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Investigation into the Sources of Biochar Water-Soluble Organic Compounds and Their Potential Toxicity on Aquatic Microorganisms

机译:生物炭水溶性有机化合物的来源及其对水生微生物的潜在毒性研究

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During biochar production, a number of pyrolysis intermediates recondense on the surface of biochar where potentially they may play an interesting role in soil and freshwater environments. This study investigated the sources of biochar water-soluble organic compounds (WSOC) as a function of biomass materials including cellulose and lignin and also as a function of pyrolysis temperature from 300 to 500 ℃ in relation to their potential toxicity to freshwater blue-green algae, Synechococcus. The amount of WSOC extracted from biochar, irrespective of biomass starting material, decreased significantly as a function of pyrolysis temperature. For biochars produced at pyrolysis temperatures below 400 ℃, algal bioassays and advanced mass spectrometry analyses revealed that toxic WSOC extracted from pinewood-derived biochar was most likely due to mono-, di-, and trisubstituted phenolic compounds derived from lignin, while toxic WSOC extracted from cellulose-derived biochar was acidic and bio-oil like in nature. For pinewood biochar produced at temperatures above 400 ℃, WSOC contained small to nondetectable (500 ℃) amounts of phenolic compounds and decreased from 664.5 ± 6.2 mg DOC/kg biochar (300 ℃) to 75.39 ± 0.42 mg DOC/kg biochar (500 ℃) with no observable toxicity on blue-green algae growth. Additionally, this study investigated toxicity caused by an imperfect reactor condition, such as the presence of cold spots and insufficient evacuation of pyrolysis intermediates, leading to a significant amount of toxic WSOC.
机译:在生物炭生产过程中,许多热解中间体会在生物炭的表面上再凝结,在那里它们可能在土壤和淡水环境中发挥重要作用。这项研究调查了生物炭水溶性有机化合物(WSOC)的来源与生物质材料(包括纤维素和木质素)的函数以及热解温度(300至500℃)的关系,以及它们对淡水蓝藻的潜在毒性。 ,球菌。与生物质原料无关,从生物炭中提取的WSOC量随热解温度而显着降低。对于在低于400℃的热解温度下生产的生物炭,藻类生物测定和高级质谱分析表明,从松木衍生的生物炭中提取的有毒WSOC最有可能是由于木质素衍生出的单,双和三取代酚类化合物,而有毒的WSOC却是提取的纤维素衍生的生物炭中的天然酸性和生物油性。对于在高于400℃的温度下生产的松木生物炭,WSOC含有少量至不可检测(500℃)的酚类化合物,并且从664.5±6.2 mg DOC / kg生物炭(300℃)降至75.39±0.42 mg DOC / kg生物炭(500℃) )对蓝藻生长没有明显的毒性。此外,这项研究还研究了由于反应器条件不完善而引起的毒性,例如存在冷点和热解中间体的疏散不足,从而导致产生大量有毒的WSOC。

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