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	<title>CatsWannaBeCats.Com | Hartvig Fuentes | Activity</title>
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				<title>Hartvig Fuentes posted an update: 32% ~ 36.84%. Additionally, hydrochar amendment could not [&#133;]</title>
				<link>https://www.catswannabecats.com/activity/p/24649/</link>
				<pubDate>Sun, 08 Jun 2025 13:12:28 -0400</pubDate>

									<content:encoded><![CDATA[<p>32% ~ 36.84%. Additionally, hydrochar amendment could not increase the CH4 emissions due to the substrate limitation; the cumulative emissions were similar with those from the control, ranging between 11.1-12.8 g m-2. <a href="https://www.selleckchem.com/products/marimastat.html" rel="nofollow ugc">Marimastat</a> Regarding grain yield and global warming potential, greenhouse gas intensity from the soils subjected to hydrochar&hellip;<span class="activity-read-more" id="activity-read-more-24649"><a href="https://www.catswannabecats.com/activity/p/24649/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Hartvig Fuentes posted an update: 32% ~ 36.84%. Additionally, hydrochar amendment could not [&#133;]</title>
				<link>https://www.catswannabecats.com/activity/p/24616/</link>
				<pubDate>Sun, 08 Jun 2025 13:07:10 -0400</pubDate>

									<content:encoded><![CDATA[<p>32% ~ 36.84%. Additionally, hydrochar amendment could not increase the CH4 emissions due to the substrate limitation; the cumulative emissions were similar with those from the control, ranging between 11.1-12.8 g m-2. <a href="https://www.selleckchem.com/products/marimastat.html" rel="nofollow ugc">Marimastat</a> Regarding grain yield and global warming potential, greenhouse gas intensity from the soils subjected to hydrochar&hellip;<span class="activity-read-more" id="activity-read-more-24616"><a href="https://www.catswannabecats.com/activity/p/24616/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Hartvig Fuentes posted an update: 32% ~ 36.84%. Additionally, hydrochar amendment could not [&#133;]</title>
				<link>https://www.catswannabecats.com/activity/p/24557/</link>
				<pubDate>Sun, 08 Jun 2025 12:58:38 -0400</pubDate>

									<content:encoded><![CDATA[<p>32% ~ 36.84%. Additionally, hydrochar amendment could not increase the CH4 emissions due to the substrate limitation; the cumulative emissions were similar with those from the control, ranging between 11.1-12.8 g m-2. <a href="https://www.selleckchem.com/products/marimastat.html" rel="nofollow ugc">Marimastat</a> Regarding grain yield and global warming potential, greenhouse gas intensity from the soils subjected to hydrochar&hellip;<span class="activity-read-more" id="activity-read-more-24557"><a href="https://www.catswannabecats.com/activity/p/24557/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Hartvig Fuentes posted an update: © 2020 The Authors.Ligninolytic enzymes play a key role in [&#133;]</title>
				<link>https://www.catswannabecats.com/activity/p/9303/</link>
				<pubDate>Sat, 31 May 2025 22:28:34 -0400</pubDate>

									<content:encoded><![CDATA[<p>© 2020 The Authors.Ligninolytic enzymes play a key role in degradation and detoxification of lignocellulosic waste in environment. The major ligninolytic enzymes are laccase, lignin peroxidase, manganese peroxidase, and versatile peroxidase. The activities of these enzymes are enhanced by various mediators as well as some other enzymes (feruloyl&hellip;<span class="activity-read-more" id="activity-read-more-9303"><a href="https://www.catswannabecats.com/activity/p/9303/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Hartvig Fuentes posted an update: © 2020 The Authors.Ligninolytic enzymes play a key role in [&#133;]</title>
				<link>https://www.catswannabecats.com/activity/p/9259/</link>
				<pubDate>Sat, 31 May 2025 22:25:04 -0400</pubDate>

									<content:encoded><![CDATA[<p>© 2020 The Authors.Ligninolytic enzymes play a key role in degradation and detoxification of lignocellulosic waste in environment. The major ligninolytic enzymes are laccase, lignin peroxidase, manganese peroxidase, and versatile peroxidase. The activities of these enzymes are enhanced by various mediators as well as some other enzymes (feruloyl&hellip;<span class="activity-read-more" id="activity-read-more-9259"><a href="https://www.catswannabecats.com/activity/p/9259/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Hartvig Fuentes posted an update: © 2020 The Authors.Ligninolytic enzymes play a key role in [&#133;]</title>
				<link>https://www.catswannabecats.com/activity/p/9196/</link>
				<pubDate>Sat, 31 May 2025 22:18:20 -0400</pubDate>

									<content:encoded><![CDATA[<p>© 2020 The Authors.Ligninolytic enzymes play a key role in degradation and detoxification of lignocellulosic waste in environment. The major ligninolytic enzymes are laccase, lignin peroxidase, manganese peroxidase, and versatile peroxidase. The activities of these enzymes are enhanced by various mediators as well as some other enzymes (feruloyl&hellip;<span class="activity-read-more" id="activity-read-more-9196"><a href="https://www.catswannabecats.com/activity/p/9196/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Hartvig Fuentes posted an update: © 2020 The Authors.Ligninolytic enzymes play a key role in [&#133;]</title>
				<link>https://www.catswannabecats.com/activity/p/9098/</link>
				<pubDate>Sat, 31 May 2025 22:09:34 -0400</pubDate>

									<content:encoded><![CDATA[<p>© 2020 The Authors.Ligninolytic enzymes play a key role in degradation and detoxification of lignocellulosic waste in environment. The major ligninolytic enzymes are laccase, lignin peroxidase, manganese peroxidase, and versatile peroxidase. The activities of these enzymes are enhanced by various mediators as well as some other enzymes (feruloyl&hellip;<span class="activity-read-more" id="activity-read-more-9098"><a href="https://www.catswannabecats.com/activity/p/9098/" rel="nofollow ugc">[Read more]</a></span></p>
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				<title>Hartvig Fuentes became a registered member</title>
				<link>https://www.catswannabecats.com/activity/p/8998/</link>
				<pubDate>Sat, 31 May 2025 22:00:45 -0400</pubDate>

				
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