;
  • ;
  • Published : 1985.06.25

Abstract

The water soluble organic fractions (WSOF) from an agricultural soil (W), a soil treated with sludge for 6 years ($WS_6$), a sludge-soil mixture incubated for one week ($WS_1$), and sewage sludge (SS) were extracted, purified, and characterized by elemental analysis, functional group determinations, infrared, UV-visible, and proton nuclear magnetic resonance spectrosocpy. The SS was characterized by higher organic H, N, and P contents, a higher H/C ratio, and a lower C/N ratio than W. Total acidity carboxyl and phenolic hydroxyl group contents were generally highest in SS, intermediate in $WS_6$ and $WS_1$, and lowest in W. Overall aromatic character and aromatic carboxyl group contents were highest in W, and lowest in SS. Aliphatic proton, aliphatic carboxyl, and phenolic hydroxyl group contents were highest in SS, and lowest in W. Protein decomposition products were the pronounced components in SS, and decreased in concentration as the sludge component in the mixtures decreased. The $^1H$-NMR spectra suggested that the SS-protons were bound to a wider range of functional groups than W-protons. Structural complexities around the aromatic protons followed the following order: SS>$WS_1$>$WS_6$>W.

Sewage sludge를 시용하지 않은 토양(W), 6년간 시용한 토양($WS_6$), Swedge sludge와 토양의 혼합물을 1 주일동안 incubation한 토양( $WS_1$), 그리고 Sewage sludge (SS)로부터 각각 수용성 유기물을 추출, 정제하고 원소분석, 작용기분석을 함과 동시에 IR, UV-VIS, NMR spectroscopy에 의하여 구조적 특성을 조사하였다. SS는 W보다 H, N, P 함량이 많아서 높은 H/C비와 낮은 C/N비로 특징지워 졌으며 total acidity, carboxyl group, phenolic hydroxyl group 함량의 경우 일반적으로 SS가 가장 높았고 그 다음이 $WS_6$, $WS_1$, 그리고 W가 가장 낮았다. Aromatic character나 aromatic carboxyl group 함량은 W가 가장 크고 SS가 가장 적었으며, Aliphatic proton, aliphatic carboxyl group 함량은 SS가 가장 많고 W가 가장 적었다. 단백질 분해산물은 SS에서 풍부했고 W에서는 검출되지 않았다. NMR spectra는 SS의 수소가 W보다 다양한 functional group에 결합되어 있다는 것을 보여 주었으며 aromatic proton의 구조적 주변환경도 SS가 가장 복잡하고 그 다음이 $WS_1$, $WS_6$, 그리고 W가 비교적 단순함을 보여 주었다.

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