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- W2070755536 abstract "Acid rain is a matter of concern in southern China. We explored how soil respiration (Rs) and heterotrophic respiration (Rh) rates changed when subjected to simulated acid rain (SAR) environment for 3 years (from March 2010 to February 2013) in a secondary forest in subtropical China. The field experiment was arranged in a split-plot design, with 4 main blocks. Each block was split into un-trenched (Rs) and trenched (Rh) treatments. Four SAR treatments of CK (control, deionized water), A1 (pH 4.0), A2 (pH 3.0), and A3 (pH 2.0) were randomly assigned in each of the Rs and Rh treatments. Soil CO2 fluxes as well as soil temperature and moisture at a depth of 5 cm were measured weekly. Different SAR treatments exhibited similar seasonal patterns of Rs and Rh. Mean annual Rs rates in CK, A1, A2, and A3 plots were 878.2 ± 100.8, 919.4 ± 33.1, 865.6 ± 62.5, and 925.2 ± 20.5 g C m−2 yr−1, respectively, over 3 years; SAR had no significant effects on Rs. Rh, however, was significantly (P < 0.05) affected by the lowest SAR pH level (A3). On overage of 3 years, annual Rh rates in CK, A1, A2 and A3 plots were 606.7 ± 52.4, 663.5 ± 35.5, 728.2 ± 60.7, and 760.1 ± 42.2 g C m−2 yr−1, respectively. Statistical analysis showed that SAR significantly (P < 0.05) increased the proportion of Rh in Rs. The relationship between residual Rs (or Rh) based on soil temperature and observed Rs (or Rh) and soil moisture could be well fitted in a quadratic model." @default.
- W2070755536 created "2016-06-24" @default.
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- W2070755536 date "2015-02-01" @default.
- W2070755536 modified "2023-10-18" @default.
- W2070755536 title "Simulated acid rain changed the proportion of heterotrophic respiration in soil respiration in a subtropical secondary forest" @default.
- W2070755536 cites W1642996582 @default.
- W2070755536 cites W1935089707 @default.
- W2070755536 cites W1943630578 @default.
- W2070755536 cites W1967045901 @default.
- W2070755536 cites W1968977473 @default.
- W2070755536 cites W1969764600 @default.
- W2070755536 cites W1969936092 @default.
- W2070755536 cites W1971524293 @default.
- W2070755536 cites W1971845821 @default.
- W2070755536 cites W1976181816 @default.
- W2070755536 cites W1984310654 @default.
- W2070755536 cites W1987498644 @default.
- W2070755536 cites W2011289764 @default.
- W2070755536 cites W2013208807 @default.
- W2070755536 cites W2015053715 @default.
- W2070755536 cites W2017347070 @default.
- W2070755536 cites W2017358589 @default.
- W2070755536 cites W2020325259 @default.
- W2070755536 cites W2022467413 @default.
- W2070755536 cites W2023889836 @default.
- W2070755536 cites W2037893757 @default.
- W2070755536 cites W2042844901 @default.
- W2070755536 cites W2045646748 @default.
- W2070755536 cites W2047392739 @default.
- W2070755536 cites W2049207331 @default.
- W2070755536 cites W2051101609 @default.
- W2070755536 cites W2059522850 @default.
- W2070755536 cites W2072607393 @default.
- W2070755536 cites W2074800989 @default.
- W2070755536 cites W2078865728 @default.
- W2070755536 cites W2081292700 @default.
- W2070755536 cites W2081598515 @default.
- W2070755536 cites W2081878049 @default.
- W2070755536 cites W2081987562 @default.
- W2070755536 cites W2082091389 @default.
- W2070755536 cites W2084845442 @default.
- W2070755536 cites W2086398099 @default.
- W2070755536 cites W2088520942 @default.
- W2070755536 cites W2089940084 @default.
- W2070755536 cites W2090236945 @default.
- W2070755536 cites W2096879877 @default.
- W2070755536 cites W2099257561 @default.
- W2070755536 cites W2100892074 @default.
- W2070755536 cites W2105630812 @default.
- W2070755536 cites W2108732658 @default.
- W2070755536 cites W2110284451 @default.
- W2070755536 cites W2116033938 @default.
- W2070755536 cites W2117040647 @default.
- W2070755536 cites W2120900106 @default.
- W2070755536 cites W2125103457 @default.
- W2070755536 cites W2125658376 @default.
- W2070755536 cites W2136009149 @default.
- W2070755536 cites W2138079376 @default.
- W2070755536 cites W2145808276 @default.
- W2070755536 cites W2149829096 @default.
- W2070755536 cites W2150076366 @default.
- W2070755536 cites W2151258909 @default.
- W2070755536 cites W2152422230 @default.
- W2070755536 cites W2155586885 @default.
- W2070755536 cites W2167825219 @default.
- W2070755536 cites W2588676411 @default.
- W2070755536 cites W4247677532 @default.
- W2070755536 cites W4248094970 @default.
- W2070755536 cites W4250512775 @default.
- W2070755536 cites W4251946604 @default.
- W2070755536 cites W4255749590 @default.
- W2070755536 cites W4366807494 @default.
- W2070755536 cites W1975665866 @default.
- W2070755536 doi "https://doi.org/10.1016/j.apsoil.2014.10.013" @default.
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